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denoland-deno/cli/module_loader.rs

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// Copyright 2018-2021 the Deno authors. All rights reserved. MIT license.
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use crate::module_graph::TypeLib;
use crate::proc_state::ProcState;
use deno_core::error::AnyError;
use deno_core::futures::future::FutureExt;
use deno_core::futures::Future;
use deno_core::ModuleLoadId;
use deno_core::ModuleLoader;
use deno_core::ModuleSpecifier;
use deno_core::OpState;
use deno_runtime::permissions::Permissions;
use import_map::ImportMap;
use std::cell::RefCell;
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use std::pin::Pin;
use std::rc::Rc;
use std::str;
pub struct CliModuleLoader {
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/// When flags contains a `.import_map_path` option, the content of the
/// import map file will be resolved and set.
pub import_map: Option<ImportMap>,
pub lib: TypeLib,
/// The initial set of permissions used to resolve the static imports in the
/// worker. They are decoupled from the worker (dynamic) permissions since
/// read access errors must be raised based on the parent thread permissions.
pub root_permissions: Permissions,
pub ps: ProcState,
}
impl CliModuleLoader {
pub fn new(ps: ProcState) -> Rc<Self> {
let lib = if ps.flags.unstable {
TypeLib::UnstableDenoWindow
} else {
TypeLib::DenoWindow
};
let import_map = ps.maybe_import_map.clone();
Rc::new(CliModuleLoader {
import_map,
lib,
root_permissions: Permissions::allow_all(),
ps,
})
}
pub fn new_for_worker(ps: ProcState, permissions: Permissions) -> Rc<Self> {
let lib = if ps.flags.unstable {
TypeLib::UnstableDenoWorker
} else {
TypeLib::DenoWorker
};
Rc::new(CliModuleLoader {
import_map: None,
lib,
root_permissions: permissions,
ps,
})
}
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}
impl ModuleLoader for CliModuleLoader {
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fn resolve(
&self,
_op_state: Rc<RefCell<OpState>>,
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specifier: &str,
referrer: &str,
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is_main: bool,
) -> Result<ModuleSpecifier, AnyError> {
// FIXME(bartlomieju): hacky way to provide compatibility with repl
let referrer = if referrer.is_empty() && self.ps.flags.repl {
deno_core::DUMMY_SPECIFIER
} else {
referrer
};
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if !is_main {
if let Some(import_map) = &self.import_map {
return import_map
.resolve(specifier, referrer)
.map_err(AnyError::from);
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}
}
let module_specifier = deno_core::resolve_import(specifier, referrer)?;
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Ok(module_specifier)
}
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fn load(
&self,
_op_state: Rc<RefCell<OpState>>,
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module_specifier: &ModuleSpecifier,
maybe_referrer: Option<ModuleSpecifier>,
_is_dynamic: bool,
) -> Pin<Box<deno_core::ModuleSourceFuture>> {
let module_specifier = module_specifier.clone();
let ps = self.ps.clone();
// NOTE: this block is async only because of `deno_core`
// interface requirements; module was already loaded
// when constructing module graph during call to `prepare_load`.
async move { ps.load(module_specifier, maybe_referrer) }.boxed_local()
}
fn prepare_load(
&self,
op_state: Rc<RefCell<OpState>>,
_load_id: ModuleLoadId,
specifier: &ModuleSpecifier,
_maybe_referrer: Option<String>,
is_dynamic: bool,
) -> Pin<Box<dyn Future<Output = Result<(), AnyError>>>> {
let specifier = specifier.clone();
let ps = self.ps.clone();
let maybe_import_map = self.import_map.clone();
let state = op_state.borrow();
let root_permissions = self.root_permissions.clone();
let dynamic_permissions = state.borrow::<Permissions>().clone();
let lib = self.lib.clone();
drop(state);
// TODO(bartlomieju): `prepare_module_load` should take `load_id` param
async move {
ps.prepare_module_load(
specifier,
lib,
root_permissions,
dynamic_permissions,
is_dynamic,
maybe_import_map,
)
.await
}
.boxed_local()
}
}