mirror of
https://github.com/denoland/deno.git
synced 2024-11-29 16:30:56 -05:00
90c2bcdcf8
This should return an error to the caller to make it easier to track what went wrong. Should help with debugging https://github.com/denoland/deno/issues/19389
677 lines
20 KiB
Rust
677 lines
20 KiB
Rust
// Copyright 2018-2023 the Deno authors. All rights reserved. MIT license.
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#![allow(non_camel_case_types)]
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#![allow(non_upper_case_globals)]
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#![allow(clippy::undocumented_unsafe_blocks)]
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#![deny(clippy::missing_safety_doc)]
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use core::ptr::NonNull;
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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::futures::channel::mpsc;
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use deno_core::futures::StreamExt;
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use deno_core::op;
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use deno_core::parking_lot::Mutex;
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use deno_core::serde_v8;
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use deno_core::OpState;
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use std::cell::RefCell;
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use std::ffi::CString;
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use std::path::Path;
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use std::path::PathBuf;
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use std::rc::Rc;
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use std::sync::atomic::AtomicUsize;
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use std::sync::Arc;
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use std::task::Poll;
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use std::thread_local;
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#[cfg(unix)]
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use libloading::os::unix::*;
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#[cfg(windows)]
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use libloading::os::windows::*;
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// Expose common stuff for ease of use.
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// `use deno_napi::*`
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pub use deno_core::v8;
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pub use std::ffi::CStr;
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pub use std::mem::transmute;
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pub use std::os::raw::c_char;
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pub use std::os::raw::c_void;
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pub use std::ptr;
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pub use value::napi_value;
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pub mod function;
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mod value;
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pub type napi_status = i32;
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pub type napi_env = *mut c_void;
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pub type napi_callback_info = *mut c_void;
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pub type napi_deferred = *mut c_void;
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pub type napi_ref = *mut c_void;
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pub type napi_threadsafe_function = *mut c_void;
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pub type napi_handle_scope = *mut c_void;
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pub type napi_callback_scope = *mut c_void;
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pub type napi_escapable_handle_scope = *mut c_void;
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pub type napi_async_cleanup_hook_handle = *mut c_void;
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pub type napi_async_work = *mut c_void;
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pub const napi_ok: napi_status = 0;
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pub const napi_invalid_arg: napi_status = 1;
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pub const napi_object_expected: napi_status = 2;
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pub const napi_string_expected: napi_status = 3;
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pub const napi_name_expected: napi_status = 4;
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pub const napi_function_expected: napi_status = 5;
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pub const napi_number_expected: napi_status = 6;
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pub const napi_boolean_expected: napi_status = 7;
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pub const napi_array_expected: napi_status = 8;
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pub const napi_generic_failure: napi_status = 9;
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pub const napi_pending_exception: napi_status = 10;
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pub const napi_cancelled: napi_status = 11;
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pub const napi_escape_called_twice: napi_status = 12;
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pub const napi_handle_scope_mismatch: napi_status = 13;
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pub const napi_callback_scope_mismatch: napi_status = 14;
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pub const napi_queue_full: napi_status = 15;
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pub const napi_closing: napi_status = 16;
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pub const napi_bigint_expected: napi_status = 17;
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pub const napi_date_expected: napi_status = 18;
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pub const napi_arraybuffer_expected: napi_status = 19;
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pub const napi_detachable_arraybuffer_expected: napi_status = 20;
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pub const napi_would_deadlock: napi_status = 21;
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pub const NAPI_AUTO_LENGTH: usize = usize::MAX;
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thread_local! {
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pub static MODULE_TO_REGISTER: RefCell<Option<*const NapiModule>> = RefCell::new(None);
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}
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type napi_addon_register_func =
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extern "C" fn(env: napi_env, exports: napi_value) -> napi_value;
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#[repr(C)]
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#[derive(Clone)]
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pub struct NapiModule {
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pub nm_version: i32,
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pub nm_flags: u32,
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nm_filename: *const c_char,
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pub nm_register_func: napi_addon_register_func,
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nm_modname: *const c_char,
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nm_priv: *mut c_void,
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reserved: [*mut c_void; 4],
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}
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pub type napi_valuetype = i32;
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pub const napi_undefined: napi_valuetype = 0;
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pub const napi_null: napi_valuetype = 1;
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pub const napi_boolean: napi_valuetype = 2;
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pub const napi_number: napi_valuetype = 3;
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pub const napi_string: napi_valuetype = 4;
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pub const napi_symbol: napi_valuetype = 5;
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pub const napi_object: napi_valuetype = 6;
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pub const napi_function: napi_valuetype = 7;
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pub const napi_external: napi_valuetype = 8;
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pub const napi_bigint: napi_valuetype = 9;
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pub type napi_threadsafe_function_release_mode = i32;
