ladybird/Userland/Libraries/LibWeb/Bindings/WindowObject.cpp

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/*
* Copyright (c) 2020-2021, Andreas Kling <kling@serenityos.org>
* Copyright (c) 2021, Sam Atkins <atkinssj@serenityos.org>
*
* SPDX-License-Identifier: BSD-2-Clause
*/
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#include <AK/Base64.h>
#include <AK/String.h>
#include <AK/Utf8View.h>
#include <LibJS/Runtime/Error.h>
#include <LibJS/Runtime/FunctionObject.h>
#include <LibJS/Runtime/Shape.h>
#include <LibTextCodec/Decoder.h>
#include <LibWeb/Bindings/CSSStyleDeclarationWrapper.h>
#include <LibWeb/Bindings/DocumentWrapper.h>
#include <LibWeb/Bindings/ElementWrapper.h>
#include <LibWeb/Bindings/EventTargetConstructor.h>
#include <LibWeb/Bindings/EventTargetPrototype.h>
#include <LibWeb/Bindings/EventWrapper.h>
#include <LibWeb/Bindings/EventWrapperFactory.h>
#include <LibWeb/Bindings/ExceptionOrUtils.h>
#include <LibWeb/Bindings/HistoryWrapper.h>
#include <LibWeb/Bindings/LocationObject.h>
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#include <LibWeb/Bindings/MediaQueryListWrapper.h>
#include <LibWeb/Bindings/NavigatorObject.h>
#include <LibWeb/Bindings/NodeWrapperFactory.h>
#include <LibWeb/Bindings/PerformanceWrapper.h>
#include <LibWeb/Bindings/Replaceable.h>
#include <LibWeb/Bindings/ScreenWrapper.h>
#include <LibWeb/Bindings/WindowObject.h>
#include <LibWeb/DOM/Document.h>
#include <LibWeb/DOM/Event.h>
#include <LibWeb/DOM/Window.h>
#include <LibWeb/HTML/EventHandler.h>
#include <LibWeb/Origin.h>
#include <LibWeb/Page/BrowsingContext.h>
#include <LibWeb/Page/Page.h>
#include <LibWeb/WebAssembly/WebAssemblyObject.h>
#include <LibWeb/Bindings/WindowObjectHelper.h>
namespace Web::Bindings {
WindowObject::WindowObject(DOM::Window& impl)
: m_impl(impl)
{
impl.set_wrapper({}, *this);
}
void WindowObject::initialize_global_object()
{
Base::initialize_global_object();
LibJS: Rewrite most of Object for spec compliance :^) This is a huge patch, I know. In hindsight this perhaps could've been done slightly more incremental, but I started and then fixed everything until it worked, and here we are. I tried splitting of some completely unrelated changes into separate commits, however. Anyway. This is a rewrite of most of Object, and by extension large parts of Array, Proxy, Reflect, String, TypedArray, and some other things. What we already had worked fine for about 90% of things, but getting the last 10% right proved to be increasingly difficult with the current code that sort of grew organically and is only very loosely based on the spec - this became especially obvious when we started fixing a large number of test262 failures. Key changes include: - 1:1 matching function names and parameters of all object-related functions, to avoid ambiguity. Previously we had things like put(), which the spec doesn't have - as a result it wasn't always clear which need to be used. - Better separation between object abstract operations and internal methods - the former are always the same, the latter can be overridden (and are therefore virtual). The internal methods (i.e. [[Foo]] in the spec) are now prefixed with 'internal_' for clarity - again, it was previously not always clear which AO a certain method represents, get() could've been both Get and [[Get]] (I don't know which one it was closer to right now). Note that some of the old names have been kept until all code relying on them is updated, but they are now simple wrappers around the closest matching standard abstract operation. - Simplifications of the storage layer: functions that write values to storage are now prefixed with 'storage_' to make their purpose clear, and as they are not part of the spec they should not contain any steps specified by it. Much functionality is now covered by the layers above it and was removed (e.g. handling of accessors, attribute checks). - PropertyAttributes has been greatly simplified, and is being replaced by PropertyDescriptor - a concept similar to the current implementation, but more aligned with the actual spec. See the commit message