mirror of
https://github.com/denoland/deno.git
synced 2024-11-28 16:20:57 -05:00
a555cb4d1d
- Symbol.asyncDispose no longer needs to be polyfilled - assorted updates for cppgc api changes
674 lines
20 KiB
Rust
674 lines
20 KiB
Rust
// Copyright 2018-2024 the Deno authors. All rights reserved. MIT license.
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use deno_core::error::type_error;
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use deno_core::error::AnyError;
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use deno_core::v8;
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use deno_core::v8::MapFnTo;
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pub const PRIVATE_SYMBOL_NAME: v8::OneByteConst =
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v8::String::create_external_onebyte_const(b"node:contextify:context");
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/// An unbounded script that can be run in a context.
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#[derive(Debug)]
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pub struct ContextifyScript {
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script: v8::Global<v8::UnboundScript>,
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}
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impl ContextifyScript {
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pub fn new(
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scope: &mut v8::HandleScope,
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source_str: v8::Local<v8::String>,
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) -> Result<Self, AnyError> {
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let source = v8::script_compiler::Source::new(source_str, None);
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let unbound_script = v8::script_compiler::compile_unbound_script(
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scope,
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source,
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v8::script_compiler::CompileOptions::NoCompileOptions,
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v8::script_compiler::NoCacheReason::NoReason,
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)
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.ok_or_else(|| type_error("Failed to compile script"))?;
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let script = v8::Global::new(scope, unbound_script);
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Ok(Self { script })
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}
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// TODO(littledivy): Support `options`
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pub fn eval_machine<'s>(
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&self,
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scope: &mut v8::HandleScope<'s>,
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_context: v8::Local<v8::Context>,
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) -> Option<v8::Local<'s, v8::Value>> {
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let tc_scope = &mut v8::TryCatch::new(scope);
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let unbound_script = v8::Local::new(tc_scope, self.script.clone());
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let script = unbound_script.bind_to_current_context(tc_scope);
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let result = script.run(tc_scope);
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if tc_scope.has_caught() {
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// If there was an exception thrown during script execution, re-throw it.
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if !tc_scope.has_terminated() {
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tc_scope.rethrow();
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}
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return None;
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}
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Some(result.unwrap())
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}
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}
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pub struct ContextifyContext {
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context: v8::TracedReference<v8::Context>,
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sandbox: v8::TracedReference<v8::Object>,
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}
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impl deno_core::GarbageCollected for ContextifyContext {
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fn trace(&self, visitor: &v8::cppgc::Visitor) {
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visitor.trace(&self.context);
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visitor.trace(&self.sandbox);
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}
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}
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impl ContextifyContext {
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pub fn attach(
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scope: &mut v8::HandleScope,
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sandbox_obj: v8::Local<v8::Object>,
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) {
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let tmp = init_global_template(scope, ContextInitMode::UseSnapshot);
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let context = create_v8_context(scope, tmp, ContextInitMode::UseSnapshot);
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Self::from_context(scope, context, sandbox_obj);
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}
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fn from_context(
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scope: &mut v8::HandleScope,
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v8_context: v8::Local<v8::Context>,
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sandbox_obj: v8::Local<v8::Object>,
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) {
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let main_context = scope.get_current_context();
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let context_state = main_context.get_aligned_pointer_from_embedder_data(
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deno_core::CONTEXT_STATE_SLOT_INDEX,
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);
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let module_map = main_context
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.get_aligned_pointer_from_embedder_data(deno_core::MODULE_MAP_SLOT_INDEX);
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v8_context.set_security_token(main_context.get_security_token(scope));
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// SAFETY: set embedder data from the creation context
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unsafe {
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v8_context.set_aligned_pointer_in_embedder_data(
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deno_core::CONTEXT_STATE_SLOT_INDEX,
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context_state,
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);
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v8_context.set_aligned_pointer_in_embedder_data(
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deno_core::MODULE_MAP_SLOT_INDEX,
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module_map,
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);
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}
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let context = v8::TracedReference::new(scope, v8_context);
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let sandbox = v8::TracedReference::new(scope, sandbox_obj);
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let wrapper =
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deno_core::cppgc::make_cppgc_object(scope, Self { context, sandbox });
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let ptr =
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deno_core::cppgc::try_unwrap_cppgc_object::<Self>(scope, wrapper.into());
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// SAFETY: We are storing a pointer to the ContextifyContext
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// in the embedder data of the v8::Context. The contextified wrapper
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// lives longer than the execution context, so this should be safe.