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pub const napi_tsfn_release: napi_threadsafe_function_release_mode = 0;
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pub const napi_tsfn_abortext: napi_threadsafe_function_release_mode = 1;
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pub type napi_threadsafe_function_call_mode = i32;
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pub const napi_tsfn_nonblocking: napi_threadsafe_function_call_mode = 0;
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pub const napi_tsfn_blocking: napi_threadsafe_function_call_mode = 1;
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pub type napi_key_collection_mode = i32;
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pub const napi_key_include_prototypes: napi_key_collection_mode = 0;
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pub const napi_key_own_only: napi_key_collection_mode = 1;
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pub type napi_key_filter = i32;
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pub const napi_key_all_properties: napi_key_filter = 0;
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pub const napi_key_writable: napi_key_filter = 1;
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pub const napi_key_enumerable: napi_key_filter = 1 << 1;
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pub const napi_key_configurable: napi_key_filter = 1 << 2;
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pub const napi_key_skip_strings: napi_key_filter = 1 << 3;
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pub const napi_key_skip_symbols: napi_key_filter = 1 << 4;
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pub type napi_key_conversion = i32;
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pub const napi_key_keep_numbers: napi_key_conversion = 0;
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pub const napi_key_numbers_to_strings: napi_key_conversion = 1;
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pub type napi_typedarray_type = i32;
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pub const napi_int8_array: napi_typedarray_type = 0;
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pub const napi_uint8_array: napi_typedarray_type = 1;
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pub const napi_uint8_clamped_array: napi_typedarray_type = 2;
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pub const napi_int16_array: napi_typedarray_type = 3;
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pub const napi_uint16_array: napi_typedarray_type = 4;
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pub const napi_int32_array: napi_typedarray_type = 5;
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pub const napi_uint32_array: napi_typedarray_type = 6;
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pub const napi_float32_array: napi_typedarray_type = 7;
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pub const napi_float64_array: napi_typedarray_type = 8;
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pub const napi_bigint64_array: napi_typedarray_type = 9;
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pub const napi_biguint64_array: napi_typedarray_type = 10;
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pub struct napi_type_tag {
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pub lower: u64,
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pub upper: u64,
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}
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pub type napi_callback = Option<
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unsafe extern "C" fn(
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env: napi_env,
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info: napi_callback_info,
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) -> napi_value<'static>,
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>;
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pub type napi_finalize = unsafe extern "C" fn(
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env: napi_env,
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data: *mut c_void,
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finalize_hint: *mut c_void,
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);
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pub type napi_async_execute_callback =
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unsafe extern "C" fn(env: napi_env, data: *mut c_void);
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pub type napi_async_complete_callback =
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unsafe extern "C" fn(env: napi_env, status: napi_status, data: *mut c_void);
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pub type napi_threadsafe_function_call_js = unsafe extern "C" fn(
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env: napi_env,
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js_callback: napi_value,
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context: *mut c_void,
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data: *mut c_void,
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);
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pub type napi_async_cleanup_hook =
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unsafe extern "C" fn(env: napi_env, data: *mut c_void);
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pub type napi_property_attributes = i32;
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pub const napi_default: napi_property_attributes = 0;
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pub const napi_writable: napi_property_attributes = 1 << 0;
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pub const napi_enumerable: napi_property_attributes = 1 << 1;
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pub const napi_configurable: napi_property_attributes = 1 << 2;
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pub const napi_static: napi_property_attributes = 1 << 10;
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pub const napi_default_method: napi_property_attributes =
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napi_writable | napi_configurable;
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pub const napi_default_jsproperty: napi_property_attributes =
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napi_enumerable | napi_configurable | napi_writable;
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#[repr(C)]
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#[derive(Copy, Clone, Debug)]
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pub struct napi_property_descriptor<'a> {
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pub utf8name: *const c_char,
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pub name: napi_value<'a>,
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pub method: napi_callback,
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pub getter: napi_callback,
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pub setter: napi_callback,
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pub value: napi_value<'a>,
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pub attributes: napi_property_attributes,
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pub data: *mut c_void,
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}
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#[repr(C)]
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#[derive(Debug)]
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pub struct napi_extended_error_info {
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pub error_message: *const c_char,
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pub engine_reserved: *mut c_void,
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pub engine_error_code: i32,
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pub error_code: napi_status,
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}
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#[repr(C)]
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#[derive(Debug)]
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pub struct napi_node_version {
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pub major: u32,
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pub minor: u32,
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pub patch: u32,
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pub release: *const c_char,
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}
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pub type PendingNapiAsyncWork = Box<dyn FnOnce()>;
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pub type ThreadsafeFunctionRefCounters = Vec<(usize, Arc<AtomicUsize>)>;
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pub struct NapiState {
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// Async tasks.