of the previous commit where it was introduced for details. - As a bonus, and since I had to look at the spec a whole lot anyway, I introduced more inline comments with the exact steps from the spec - this makes it super easy to verify correctness. - East-const all the things. As a result of all of this, things are much more correct but a bit slower now. Retaining speed wasn't a consideration at all, I have done no profiling of the new code - there might be low hanging fruits, which we can then harvest separately. Special thanks to Idan for helping me with this by tracking down bugs, updating everything outside of LibJS to work with these changes (LibWeb, Spreadsheet, HackStudio), as well as providing countless patches to fix regressions I introduced - there still are very few (we got it down to 5), but we also get many new passing test262 tests in return. :^) Co-authored-by: Idan Horowitz <idan.horowitz@gmail.com>
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auto success = Object::internal_set_prototype_of(&ensure_web_prototype<EventTargetPrototype>("EventTarget"));
VERIFY(success);
// FIXME: These should be native accessors, not properties
define_direct_property("window", this, JS::Attribute::Enumerable);
define_direct_property("frames", this, JS::Attribute::Enumerable);
define_direct_property("self", this, JS::Attribute::Enumerable);
define_native_accessor("top", top_getter, nullptr, JS::Attribute::Enumerable);
define_native_accessor("parent", parent_getter, {}, JS::Attribute::Enumerable);
define_native_accessor("document", document_getter, {}, JS::Attribute::Enumerable);
define_native_accessor("history", history_getter, {}, JS::Attribute::Enumerable);
define_native_accessor("performance", performance_getter, {}, JS::Attribute::Enumerable);
define_native_accessor("screen", screen_getter, {}, JS::Attribute::Enumerable);
define_native_accessor("innerWidth", inner_width_getter, {}, JS::Attribute::Enumerable);
define_native_accessor("innerHeight", inner_height_getter, {}, JS::Attribute::Enumerable);
define_native_accessor("devicePixelRatio", device_pixel_ratio_getter, {}, JS::Attribute::Enumerable | JS::Attribute::Configurable);
u8 attr = JS::Attribute::Writable | JS::Attribute::Enumerable | JS::Attribute::Configurable;
define_native_function("alert", alert, 0, attr);
define_native_function("confirm", confirm, 0, attr);
define_native_function("prompt", prompt, 0, attr);
define_native_function("setInterval", set_interval, 1, attr);
define_native_function("setTimeout", set_timeout, 1, attr);
define_native_function("clearInterval", clear_interval, 1, attr);
define_native_function("clearTimeout", clear_timeout, 1, attr);
define_native_function("requestAnimationFrame", request_animation_frame, 1, attr);
define_native_function("cancelAnimationFrame", cancel_animation_frame, 1, attr);
define_native_function("atob", atob, 1, attr);
define_native_function("btoa", btoa, 1, attr);
define_native_function("queueMicrotask", queue_microtask, 1, attr);
define_native_function("getComputedStyle", get_computed_style, 1, attr);
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define_native_function("matchMedia", match_media, 1, attr);
// FIXME: These properties should be [Replaceable] according to the spec, but [Writable+Configurable] is the closest we have.
define_native_accessor("scrollX", scroll_x_getter, {}, attr);
define_native_accessor("pageXOffset", scroll_x_getter, {}, attr);
define_native_accessor("scrollY", scroll_y_getter, {}, attr);
define_native_accessor("pageYOffset", scroll_y_getter, {}, attr);
define_native_function("scroll", scroll, 2, attr);
define_native_function("scrollTo", scroll, 2, attr);
define_native_function("scrollBy", scroll_by, 2, attr);
// Legacy
define_native_accessor("event", event_getter, event_setter, JS::Attribute::Enumerable);
m_location_object = heap().allocate<LocationObject>(*this, *this);
define_direct_property("navigator", heap().allocate<NavigatorObject>(*this, *this), JS::Attribute::Enumerable | JS::Attribute::Configurable);
// NOTE: location is marked as [LegacyUnforgeable], meaning it isn't configurable.