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unsafe {
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v8_context.set_aligned_pointer_in_embedder_data(
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3,
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ptr.borrow().unwrap() as *const ContextifyContext as _,
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);
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}
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let private_str =
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v8::String::new_from_onebyte_const(scope, &PRIVATE_SYMBOL_NAME);
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let private_symbol = v8::Private::for_api(scope, private_str);
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sandbox_obj.set_private(scope, private_symbol, wrapper.into());
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}
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pub fn from_sandbox_obj<'a>(
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scope: &mut v8::HandleScope<'a>,
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sandbox_obj: v8::Local<v8::Object>,
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) -> Option<&'a Self> {
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let private_str =
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v8::String::new_from_onebyte_const(scope, &PRIVATE_SYMBOL_NAME);
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let private_symbol = v8::Private::for_api(scope, private_str);
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sandbox_obj
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.get_private(scope, private_symbol)
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.and_then(|wrapper| {
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deno_core::cppgc::try_unwrap_cppgc_object::<Self>(scope, wrapper)
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.borrow()
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// SAFETY: the lifetime of the scope does not actually bind to
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// the lifetime of this reference at all, but the object we read
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// it from does, so it will be alive at least that long.
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.map(|r| unsafe { &*(r as *const _) })
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})
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}
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pub fn is_contextify_context(
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scope: &mut v8::HandleScope,
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object: v8::Local<v8::Object>,
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) -> bool {
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Self::from_sandbox_obj(scope, object).is_some()
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}
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pub fn context<'a>(
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&self,
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scope: &mut v8::HandleScope<'a>,
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) -> v8::Local<'a, v8::Context> {
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self.context.get(scope).unwrap()
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}
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fn global_proxy<'s>(
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&self,
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scope: &mut v8::HandleScope<'s>,
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) -> v8::Local<'s, v8::Object> {
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let ctx = self.context(scope);
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ctx.global(scope)
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}
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fn sandbox<'a>(
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&self,
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scope: &mut v8::HandleScope<'a>,
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) -> v8::Local<'a, v8::Object> {
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self.sandbox.get(scope).unwrap()
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}
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fn get<'a, 'c>(
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scope: &mut v8::HandleScope<'a>,
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object: v8::Local<'a, v8::Object>,
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) -> Option<&'c ContextifyContext> {
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let context = object.get_creation_context(scope)?;
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let context_ptr = context.get_aligned_pointer_from_embedder_data(3);
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if context_ptr.is_null() {
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return None;
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}
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// SAFETY: We are storing a pointer to the ContextifyContext
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// in the embedder data of the v8::Context during creation.
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Some(unsafe { &*(context_ptr as *const ContextifyContext) })
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}
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}
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pub const VM_CONTEXT_INDEX: usize = 0;
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#[derive(PartialEq)]
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pub enum ContextInitMode {
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ForSnapshot,
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UseSnapshot,
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}
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pub fn create_v8_context<'a>(
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scope: &mut v8::HandleScope<'a, ()>,
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object_template: v8::Local<v8::ObjectTemplate>,
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mode: ContextInitMode,
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) -> v8::Local<'a, v8::Context> {
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let scope = &mut v8::EscapableHandleScope::new(scope);
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let context = if mode == ContextInitMode::UseSnapshot {
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v8::Context::from_snapshot(scope, VM_CONTEXT_INDEX).unwrap()
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} else {
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let ctx = v8::Context::new_from_template(scope, object_template);
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// SAFETY: ContextifyContexts will update this to a pointer to the native object
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unsafe {
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ctx.set_aligned_pointer_in_embedder_data(1, std::ptr::null_mut());
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ctx.set_aligned_pointer_in_embedder_data(2, std::ptr::null_mut());
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ctx.set_aligned_pointer_in_embedder_data(3, std::ptr::null_mut());
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ctx.clear_all_slots(scope);
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};
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ctx
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};
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scope.escape(context)
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}
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#[derive(Debug, Clone)]
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struct SlotContextifyGlobalTemplate(v8::Global<v8::ObjectTemplate>);
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pub fn init_global_template<'a>(
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scope: &mut v8::HandleScope<'a, ()>,
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mode: ContextInitMode,
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) -> v8::Local<'a, v8::ObjectTemplate> {
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let maybe_object_template_slot =
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scope.get_slot::<SlotContextifyGlobalTemplate>();
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if maybe_object_template_slot.is_none() {
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let global_object_template = init_global_template_inner(scope);
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if mode == ContextInitMode::UseSnapshot {
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let contextify_global_template_slot = SlotContextifyGlobalTemplate(
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v8::Global::new(scope, global_object_template),
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);
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scope.set_slot(contextify_global_template_slot);
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}
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global_object_template
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} else {
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let object_template_slot = maybe_object_template_slot
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.expect("ContextifyGlobalTemplate slot should be already populated.")
