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https://github.com/denoland/deno.git
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b9a3790932
Co-authored-by: Levente Kurusa <lkurusa@kernelstuff.org> Co-authored-by: Bartek Iwańczuk <biwanczuk@gmail.com>
233 lines
6 KiB
Rust
233 lines
6 KiB
Rust
// Copyright 2018-2023 the Deno authors. All rights reserved. MIT license.
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use crate::error::AnyError;
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use crate::gotham_state::GothamState;
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use crate::resources::ResourceTable;
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use crate::runtime::GetErrorClassFn;
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use crate::runtime::JsRuntimeState;
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use crate::OpDecl;
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use crate::OpsTracker;
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use anyhow::Error;
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use futures::future::maybe_done;
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use futures::future::FusedFuture;
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use futures::future::MaybeDone;
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use futures::ready;
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use futures::task::noop_waker;
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use futures::Future;
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use serde::Serialize;
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use std::cell::RefCell;
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use std::ops::Deref;
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use std::ops::DerefMut;
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use std::pin::Pin;
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use std::ptr::NonNull;
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use std::rc::Rc;
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use std::rc::Weak;
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use std::task::Context;
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use std::task::Poll;
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use v8::fast_api::CFunctionInfo;
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use v8::fast_api::CTypeInfo;
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/// Wrapper around a Future, which causes that Future to be polled immediately.
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///
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/// Background: ops are stored in a `FuturesUnordered` structure which polls
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/// them, but without the `OpCall` wrapper this doesn't happen until the next
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/// turn of the event loop, which is too late for certain ops.
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pub struct OpCall<T>(MaybeDone<Pin<Box<dyn Future<Output = T>>>>);
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pub enum EagerPollResult<T> {
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Ready(T),
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Pending(OpCall<T>),
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}
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impl<T> OpCall<T> {
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/// Wraps a future, and polls the inner future immediately.
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/// This should be the default choice for ops.
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pub fn eager(fut: impl Future<Output = T> + 'static) -> EagerPollResult<T> {
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let boxed = Box::pin(fut) as Pin<Box<dyn Future<Output = T>>>;
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let mut inner = maybe_done(boxed);
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let waker = noop_waker();
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let mut cx = Context::from_waker(&waker);
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let mut pinned = Pin::new(&mut inner);
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let poll = pinned.as_mut().poll(&mut cx);
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match poll {
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Poll::Ready(_) => EagerPollResult::Ready(pinned.take_output().unwrap()),
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_ => EagerPollResult::Pending(Self(inner)),
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}
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}
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/// Wraps a future; the inner future is polled the usual way (lazily).
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pub fn lazy(fut: impl Future<Output = T> + 'static) -> Self {
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let boxed = Box::pin(fut) as Pin<Box<dyn Future<Output = T>>>;
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let inner = maybe_done(boxed);
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Self(inner)
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}
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/// Create a future by specifying its output. This is basically the same as
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/// `async { value }` or `futures::future::ready(value)`.