define_direct_property("location", m_location_object, JS::Attribute::Enumerable);
// WebAssembly "namespace"
define_direct_property("WebAssembly", heap().allocate<WebAssemblyObject>(*this, *this), JS::Attribute::Enumerable | JS::Attribute::Configurable);
// HTML::GlobalEventHandlers
#define __ENUMERATE(attribute, event_name) \
define_native_accessor(#attribute, attribute##_getter, attribute##_setter, attr);
ENUMERATE_GLOBAL_EVENT_HANDLERS(__ENUMERATE);
#undef __ENUMERATE
ADD_WINDOW_OBJECT_INTERFACES;
}
WindowObject::~WindowObject()
{
}
void WindowObject::visit_edges(Visitor& visitor)
{
GlobalObject::visit_edges(visitor);
visitor.visit(m_location_object);
for (auto& it : m_prototypes)
visitor.visit(it.value);
for (auto& it : m_constructors)
visitor.visit(it.value);
}
Origin WindowObject::origin() const
{
return impl().associated_document().origin();
}
// https://heycam.github.io/webidl/#platform-object-setprototypeof
bool WindowObject::internal_set_prototype_of(JS::Object* prototype)
{
// 1. Return ? SetImmutablePrototype(O, V).
return set_immutable_prototype(prototype);
}
static DOM::Window* impl_from(JS::VM& vm, JS::GlobalObject& global_object)
{
// Since this is a non built-in function we must treat it as non-strict mode
// this means that a nullish this_value should be converted to the
// global_object. Generally this does not matter as we try to convert the
// this_value to a specific object type in the bindings. But since window is
// the global object we make an exception here.
// This allows calls like `setTimeout(f, 10)` to work.
auto this_value = vm.this_value(global_object);
if (this_value.is_nullish()) {
this_value = global_object.value_of();
}
auto* this_object = this_value.to_object(global_object);
VERIFY(this_object);
if (StringView("WindowObject") != this_object->class_name()) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::NotAnObjectOfType, "WindowObject");
return nullptr;
}
return &static_cast<WindowObject*>(this_object)->impl();
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::alert)
{
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// https://html.spec.whatwg.org/multipage/timers-and-user-prompts.html#simple-dialogs
// Note: This method is defined using two overloads, instead of using an optional argument,
// for historical reasons. The practical impact of this is that alert(undefined) is
// treated as alert("undefined"), but alert() is treated as alert("").
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
String message = "";
if (vm.argument_count()) {
message = vm.argument(0).to_string(global_object);
if (vm.exception())
return {};
}
impl->alert(message);
return JS::js_undefined();
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::confirm)
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{
auto* impl = impl_from(vm, global_object);
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if (!impl)
return {};
String message = "";
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if (!vm.argument(0).is_undefined()) {
message = vm.argument(0).to_string(global_object);
if (vm.exception())
return {};
}
return JS::Value(impl->confirm(message));
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}
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JS_DEFINE_NATIVE_FUNCTION(WindowObject::prompt)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
String message = "";
String default_ = "";
if (!vm.argument(0).is_undefined()) {
message = vm.argument(0).to_string(global_object);
if (vm.exception())
return {};
}
if (!vm.argument(1).is_undefined()) {
default_ = vm.argument(1).to_string(global_object);
if (vm.exception())
return {};
}
auto response = impl->prompt(message, default_);
if (response.is_null())
return JS::js_null();
return JS::js_string(vm, response);
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::set_interval)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
if (!vm.argument_count()) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::BadArgCountAtLeastOne, "setInterval");
return {};
}
auto* callback_object = vm.argument(0).to_object(global_object);
if (!callback_object)
return {};
if (!callback_object->is_function()) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::NotAFunctionNoParam);
return {};
}
i32 interval = 0;
if (vm.argument_count() >= 2) {
interval = vm.argument(1).to_i32(global_object);
if (vm.exception())
return {};
if (interval < 0)
interval = 0;
}
auto timer_id = impl->set_interval(*static_cast<JS::FunctionObject*>(callback_object), interval);
return JS::Value(timer_id);
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::set_timeout)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
if (!vm.argument_count()) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::BadArgCountAtLeastOne, "setTimeout");
return {};
}
auto* callback_object = vm.argument(0).to_object(global_object);
if (!callback_object)
return {};
if (!callback_object->is_function()) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::NotAFunctionNoParam);
return {};
}
i32 interval = 0;