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.clone();
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v8::Local::new(scope, object_template_slot.0)
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}
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}
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// Using thread_local! to get around compiler bug.
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//
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// See NOTE in ext/node/global.rs#L12
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thread_local! {
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pub static GETTER_MAP_FN: v8::NamedPropertyGetterCallback<'static> = property_getter.map_fn_to();
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pub static SETTER_MAP_FN: v8::NamedPropertySetterCallback<'static> = property_setter.map_fn_to();
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pub static DELETER_MAP_FN: v8::NamedPropertyGetterCallback<'static> = property_deleter.map_fn_to();
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pub static ENUMERATOR_MAP_FN: v8::NamedPropertyEnumeratorCallback<'static> = property_enumerator.map_fn_to();
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pub static DEFINER_MAP_FN: v8::NamedPropertyDefinerCallback<'static> = property_definer.map_fn_to();
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pub static DESCRIPTOR_MAP_FN: v8::NamedPropertyGetterCallback<'static> = property_descriptor.map_fn_to();
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}
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thread_local! {
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pub static INDEXED_GETTER_MAP_FN: v8::IndexedPropertyGetterCallback<'static> = indexed_property_getter.map_fn_to();
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pub static INDEXED_SETTER_MAP_FN: v8::IndexedPropertySetterCallback<'static> = indexed_property_setter.map_fn_to();
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pub static INDEXED_DELETER_MAP_FN: v8::IndexedPropertyGetterCallback<'static> = indexed_property_deleter.map_fn_to();
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pub static INDEXED_DEFINER_MAP_FN: v8::IndexedPropertyDefinerCallback<'static> = indexed_property_definer.map_fn_to();
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pub static INDEXED_DESCRIPTOR_MAP_FN: v8::IndexedPropertyGetterCallback<'static> = indexed_property_descriptor.map_fn_to();
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}
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pub fn init_global_template_inner<'a>(
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scope: &mut v8::HandleScope<'a, ()>,
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) -> v8::Local<'a, v8::ObjectTemplate> {
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let global_object_template = v8::ObjectTemplate::new(scope);
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global_object_template.set_internal_field_count(3);
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let named_property_handler_config = {
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let mut config = v8::NamedPropertyHandlerConfiguration::new()
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.flags(v8::PropertyHandlerFlags::HAS_NO_SIDE_EFFECT);
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config = GETTER_MAP_FN.with(|getter| config.getter_raw(*getter));
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config = SETTER_MAP_FN.with(|setter| config.setter_raw(*setter));
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config = DELETER_MAP_FN.with(|deleter| config.deleter_raw(*deleter));
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config =
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ENUMERATOR_MAP_FN.with(|enumerator| config.enumerator_raw(*enumerator));
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config = DEFINER_MAP_FN.with(|definer| config.definer_raw(*definer));
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config =
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DESCRIPTOR_MAP_FN.with(|descriptor| config.descriptor_raw(*descriptor));
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config
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};
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let indexed_property_handler_config = {
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let mut config = v8::IndexedPropertyHandlerConfiguration::new()
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.flags(v8::PropertyHandlerFlags::HAS_NO_SIDE_EFFECT);
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config = INDEXED_GETTER_MAP_FN.with(|getter| config.getter_raw(*getter));
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config = INDEXED_SETTER_MAP_FN.with(|setter| config.setter_raw(*setter));
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config =
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INDEXED_DELETER_MAP_FN.with(|deleter| config.deleter_raw(*deleter));
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config =
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ENUMERATOR_MAP_FN.with(|enumerator| config.enumerator_raw(*enumerator));
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config =
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INDEXED_DEFINER_MAP_FN.with(|definer| config.definer_raw(*definer));
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config = INDEXED_DESCRIPTOR_MAP_FN