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pub pending_async_work: Vec<PendingNapiAsyncWork>,
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pub async_work_sender: mpsc::UnboundedSender<PendingNapiAsyncWork>,
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pub async_work_receiver: mpsc::UnboundedReceiver<PendingNapiAsyncWork>,
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// Thread safe functions.
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pub active_threadsafe_functions: usize,
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pub threadsafe_function_receiver:
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mpsc::UnboundedReceiver<ThreadSafeFunctionStatus>,
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pub threadsafe_function_sender:
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mpsc::UnboundedSender<ThreadSafeFunctionStatus>,
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pub env_cleanup_hooks:
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Rc<RefCell<Vec<(extern "C" fn(*const c_void), *const c_void)>>>,
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pub tsfn_ref_counters: Arc<Mutex<ThreadsafeFunctionRefCounters>>,
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}
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impl Drop for NapiState {
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fn drop(&mut self) {
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let hooks = {
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let h = self.env_cleanup_hooks.borrow_mut();
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h.clone()
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};
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// Hooks are supposed to be run in LIFO order
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let hooks_to_run = hooks.into_iter().rev();
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for hook in hooks_to_run {
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// This hook might have been removed by a previous hook, in such case skip it here.
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if !self
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.env_cleanup_hooks
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.borrow()
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.iter()
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.any(|pair| pair.0 == hook.0 && pair.1 == hook.1)
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{
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continue;
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}
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(hook.0)(hook.1);
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{
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self
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.env_cleanup_hooks
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.borrow_mut()
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.retain(|pair| !(pair.0 == hook.0 && pair.1 == hook.1));
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}
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}
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}
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}
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#[repr(C)]
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#[derive(Debug)]
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/// Env that is shared between all contexts in same native module.
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pub struct EnvShared {
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pub instance_data: *mut c_void,
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pub data_finalize: Option<napi_finalize>,
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pub data_finalize_hint: *mut c_void,
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pub napi_wrap: v8::Global<v8::Private>,
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pub finalize: Option<napi_finalize>,
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pub finalize_hint: *mut c_void,
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pub filename: *const c_char,
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}
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impl EnvShared {
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pub fn new(napi_wrap: v8::Global<v8::Private>) -> Self {
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Self {
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instance_data: std::ptr::null_mut(),
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data_finalize: None,
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data_finalize_hint: std::ptr::null_mut(),
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napi_wrap,
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finalize: None,
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finalize_hint: std::ptr::null_mut(),
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filename: std::ptr::null(),
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}
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}
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}
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pub enum ThreadSafeFunctionStatus {
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Alive,
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Dead,
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}
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#[repr(C)]
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pub struct Env {
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context: NonNull<v8::Context>,
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pub isolate_ptr: *mut v8::OwnedIsolate,
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pub open_handle_scopes: usize,
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pub shared: *mut EnvShared,
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pub async_work_sender: mpsc::UnboundedSender<PendingNapiAsyncWork>,
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pub threadsafe_function_sender:
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mpsc::UnboundedSender<ThreadSafeFunctionStatus>,
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pub cleanup_hooks:
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Rc<RefCell<Vec<(extern "C" fn(*const c_void), *const c_void)>>>,
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pub tsfn_ref_counters: Arc<Mutex<ThreadsafeFunctionRefCounters>>,
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pub last_error: napi_extended_error_info,
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pub global: NonNull<v8::Value>,
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}
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unsafe impl Send for Env {}
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unsafe impl Sync for Env {}
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impl Env {
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pub fn new(
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isolate_ptr: *mut v8::OwnedIsolate,
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context: v8::Global<v8::Context>,
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global: v8::Global<v8::Value>,
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sender: mpsc::UnboundedSender<PendingNapiAsyncWork>,
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threadsafe_function_sender: mpsc::UnboundedSender<ThreadSafeFunctionStatus>,
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cleanup_hooks: Rc<
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RefCell<Vec<(extern "C" fn(*const c_void), *const c_void)>>,
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>,
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tsfn_ref_counters: Arc<Mutex<ThreadsafeFunctionRefCounters>>,
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) -> Self {
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Self {
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isolate_ptr,
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context: context.into_raw(),
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global: global.into_raw(),
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shared: std::ptr::null_mut(),
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open_handle_scopes: 0,
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async_work_sender: sender,
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threadsafe_function_sender,
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cleanup_hooks,
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tsfn_ref_counters,
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last_error: napi_extended_error_info {
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error_message: std::ptr::null(),
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engine_reserved: std::ptr::null_mut(),
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engine_error_code: 0,
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error_code: napi_ok,
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},
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}
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}
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pub fn shared(&self) -> &EnvShared {
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// SAFETY: the lifetime of `EnvShared` always exceeds the lifetime of `Env`.