if (vm.argument_count() >= 2) {
interval = vm.argument(1).to_i32(global_object);
if (vm.exception())
return {};
if (interval < 0)
interval = 0;
}
auto timer_id = impl->set_timeout(*static_cast<JS::FunctionObject*>(callback_object), interval);
return JS::Value(timer_id);
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::clear_timeout)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
if (!vm.argument_count()) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::BadArgCountAtLeastOne, "clearTimeout");
return {};
}
i32 timer_id = vm.argument(0).to_i32(global_object);
if (vm.exception())
return {};
impl->clear_timeout(timer_id);
return JS::js_undefined();
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::clear_interval)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
if (!vm.argument_count()) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::BadArgCountAtLeastOne, "clearInterval");
return {};
}
i32 timer_id = vm.argument(0).to_i32(global_object);
if (vm.exception())
return {};
impl->clear_timeout(timer_id);
return JS::js_undefined();
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::request_animation_frame)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
if (!vm.argument_count()) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::BadArgCountOne, "requestAnimationFrame");
return {};
}
auto* callback_object = vm.argument(0).to_object(global_object);
if (!callback_object)
return {};
if (!callback_object->is_function()) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::NotAFunctionNoParam);
return {};
}
return JS::Value(impl->request_animation_frame(*static_cast<JS::FunctionObject*>(callback_object)));
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::cancel_animation_frame)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
if (!vm.argument_count()) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::BadArgCountOne, "cancelAnimationFrame");
return {};
}
auto id = vm.argument(0).to_i32(global_object);
if (vm.exception())
return {};
impl->cancel_animation_frame(id);
return JS::js_undefined();
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::queue_microtask)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
if (!vm.argument_count()) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::BadArgCountAtLeastOne, "queueMicrotask");
return {};
}
auto* callback_object = vm.argument(0).to_object(global_object);
if (!callback_object)
return {};
if (!callback_object->is_function()) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::NotAFunctionNoParam);
return {};
}
impl->queue_microtask(static_cast<JS::FunctionObject&>(*callback_object));
return JS::js_undefined();
}
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JS_DEFINE_NATIVE_FUNCTION(WindowObject::atob)
{
auto* impl = impl_from(vm, global_object);
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if (!impl)
return {};
if (!vm.argument_count()) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::BadArgCountOne, "atob");
return {};
}
auto string = vm.argument(0).to_string(global_object);
if (vm.exception())
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return {};
auto decoded = decode_base64(StringView(string));
// decode_base64() returns a byte string. LibJS uses UTF-8 for strings. Use Latin1Decoder to convert bytes 128-255 to UTF-8.
auto decoder = TextCodec::decoder_for("windows-1252");
VERIFY(decoder);
return JS::js_string(vm, decoder->to_utf8(decoded));
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}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::btoa)
{
auto* impl = impl_from(vm, global_object);
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if (!impl)
return {};
if (!vm.argument_count()) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::BadArgCountOne, "btoa");
return {};
}
auto string = vm.argument(0).to_string(global_object);
if (vm.exception())
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return {};
Vector<u8> byte_string;
byte_string.ensure_capacity(string.length());
for (u32 code_point : Utf8View(string)) {
if (code_point > 0xff) {
vm.throw_exception<JS::InvalidCharacterError>(global_object, JS::ErrorType::NotAByteString, "btoa");
return {};
}
byte_string.append(code_point);
}
auto encoded = encode_base64(byte_string.span());
return JS::js_string(vm, move(encoded));
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}
// https://html.spec.whatwg.org/multipage/browsers.html#dom-top
JS_DEFINE_NATIVE_FUNCTION(WindowObject::top_getter)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
auto* this_browsing_context = impl->associated_document().browsing_context();
if (!this_browsing_context)
return JS::js_null();
VERIFY(this_browsing_context->top_level_browsing_context().active_document());
auto& top_window = this_browsing_context->top_level_browsing_context().active_document()->window();
return top_window.wrapper();
}
// https://html.spec.whatwg.org/multipage/browsers.html#dom-parent
JS_DEFINE_NATIVE_FUNCTION(WindowObject::parent_getter)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
