mirror of
https://github.com/denoland/deno.git
synced 2024-11-01 09:24:20 -04:00
154 lines
4.2 KiB
Rust
154 lines
4.2 KiB
Rust
// Copyright 2018-2019 the Deno authors. All rights reserved. MIT license.
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use super::dispatch_json::{Deserialize, JsonOp, Value};
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use crate::futures::future::try_join_all;
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use crate::futures::future::FutureExt;
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use crate::futures::future::TryFutureExt;
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use crate::msg;
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use crate::ops::json_op;
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use crate::state::ThreadSafeState;
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use deno::Loader;
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use deno::*;
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pub fn init(i: &mut Isolate, s: &ThreadSafeState) {
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i.register_op("cache", s.core_op(json_op(s.stateful_op(op_cache))));
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i.register_op(
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"fetch_source_files",
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s.core_op(json_op(s.stateful_op(op_fetch_source_files))),
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);
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i.register_op(
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"fetch_asset",
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s.core_op(json_op(s.stateful_op(op_fetch_asset))),
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);
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}
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#[derive(Deserialize)]
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#[serde(rename_all = "camelCase")]
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struct CacheArgs {
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module_id: String,
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contents: String,
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extension: String,
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}
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fn op_cache(
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state: &ThreadSafeState,
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args: Value,
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_zero_copy: Option<PinnedBuf>,
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) -> Result<JsonOp, ErrBox> {
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let args: CacheArgs = serde_json::from_value(args)?;
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let module_specifier = ModuleSpecifier::resolve_url(&args.module_id)
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.expect("Should be valid module specifier");
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state.global_state.ts_compiler.cache_compiler_output(
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&module_specifier,
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&args.extension,
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&args.contents,
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)?;
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Ok(JsonOp::Sync(json!({})))
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}
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#[derive(Deserialize)]
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struct FetchSourceFilesArgs {
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specifiers: Vec<String>,
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referrer: Option<String>,
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}
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fn op_fetch_source_files(
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state: &ThreadSafeState,
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args: Value,
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_data: Option<PinnedBuf>,
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) -> Result<JsonOp, ErrBox> {
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let args: FetchSourceFilesArgs = serde_json::from_value(args)?;
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// TODO(ry) Maybe a security hole. Only the compiler worker should have access
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// to this. Need a test to demonstrate the hole.
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let is_dyn_import = false;
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let (referrer, ref_specifier) = if let Some(referrer) = args.referrer {
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let specifier = ModuleSpecifier::resolve_url(&referrer)
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.expect("Referrer is not a valid specifier");
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(referrer, Some(specifier))
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} else {
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// main script import
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(".".to_string(), None)
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};
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let mut futures = vec![];
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for specifier in &args.specifiers {
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let resolved_specifier =
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state.resolve(specifier, &referrer, false, is_dyn_import)?;
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let fut = state
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.global_state
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.file_fetcher
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.fetch_source_file_async(&resolved_specifier, ref_specifier.clone());
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futures.push(fut);
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}
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let global_state = state.global_state.clone();
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let future = try_join_all(futures)
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.map_err(ErrBox::from)
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.and_then(move |files| {
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// We want to get an array of futures that resolves to
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let v: Vec<_> = files
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.into_iter()
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.map(|file| {
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// Special handling of Wasm files:
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// compile them into JS first!
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// This allows TS to do correct export types.
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if file.media_type == msg::MediaType::Wasm {
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return futures::future::Either::Left(
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global_state
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.wasm_compiler
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.compile_async(global_state.clone(), &file)
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.and_then(|compiled_mod| {
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futures::future::ok((file, Some(compiled_mod.code)))
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}),
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);
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}
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futures::future::Either::Right(futures::future::ok((file, None)))
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})
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.collect();
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try_join_all(v)
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})
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.and_then(move |files_with_code| {
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let res = files_with_code
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.into_iter()
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.map(|(file, maybe_code)| {
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json!({
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"url": file.url.to_string(),
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"filename": file.filename.to_str().unwrap(),
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"mediaType": file.media_type as i32,
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"sourceCode": if let Some(code) = maybe_code {
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code
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} else {
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String::from_utf8(file.source_code).unwrap()
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},
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})
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})
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.collect();
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futures::future::ok(res)
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});
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Ok(JsonOp::Async(future.boxed()))
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}
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#[derive(Deserialize)]
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struct FetchAssetArgs {
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name: String,
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}
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fn op_fetch_asset(
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_state: &ThreadSafeState,
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args: Value,
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_zero_copy: Option<PinnedBuf>,
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) -> Result<JsonOp, ErrBox> {
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let args: FetchAssetArgs = serde_json::from_value(args)?;
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if let Some(source_code) = crate::js::get_asset(&args.name) {
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Ok(JsonOp::Sync(json!(source_code)))
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} else {
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panic!("op_fetch_asset bad asset {}", args.name)
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}
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}
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