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unsafe { &*self.shared }
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}
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pub fn shared_mut(&mut self) -> &mut EnvShared {
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// SAFETY: the lifetime of `EnvShared` always exceeds the lifetime of `Env`.
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unsafe { &mut *self.shared }
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}
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pub fn add_async_work(&mut self, async_work: PendingNapiAsyncWork) {
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self.async_work_sender.unbounded_send(async_work).unwrap();
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}
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#[inline]
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pub fn isolate(&mut self) -> &mut v8::OwnedIsolate {
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// SAFETY: Lifetime of `OwnedIsolate` is longer than `Env`.
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unsafe { &mut *self.isolate_ptr }
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}
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#[inline]
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pub fn scope(&self) -> v8::CallbackScope {
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// SAFETY: `v8::Local` is always non-null pointer; the `HandleScope` is
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// already on the stack, but we don't have access to it.
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let context = unsafe {
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transmute::<NonNull<v8::Context>, v8::Local<v8::Context>>(self.context)
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};
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// SAFETY: there must be a `HandleScope` on the stack, this is ensured because
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// we are in a V8 callback or the module has already opened a `HandleScope`
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// using `napi_open_handle_scope`.
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unsafe { v8::CallbackScope::new(context) }
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}
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pub fn add_threadsafe_function_ref_counter(
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&mut self,
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id: usize,
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counter: Arc<AtomicUsize>,
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) {
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let mut counters = self.tsfn_ref_counters.lock();
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assert!(!counters.iter().any(|(i, _)| *i == id));
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counters.push((id, counter));
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}
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pub fn remove_threadsafe_function_ref_counter(&mut self, id: usize) {
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let mut counters = self.tsfn_ref_counters.lock();
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let index = counters.iter().position(|(i, _)| *i == id).unwrap();
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counters.remove(index);
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}
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}
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deno_core::extension!(deno_napi,
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parameters = [P: NapiPermissions],
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ops = [
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op_napi_open<P>
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],
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state = |state| {
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let (async_work_sender, async_work_receiver) =
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mpsc::unbounded::<PendingNapiAsyncWork>();
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let (threadsafe_function_sender, threadsafe_function_receiver) =
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mpsc::unbounded::<ThreadSafeFunctionStatus>();
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state.put(NapiState {
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pending_async_work: Vec::new(),
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async_work_sender,
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async_work_receiver,
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threadsafe_function_sender,
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threadsafe_function_receiver,
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active_threadsafe_functions: 0,
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env_cleanup_hooks: Rc::new(RefCell::new(vec![])),
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tsfn_ref_counters: Arc::new(Mutex::new(vec![])),
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});
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},
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event_loop_middleware = event_loop_middleware,
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);
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fn event_loop_middleware(
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op_state_rc: Rc<RefCell<OpState>>,
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cx: &mut std::task::Context,
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) -> bool {
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// `work` can call back into the runtime. It can also schedule an async task
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// but we don't know that now. We need to make the runtime re-poll to make
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// sure no pending NAPI tasks exist.