auto* this_browsing_context = impl->associated_document().browsing_context();
if (!this_browsing_context)
return JS::js_null();
if (this_browsing_context->parent()) {
VERIFY(this_browsing_context->parent()->active_document());
auto& parent_window = this_browsing_context->parent()->active_document()->window();
return parent_window.wrapper();
}
VERIFY(this_browsing_context == &this_browsing_context->top_level_browsing_context());
return impl->wrapper();
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::document_getter)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
return wrap(global_object, impl->associated_document());
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::performance_getter)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
return wrap(global_object, impl->performance());
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::screen_getter)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
return wrap(global_object, impl->screen());
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::event_getter)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
if (!impl->current_event())
return JS::js_undefined();
return wrap(global_object, const_cast<DOM::Event&>(*impl->current_event()));
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::event_setter)
{
REPLACEABLE_PROPERTY_SETTER(WindowObject, event);
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::inner_width_getter)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
return JS::Value(impl->inner_width());
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::inner_height_getter)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
return JS::Value(impl->inner_height());
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::device_pixel_ratio_getter)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
return JS::Value(impl->device_pixel_ratio());
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::get_computed_style)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
auto* object = vm.argument(0).to_object(global_object);
if (vm.exception())
return {};
if (!is<ElementWrapper>(object)) {
vm.throw_exception<JS::TypeError>(global_object, JS::ErrorType::NotAnObjectOfType, "DOM element");
return {};
}
return wrap(global_object, impl->get_computed_style(static_cast<ElementWrapper*>(object)->impl()));
}
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JS_DEFINE_NATIVE_FUNCTION(WindowObject::match_media)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
auto media = vm.argument(0).to_string(global_object);
if (vm.exception())
return {};
return wrap(global_object, impl->match_media(move(media)));
}
// https://www.w3.org/TR/cssom-view/#dom-window-scrollx
JS_DEFINE_NATIVE_GETTER(WindowObject::scroll_x_getter)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
return JS::Value(impl->scroll_x());
}
// https://www.w3.org/TR/cssom-view/#dom-window-scrolly
JS_DEFINE_NATIVE_GETTER(WindowObject::scroll_y_getter)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
return JS::Value(impl->scroll_y());
}
enum class ScrollBehavior {
Auto,
Smooth
};
// https://www.w3.org/TR/cssom-view/#perform-a-scroll
static void perform_a_scroll(Page& page, double x, double y, ScrollBehavior)
{
// FIXME: Stop any existing smooth-scrolls
// FIXME: Implement smooth-scroll
page.client().page_did_request_scroll_to({ x, y });
}
// https://www.w3.org/TR/cssom-view/#dom-window-scroll
JS_DEFINE_NATIVE_FUNCTION(WindowObject::scroll)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
if (!impl->page())
return {};
auto& page = *impl->page();
auto viewport_rect = page.top_level_browsing_context().viewport_rect();
auto x_value = JS::Value(viewport_rect.x());
auto y_value = JS::Value(viewport_rect.y());
String behavior_string = "auto";
if (vm.argument_count() == 1) {
auto* options = vm.argument(0).to_object(global_object);
if (vm.exception())
return {};
auto left = options->get("left");
if (vm.exception())
return {};
if (!left.is_undefined())
x_value = left;
auto top = options->get("top");
if (vm.exception())
return {};
if (!top.is_undefined())
y_value = top;
auto behavior_string_value = options->get("behavior");
if (vm.exception())
return {};
if (!behavior_string_value.is_undefined())
behavior_string = behavior_string_value.to_string(global_object);
if (vm.exception())
return {};
if (behavior_string != "smooth" && behavior_string != "auto") {
vm.throw_exception<JS::TypeError>(global_object, "Behavior is not one of 'smooth' or 'auto'");
return {};
}
} else if (vm.argument_count() >= 2) {
// We ignore arguments 2+ in line with behavior of Chrome and Firefox
x_value = vm.argument(0);
y_value = vm.argument(1);
}
ScrollBehavior behavior = (behavior_string == "smooth") ? ScrollBehavior::Smooth : ScrollBehavior::Auto;
double x = x_value.to_double(global_object);
if (vm.exception())
return {};
x = JS::Value(x).is_finite_number() ? x : 0.0;
double y = y_value.to_double(global_object);
if (vm.exception())
return {};
y = JS::Value(y).is_finite_number() ? y : 0.0;
// FIXME: Are we calculating the viewport in the way this function expects?