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pub fn ready(value: T) -> Self {
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Self(MaybeDone::Done(value))
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}
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}
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impl<T> Future for OpCall<T> {
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type Output = T;
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fn poll(
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self: std::pin::Pin<&mut Self>,
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cx: &mut std::task::Context<'_>,
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) -> std::task::Poll<Self::Output> {
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// TODO(piscisaureus): safety comment
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#[allow(clippy::undocumented_unsafe_blocks)]
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let inner = unsafe { &mut self.get_unchecked_mut().0 };
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let mut pinned = Pin::new(inner);
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ready!(pinned.as_mut().poll(cx));
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Poll::Ready(pinned.as_mut().take_output().unwrap())
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}
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}
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impl<F> FusedFuture for OpCall<F>
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where
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F: Future,
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{
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fn is_terminated(&self) -> bool {
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self.0.is_terminated()
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}
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}
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pub type RealmIdx = usize;
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pub type PromiseId = i32;
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pub type OpAsyncFuture = OpCall<(PromiseId, OpId, OpResult)>;
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pub type OpFn =
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fn(&mut v8::HandleScope, v8::FunctionCallbackArguments, v8::ReturnValue);
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pub type OpId = usize;
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pub enum Op {
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Sync(OpResult),
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Async(OpAsyncFuture),
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NotFound,
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}
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pub enum OpResult {
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Ok(serde_v8::SerializablePkg),
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Err(OpError),
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}
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impl OpResult {
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pub fn to_v8<'a>(
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&mut self,
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scope: &mut v8::HandleScope<'a>,
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) -> Result<v8::Local<'a, v8::Value>, serde_v8::Error> {
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match self {
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Self::Ok(x) => x.to_v8(scope),
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Self::Err(err) => serde_v8::to_v8(scope, err),
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}
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}
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}
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#[derive(Debug, Serialize)]
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#[serde(rename_all = "camelCase")]
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pub struct OpError {
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#[serde(rename = "$err_class_name")]
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class_name: &'static str,
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message: String,
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code: Option<&'static str>,
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}
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impl OpError {
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pub fn new(get_class: GetErrorClassFn, err: Error) -> Self {
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Self {
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class_name: (get_class)(&err),
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message: format!("{err:#}"),
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code: crate::error_codes::get_error_code(&err),
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}
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}
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}
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pub fn to_op_result<R: Serialize + 'static>(
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get_class: GetErrorClassFn,
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result: Result<R, Error>,
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) -> OpResult {
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match result {
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Ok(v) => OpResult::Ok(v.into()),
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Err(err) => OpResult::Err(OpError::new(get_class, err)),
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}
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}
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// TODO(@AaronO): optimize OpCtx(s) mem usage ?
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pub struct OpCtx {
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pub id: OpId,
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pub state: Rc<RefCell<OpState>>,
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pub decl: Rc<OpDecl>,
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pub fast_fn_c_info: Option<NonNull<v8::fast_api::CFunctionInfo>>,
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pub runtime_state: Weak<RefCell<JsRuntimeState>>,
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// Index of the current realm into `JsRuntimeState::known_realms`.
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pub realm_idx: RealmIdx,
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}
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impl OpCtx {
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pub fn new(
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id: OpId,
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realm_idx: RealmIdx,
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decl: Rc<OpDecl>,
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state: Rc<RefCell<OpState>>,
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runtime_state: Weak<RefCell<JsRuntimeState>>,
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) -> Self {
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let mut fast_fn_c_info = None;
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if let Some(fast_fn) = &decl.fast_fn {
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let args = CTypeInfo::new_from_slice(fast_fn.args);
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let ret = CTypeInfo::new(fast_fn.return_type);
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// SAFETY: all arguments are coming from the trait and they have
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// static lifetime
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let c_fn = unsafe {
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CFunctionInfo::new(args.as_ptr(), fast_fn.args.len(), ret.as_ptr())
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};
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fast_fn_c_info = Some(c_fn);
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}
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OpCtx {
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id,
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state,
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runtime_state,
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decl,
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realm_idx,
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fast_fn_c_info,
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}
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}
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}
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/// Maintains the resources and ops inside a JS runtime.
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pub struct OpState {
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pub resource_table: ResourceTable,
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pub get_error_class_fn: GetErrorClassFn,
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pub tracker: OpsTracker,
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pub last_fast_op_error: Option<AnyError>,
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gotham_state: GothamState,
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}
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impl OpState {
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pub fn new(ops_count: usize) -> OpState {
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OpState {
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resource_table: Default::default(),
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get_error_class_fn: &|_| "Error",
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gotham_state: Default::default(),
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last_fast_op_error: None,
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tracker: OpsTracker::new(ops_count),
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}
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}
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}
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impl Deref for OpState {
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type Target = GothamState;
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fn deref(&self) -> &Self::Target {
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&self.gotham_state
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}
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}
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impl DerefMut for OpState {
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fn deref_mut(&mut self) -> &mut Self::Target {
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&mut self.gotham_state
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}
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}
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