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let mut maybe_scheduling = false;
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{
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let mut op_state = op_state_rc.borrow_mut();
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let napi_state = op_state.borrow_mut::<NapiState>();
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while let Poll::Ready(Some(async_work_fut)) =
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napi_state.async_work_receiver.poll_next_unpin(cx)
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|
{
|
|
napi_state.pending_async_work.push(async_work_fut);
|
|
}
|
|
|
|
if napi_state.active_threadsafe_functions > 0 {
|
|
maybe_scheduling = true;
|
|
}
|
|
|
|
let tsfn_ref_counters = napi_state.tsfn_ref_counters.lock().clone();
|
|
for (_id, counter) in tsfn_ref_counters.iter() {
|
|
if counter.load(std::sync::atomic::Ordering::SeqCst) > 0 {
|
|
maybe_scheduling = true;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
loop {
|
|
let maybe_work = {
|
|
let mut op_state = op_state_rc.borrow_mut();
|
|
let napi_state = op_state.borrow_mut::<NapiState>();
|
|
napi_state.pending_async_work.pop()
|
|
};
|
|
|
|
if let Some(work) = maybe_work {
|
|
work();
|
|
maybe_scheduling = true;
|
|
} else {
|
|
break;
|
|
}
|
|
}
|
|
|
|
maybe_scheduling
|
|
}
|
|
|
|
pub trait NapiPermissions {
|
|
fn check(&mut self, path: Option<&Path>)
|
|
-> std::result::Result<(), AnyError>;
|
|
}
|
|
|
|
/// # Safety
|
|
///
|
|
/// This function is unsafe because it dereferences raw pointer Env.
|
|
/// - The caller must ensure that the pointer is valid.
|
|
/// - The caller must ensure that the pointer is not freed.
|
|
pub unsafe fn weak_local(
|
|
env_ptr: *mut Env,
|
|
value: v8::Local<v8::Value>,
|
|
data: *mut c_void,
|
|
finalize_cb: napi_finalize,
|
|
finalize_hint: *mut c_void,
|
|
) -> Option<v8::Local<v8::Value>> {
|
|
use std::cell::Cell;
|
|
|
|
let env = &mut *env_ptr;
|
|
|
|
let weak_ptr = Rc::new(Cell::new(None));
|
|
let scope = &mut env.scope();
|
|
|
|
let weak = v8::Weak::with_finalizer(
|
|
scope,
|
|
value,
|
|
Box::new({
|
|
let weak_ptr = weak_ptr.clone();
|
|
move |isolate| {
|
|
finalize_cb(env_ptr as _, data as _, finalize_hint as _);
|
|
|
|
// Self-deleting weak.
|
|
if let Some(weak_ptr) = weak_ptr.get() {
|
|
let weak: v8::Weak<v8::Value> =
|
|
unsafe { v8::Weak::from_raw(isolate, Some(weak_ptr)) };
|
|
drop(weak);
|
|
}
|
|
}
|
|
}),
|
|
);
|
|
|
|
let value = weak.to_local(scope);
|
|
let raw = weak.into_raw();
|
|
weak_ptr.set(raw);
|
|
|
|
value
|
|
}
|
|
|
|
#[op(v8)]
|
|
fn op_napi_open<NP, 'scope>(
|
|
scope: &mut v8::HandleScope<'scope>,
|
|
op_state: &mut OpState,
|
|
path: String,
|
|
global: serde_v8::Value,
|
|
) -> std::result::Result<serde_v8::Value<'scope>, AnyError>
|
|
where
|
|
NP: NapiPermissions + 'static,
|
|
{
|
|
let permissions = op_state.borrow_mut::<NP>();
|
|
permissions.check(Some(&PathBuf::from(&path)))?;
|
|
let (
|
|
async_work_sender,
|
|
tsfn_sender,
|
|
isolate_ptr,
|
|
cleanup_hooks,
|
|
tsfn_ref_counters,
|
|
) = {
|
|
let napi_state = op_state.borrow::<NapiState>();
|
|
let isolate_ptr = op_state.borrow::<*mut v8::OwnedIsolate>();
|
|
(
|
|
napi_state.async_work_sender.clone(),
|
|
napi_state.threadsafe_function_sender.clone(),
|
|
*isolate_ptr,
|
|
napi_state.env_cleanup_hooks.clone(),
|
|
napi_state.tsfn_ref_counters.clone(),
|
|
)
|
|
};
|
|
|
|
let napi_wrap_name = v8::String::new(scope, "napi_wrap").unwrap();
|
|
let napi_wrap = v8::Private::new(scope, Some(napi_wrap_name));
|
|
let napi_wrap = v8::Global::new(scope, napi_wrap);
|
|
|
|
// The `module.exports` object.