// FIXME: Handle overflow-directions other than top-left to bottom-right
perform_a_scroll(page, x, y, behavior);
return JS::js_undefined();
}
// https://www.w3.org/TR/cssom-view/#dom-window-scrollby
JS_DEFINE_NATIVE_FUNCTION(WindowObject::scroll_by)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
if (!impl->page())
return {};
auto& page = *impl->page();
JS::Object* options = nullptr;
if (vm.argument_count() == 0) {
options = JS::Object::create(global_object, nullptr);
} else if (vm.argument_count() == 1) {
options = vm.argument(0).to_object(global_object);
if (vm.exception())
return {};
} else if (vm.argument_count() >= 2) {
// We ignore arguments 2+ in line with behavior of Chrome and Firefox
options = JS::Object::create(global_object, nullptr);
options->set("left", vm.argument(0), ShouldThrowExceptions::No);
options->set("top", vm.argument(1), ShouldThrowExceptions::No);
options->set("behavior", JS::js_string(vm, "auto"), ShouldThrowExceptions::No);
}
auto left_value = options->get("left");
if (vm.exception())
return {};
auto left = left_value.to_double(global_object);
if (vm.exception())
return {};
auto top_value = options->get("top");
if (vm.exception())
return {};
auto top = top_value.to_double(global_object);
if (vm.exception())
return {};
left = JS::Value(left).is_finite_number() ? left : 0.0;
top = JS::Value(top).is_finite_number() ? top : 0.0;
auto current_scroll_position = page.top_level_browsing_context().viewport_scroll_offset();
left = left + current_scroll_position.x();
top = top + current_scroll_position.y();
auto behavior_string_value = options->get("behavior");
if (vm.exception())
return {};
auto behavior_string = behavior_string_value.is_undefined() ? "auto" : behavior_string_value.to_string(global_object);
if (vm.exception())
return {};
if (behavior_string != "smooth" && behavior_string != "auto") {
vm.throw_exception<JS::TypeError>(global_object, "Behavior is not one of 'smooth' or 'auto'");
return {};
}
ScrollBehavior behavior = (behavior_string == "smooth") ? ScrollBehavior::Smooth : ScrollBehavior::Auto;
// FIXME: Spec wants us to call scroll(options) here.
// The only difference is that would invoke the viewport calculations that scroll()
// is not actually doing yet, so this is the same for now.
perform_a_scroll(page, left, top, behavior);
return JS::js_undefined();
}
JS_DEFINE_NATIVE_FUNCTION(WindowObject::history_getter)
{
auto* impl = impl_from(vm, global_object);
if (!impl)
return {};
return wrap(global_object, impl->associated_document().history());
}
#define __ENUMERATE(attribute, event_name) \
JS_DEFINE_NATIVE_FUNCTION(WindowObject::attribute##_getter) \
{ \
auto* impl = impl_from(vm, global_object); \
if (!impl) \
return {}; \
auto retval = impl->attribute(); \
if (retval.callback.is_null()) \
return JS::js_null(); \
return retval.callback.cell(); \
} \
JS_DEFINE_NATIVE_FUNCTION(WindowObject::attribute##_setter) \
{ \
auto* impl = impl_from(vm, global_object); \
if (!impl) \
return {}; \
auto value = vm.argument(0); \
HTML::EventHandler cpp_value; \
if (value.is_function()) { \
cpp_value.callback = JS::make_handle(&value.as_function()); \
} else if (value.is_string()) { \
cpp_value.string = value.as_string().string(); \
} else { \
return JS::js_undefined(); \
} \
auto result = throw_dom_exception_if_needed(vm, global_object, [&] { \
return impl->set_##attribute(cpp_value); \
}); \
if (should_return_empty(result)) \
return {}; \
return JS::js_undefined(); \
}
ENUMERATE_GLOBAL_EVENT_HANDLERS(__ENUMERATE)
#undef __ENUMERATE
}