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.with(|descriptor| config.descriptor_raw(*descriptor));
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config
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};
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global_object_template
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.set_named_property_handler(named_property_handler_config);
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global_object_template
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.set_indexed_property_handler(indexed_property_handler_config);
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global_object_template
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}
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fn property_getter<'s>(
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scope: &mut v8::HandleScope<'s>,
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key: v8::Local<'s, v8::Name>,
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args: v8::PropertyCallbackArguments<'s>,
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mut ret: v8::ReturnValue,
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) -> v8::Intercepted {
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let Some(ctx) = ContextifyContext::get(scope, args.this()) else {
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return v8::Intercepted::No;
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};
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let sandbox = ctx.sandbox(scope);
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let tc_scope = &mut v8::TryCatch::new(scope);
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let maybe_rv = sandbox.get_real_named_property(tc_scope, key).or_else(|| {
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ctx
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.global_proxy(tc_scope)
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.get_real_named_property(tc_scope, key)
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});
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if let Some(mut rv) = maybe_rv {
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if tc_scope.has_caught() && !tc_scope.has_terminated() {
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tc_scope.rethrow();
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}
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if rv == sandbox {
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rv = ctx.global_proxy(tc_scope).into();
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}
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ret.set(rv);
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return v8::Intercepted::Yes;
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}
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v8::Intercepted::No
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}
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fn property_setter<'s>(
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scope: &mut v8::HandleScope<'s>,
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key: v8::Local<'s, v8::Name>,
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value: v8::Local<'s, v8::Value>,
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args: v8::PropertyCallbackArguments<'s>,
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mut rv: v8::ReturnValue,
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) -> v8::Intercepted {
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let Some(ctx) = ContextifyContext::get(scope, args.this()) else {
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return v8::Intercepted::No;
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};
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let (attributes, is_declared_on_global_proxy) = match ctx
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.global_proxy(scope)
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.get_real_named_property_attributes(scope, key)
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{
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Some(attr) => (attr, true),
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None => (v8::PropertyAttribute::NONE, false),
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};
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let mut read_only = attributes.is_read_only();
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let (attributes, is_declared_on_sandbox) = match ctx
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.sandbox(scope)
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.get_real_named_property_attributes(scope, key)
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{
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Some(attr) => (attr, true),
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None => (v8::PropertyAttribute::NONE, false),
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};
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read_only |= attributes.is_read_only();
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if read_only {
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return v8::Intercepted::No;
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}
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// true for x = 5
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// false for this.x = 5
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// false for Object.defineProperty(this, 'foo', ...)