|
|
let exports = v8::Object::new(scope);
|
|
|
|
let mut env_shared = EnvShared::new(napi_wrap);
|
|
let cstr = CString::new(&*path).unwrap();
|
|
env_shared.filename = cstr.as_ptr();
|
|
std::mem::forget(cstr);
|
|
|
|
let ctx = scope.get_current_context();
|
|
let mut env = Env::new(
|
|
isolate_ptr,
|
|
v8::Global::new(scope, ctx),
|
|
v8::Global::new(scope, global.v8_value),
|
|
async_work_sender,
|
|
tsfn_sender,
|
|
cleanup_hooks,
|
|
tsfn_ref_counters,
|
|
);
|
|
env.shared = Box::into_raw(Box::new(env_shared));
|
|
let env_ptr = Box::into_raw(Box::new(env)) as _;
|
|
|
|
#[cfg(unix)]
|
|
let flags = RTLD_LAZY;
|
|
#[cfg(not(unix))]
|
|
let flags = 0x00000008;
|
|
|
|
// SAFETY: opening a DLL calls dlopen
|
|
#[cfg(unix)]
|
|
let library = match unsafe { Library::open(Some(&path), flags) } {
|
|
Ok(lib) => lib,
|
|
Err(e) => return Err(type_error(e.to_string())),
|
|
};
|
|
|
|
// SAFETY: opening a DLL calls dlopen
|
|
#[cfg(not(unix))]
|
|
let library = match unsafe { Library::load_with_flags(&path, flags) } {
|
|
Ok(lib) => lib,
|
|
Err(e) => return Err(type_error(e.to_string())),
|
|
};
|
|
|
|
let maybe_module = MODULE_TO_REGISTER.with(|cell| {
|
|
let mut slot = cell.borrow_mut();
|
|
slot.take()
|
|
});
|
|
|
|
if let Some(module_to_register) = maybe_module {
|
|
// SAFETY: napi_register_module guarantees that `module_to_register` is valid.
|
|
let nm = unsafe { &*module_to_register };
|
|
assert_eq!(nm.nm_version, 1);
|
|
// SAFETY: we are going blind, calling the register function on the other side.
|
|
let maybe_exports = unsafe {
|
|
(nm.nm_register_func)(
|
|
env_ptr,
|
|
std::mem::transmute::<v8::Local<v8::Value>, napi_value>(exports.into()),
|
|
)
|
|
};
|
|
|
|
let exports = if maybe_exports.is_some() {
|
|
// SAFETY: v8::Local is a pointer to a value and napi_value is also a pointer
|
|
// to a value, they have the same layout
|
|
unsafe {
|
|
std::mem::transmute::<napi_value, v8::Local<v8::Value>>(maybe_exports)
|
|
}
|
|
} else {
|
|
exports.into()
|
|
};
|
|
|
|
// NAPI addons can't be unloaded, so we're going to "forget" the library
|
|
// object so it lives till the program exit.
|
|
std::mem::forget(library);
|
|
return Ok(serde_v8::Value { v8_value: exports });
|
|
}
|
|
|
|
// Initializer callback.
|
|
// SAFETY: we are going blind, calling the register function on the other side.
|
|
|
|
let maybe_exports = unsafe {
|
|
let Ok(init) = library
|
|
.get::<unsafe extern "C" fn(
|
|
env: napi_env,
|
|
exports: napi_value,
|
|
) -> napi_value>(b"napi_register_module_v1") else {
|
|
return Err(type_error(format!("Unable to find napi_register_module_v1 symbol in {}", path)));
|
|
};
|
|
init(
|
|
env_ptr,
|
|
std::mem::transmute::<v8::Local<v8::Value>, napi_value>(exports.into()),
|
|
)
|
|
};
|
|
|
|
let exports = if maybe_exports.is_some() {
|
|
// SAFETY: v8::Local is a pointer to a value and napi_value is also a pointer
|
|
// to a value, they have the same layout
|
|
unsafe {
|
|
std::mem::transmute::<napi_value, v8::Local<v8::Value>>(maybe_exports)
|
|
}
|
|
} else {
|
|
exports.into()
|
|
};
|
|
|
|
// NAPI addons can't be unloaded, so we're going to "forget" the library
|
|
// object so it lives till the program exit.
|
|
std::mem::forget(library);
|
|
Ok(serde_v8::Value { v8_value: exports })
|
|
}
|