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// false for vmResult.x = 5 where vmResult = vm.runInContext();
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let is_contextual_store = ctx.global_proxy(scope) != args.this();
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// Indicator to not return before setting (undeclared) function declarations
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// on the sandbox in strict mode, i.e. args.ShouldThrowOnError() = true.
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// True for 'function f() {}', 'this.f = function() {}',
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// 'var f = function()'.
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// In effect only for 'function f() {}' because
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// var f = function(), is_declared = true
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// this.f = function() {}, is_contextual_store = false.
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let is_function = value.is_function();
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let is_declared = is_declared_on_global_proxy || is_declared_on_sandbox;
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if !is_declared
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&& args.should_throw_on_error()
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&& is_contextual_store
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&& !is_function
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{
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return v8::Intercepted::No;
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}
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if !is_declared && key.is_symbol() {
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return v8::Intercepted::No;
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};
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if ctx.sandbox(scope).set(scope, key.into(), value).is_none() {
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return v8::Intercepted::No;
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}
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if is_declared_on_sandbox {
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if let Some(desc) =
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ctx.sandbox(scope).get_own_property_descriptor(scope, key)
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{
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if !desc.is_undefined() {
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let desc_obj: v8::Local<v8::Object> = desc.try_into().unwrap();
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// We have to specify the return value for any contextual or get/set
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// property
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let get_key =
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v8::String::new_external_onebyte_static(scope, b"get").unwrap();
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let set_key =
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v8::String::new_external_onebyte_static(scope, b"get").unwrap();
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if desc_obj
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.has_own_property(scope, get_key.into())
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.unwrap_or(false)
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|| desc_obj
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.has_own_property(scope, set_key.into())
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.unwrap_or(false)
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{
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rv.set(value);
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return v8::Intercepted::Yes;
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}
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}
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}
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}
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v8::Intercepted::No
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}
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fn property_deleter<'s>(
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scope: &mut v8::HandleScope<'s>,
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key: v8::Local<'s, v8::Name>,
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args: v8::PropertyCallbackArguments<'s>,
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mut rv: v8::ReturnValue,
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) -> v8::Intercepted {
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let Some(ctx) = ContextifyContext::get(scope, args.this()) else {
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return v8::Intercepted::No;
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};
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let context = ctx.context(scope);
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|
let sandbox = ctx.sandbox(scope);
|
|
let context_scope = &mut v8::ContextScope::new(scope, context);
|
|
if !sandbox.delete(context_scope, key.into()).unwrap_or(false) {
|
|
return v8::Intercepted::No;
|
|
}
|
|
|
|
rv.set_bool(false);
|
|
v8::Intercepted::Yes
|
|
}
|
|
|
|
fn property_enumerator<'s>(
|
|
scope: &mut v8::HandleScope<'s>,
|
|
args: v8::PropertyCallbackArguments<'s>,
|
|
mut rv: v8::ReturnValue,
|
|
) {
|
|
let Some(ctx) = ContextifyContext::get(scope, args.this()) else {
|
|
return;
|
|
};
|
|
|
|
let context = ctx.context(scope);
|
|
let sandbox = ctx.sandbox(scope);
|
|
let context_scope = &mut v8::ContextScope::new(scope, context);
|
|
let Some(properties) = sandbox
|
|
.get_property_names(context_scope, v8::GetPropertyNamesArgs::default())
|
|
else {
|
|
return;
|
|
};
|
|
|
|
rv.set(properties.into());
|
|
}
|
|
|
|
fn property_definer<'s>(
|
|
scope: &mut v8::HandleScope<'s>,
|
|
key: v8::Local<'s, v8::Name>,
|
|
desc: &v8::PropertyDescriptor,
|
|
args: v8::PropertyCallbackArguments<'s>,
|
|
_: v8::ReturnValue,
|
|
) -> v8::Intercepted {
|
|
let Some(ctx) = ContextifyContext::get(scope, args.this()) else {
|
|
return v8::Intercepted::No;
|
|
};
|
|
|
|
let context = ctx.context(scope);
|
|
let (attributes, is_declared) = match ctx
|
|
.global_proxy(scope)
|
|
.get_real_named_property_attributes(scope, key)
|
|
{
|
|
Some(attr) => (attr, true),
|
|
None => (v8::PropertyAttribute::NONE, false),
|
|
};
|
|
|
|
let read_only = attributes.is_read_only();
|
|
let dont_delete = attributes.is_dont_delete();
|
|
|
|
// If the property is set on the global as read_only, don't change it on
|
|
// the global or sandbox.
|
|
if is_declared && read_only && dont_delete {
|
|
return v8::Intercepted::No;
|
|
}
|
|
|
|
let sandbox = ctx.sandbox(scope);
|
|
let scope = &mut v8::ContextScope::new(scope, context);
|
|
|
|
let define_prop_on_sandbox =
|
|
|scope: &mut v8::HandleScope,
|
|
desc_for_sandbox: &mut v8::PropertyDescriptor| {
|
|
if desc.has_enumerable() {
|
|
desc_for_sandbox.set_enumerable(desc.enumerable());
|
|
}
|
|
|
|
if desc.has_configurable() {
|
|
desc_for_sandbox.set_configurable(desc.configurable());
|
|
}
|
|
|
|
sandbox.define_property(scope, key, desc_for_sandbox);
|
|
};
|
|
|
|
if desc.has_get() || desc.has_set() {
|
|
let mut desc_for_sandbox = v8::PropertyDescriptor::new_from_get_set(
|
|
if desc.has_get() {
|
|
desc.get()
|
|
} else {
|
|
v8::undefined(scope).into()
|
|
},
|
|
if desc.has_set() {
|
|
desc.set()
|
|
} else {
|
|
v8::undefined(scope).into()
|
|
},
|
|
);
|
|
|
|
define_prop_on_sandbox(scope, &mut desc_for_sandbox);
|
|
} else {
|
|
let value = if desc.has_value() {
|
|
desc.value()
|
|
} else {
|
|
v8::undefined(scope).into()
|
|
};
|
|
|
|
if desc.has_writable() {
|
|
let mut desc_for_sandbox =
|
|
v8::PropertyDescriptor::new_from_value_writable(value, desc.writable());
|
|
define_prop_on_sandbox(scope, &mut desc_for_sandbox);
|
|
} else {
|
|
let mut desc_for_sandbox = v8::PropertyDescriptor::new_from_value(value);
|
|
define_prop_on_sandbox(scope, &mut desc_for_sandbox);
|
|
}
|
|
}
|
|
|
|
v8::Intercepted::Yes
|
|
}
|
|
|
|
fn property_descriptor<'s>(
|
|
scope: &mut v8::HandleScope<'s>,
|
|
key: v8::Local<'s, v8::Name>,
|
|
args: v8::PropertyCallbackArguments<'s>,
|
|
mut rv: v8::ReturnValue,
|
|
) -> v8::Intercepted {
|
|
let Some(ctx) = ContextifyContext::get(scope, args.this()) else {
|
|
return v8::Intercepted::No;
|
|
};
|
|
|
|
let context = ctx.context(scope);
|
|
let sandbox = ctx.sandbox(scope);
|
|
let scope = &mut v8::ContextScope::new(scope, context);
|
|
|
|
if sandbox.has_own_property(scope, key).unwrap_or(false) {
|
|
if let Some(desc) = sandbox.get_own_property_descriptor(scope, key) {
|
|
rv.set(desc);
|
|
return v8::Intercepted::Yes;
|
|
}
|
|
}
|
|
|
|
v8::Intercepted::No
|
|
}
|
|
|
|
fn uint32_to_name<'s>(
|
|
scope: &mut v8::HandleScope<'s>,
|
|
index: u32,
|
|
) -> v8::Local<'s, v8::Name> {
|
|
let int = v8::Integer::new_from_unsigned(scope, index);
|
|
let u32 = v8::Local::<v8::Uint32>::try_from(int).unwrap();
|
|
u32.to_string(scope).unwrap().into()
|
|
}
|
|
|
|
fn indexed_property_getter<'s>(
|
|
scope: &mut v8::HandleScope<'s>,
|
|
index: u32,
|
|
args: v8::PropertyCallbackArguments<'s>,
|
|
rv: v8::ReturnValue,
|
|
) -> v8::Intercepted {
|
|
let key = uint32_to_name(scope, index);
|
|
property_getter(scope, key, args, rv)
|
|
}
|
|
|
|
fn indexed_property_setter<'s>(
|
|
scope: &mut v8::HandleScope<'s>,
|
|
index: u32,
|
|
value: v8::Local<'s, v8::Value>,
|
|
args: v8::PropertyCallbackArguments<'s>,
|
|
rv: v8::ReturnValue,
|
|
) -> v8::Intercepted {
|
|
let key = uint32_to_name(scope, index);
|
|
property_setter(scope, key, value, args, rv)
|
|
}
|
|
|
|
fn indexed_property_deleter<'s>(
|
|
scope: &mut v8::HandleScope<'s>,
|
|
index: u32,
|
|
args: v8::PropertyCallbackArguments<'s>,
|
|
mut rv: v8::ReturnValue,
|
|
) -> v8::Intercepted {
|
|
let Some(ctx) = ContextifyContext::get(scope, args.this()) else {
|
|
return v8::Intercepted::No;
|
|
};
|
|
|
|
let context = ctx.context(scope);
|
|
let sandbox = ctx.sandbox(scope);
|
|
let context_scope = &mut v8::ContextScope::new(scope, context);
|
|
if !sandbox.delete_index(context_scope, index).unwrap_or(false) {
|
|
return v8::Intercepted::No;
|
|
}
|
|
|
|
// Delete failed on the sandbox, intercept and do not delete on
|
|
// the global object.
|
|
rv.set_bool(false);
|
|
v8::Intercepted::No
|
|
}
|
|
|
|
fn indexed_property_definer<'s>(
|
|
scope: &mut v8::HandleScope<'s>,
|
|
index: u32,
|
|
descriptor: &v8::PropertyDescriptor,
|
|
args: v8::PropertyCallbackArguments<'s>,
|
|
rv: v8::ReturnValue,
|
|
) -> v8::Intercepted {
|
|
let key = uint32_to_name(scope, index);
|
|
property_definer(scope, key, descriptor, args, rv)
|
|
}
|
|
|
|
fn indexed_property_descriptor<'s>(
|
|
scope: &mut v8::HandleScope<'s>,
|
|
index: u32,
|
|
args: v8::PropertyCallbackArguments<'s>,
|
|
rv: v8::ReturnValue,
|
|
) -> v8::Intercepted {
|
|
let key = uint32_to_name(scope, index);
|
|
property_descriptor(scope, key, args, rv)
|
|
}
|