mirror of
https://github.com/denoland/deno.git
synced 2024-11-14 16:33:45 -05:00
721 lines
21 KiB
Rust
721 lines
21 KiB
Rust
// Copyright 2018-2020 the Deno authors. All rights reserved. MIT license.
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#[macro_use]
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extern crate lazy_static;
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use futures::future::{self, FutureExt};
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use os_pipe::pipe;
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use regex::Regex;
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use std::io::Read;
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use std::io::Write;
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use std::mem::replace;
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use std::path::PathBuf;
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use std::process::Child;
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use std::process::Command;
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use std::process::Output;
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use std::process::Stdio;
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use std::sync::Mutex;
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use std::sync::MutexGuard;
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use tempfile::TempDir;
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use warp::http::Uri;
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use warp::http::{HeaderValue, Response, StatusCode};
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use warp::hyper::Body;
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use warp::reply::with_header;
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use warp::reply::Reply;
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use warp::Filter;
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const PORT: u16 = 4545;
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const REDIRECT_PORT: u16 = 4546;
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const ANOTHER_REDIRECT_PORT: u16 = 4547;
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const DOUBLE_REDIRECTS_PORT: u16 = 4548;
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const INF_REDIRECTS_PORT: u16 = 4549;
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const REDIRECT_ABSOLUTE_PORT: u16 = 4550;
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const HTTPS_PORT: u16 = 5545;
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pub const PERMISSION_VARIANTS: [&str; 5] =
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["read", "write", "env", "net", "run"];
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pub const PERMISSION_DENIED_PATTERN: &str = "PermissionDenied";
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lazy_static! {
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// STRIP_ANSI_RE and strip_ansi_codes are lifted from the "console" crate.
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// Copyright 2017 Armin Ronacher <armin.ronacher@active-4.com>. MIT License.
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static ref STRIP_ANSI_RE: Regex = Regex::new(
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r"[\x1b\x9b][\[()#;?]*(?:[0-9]{1,4}(?:;[0-9]{0,4})*)?[0-9A-PRZcf-nqry=><]"
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).unwrap();
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static ref GUARD: Mutex<()> = Mutex::new(());
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}
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pub fn root_path() -> PathBuf {
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PathBuf::from(concat!(env!("CARGO_MANIFEST_DIR"), "/.."))
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}
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pub fn tests_path() -> PathBuf {
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root_path().join("cli").join("tests")
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}
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pub fn target_dir() -> PathBuf {
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let current_exe = std::env::current_exe().unwrap();
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let target_dir = current_exe.parent().unwrap().parent().unwrap();
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println!("target_dir {}", target_dir.display());
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target_dir.into()
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}
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pub fn deno_exe_path() -> PathBuf {
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// Something like /Users/rld/src/deno/target/debug/deps/deno
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let mut p = target_dir().join("deno");
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if cfg!(windows) {
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p.set_extension("exe");
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}
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p
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}
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pub fn test_server_path() -> PathBuf {
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let mut p = target_dir().join("test_server");
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if cfg!(windows) {
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p.set_extension("exe");
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}
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p
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}
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#[tokio::main]
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pub async fn run_all_servers() {
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let routes = warp::path::full().map(|path: warp::path::FullPath| {
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let p = path.as_str();
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assert_eq!(&p[0..1], "/");
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let url = format!("http://localhost:{}{}", PORT, p);
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let u = url.parse::<Uri>().unwrap();
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warp::redirect(u)
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});
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let redirect_server_fut =
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warp::serve(routes).bind(([127, 0, 0, 1], REDIRECT_PORT));
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let routes = warp::path::full().map(|path: warp::path::FullPath| {
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let p = path.as_str();
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assert_eq!(&p[0..1], "/");
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let url = format!("http://localhost:{}/cli/tests/subdir{}", PORT, p);
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let u = url.parse::<Uri>().unwrap();
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warp::redirect(u)
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});
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let another_redirect_server_fut =
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warp::serve(routes).bind(([127, 0, 0, 1], ANOTHER_REDIRECT_PORT));
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let routes = warp::path::full().map(|path: warp::path::FullPath| {
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let p = path.as_str();
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assert_eq!(&p[0..1], "/");
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let url = format!("http://localhost:{}{}", REDIRECT_PORT, p);
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let u = url.parse::<Uri>().unwrap();
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warp::redirect(u)
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});
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let double_redirect_server_fut =
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warp::serve(routes).bind(([127, 0, 0, 1], DOUBLE_REDIRECTS_PORT));
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let routes = warp::path::full().map(|path: warp::path::FullPath| {
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let p = path.as_str();
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assert_eq!(&p[0..1], "/");
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let url = format!("http://localhost:{}{}", INF_REDIRECTS_PORT, p);
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let u = url.parse::<Uri>().unwrap();
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warp::redirect(u)
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});
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let inf_redirect_server_fut =
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warp::serve(routes).bind(([127, 0, 0, 1], INF_REDIRECTS_PORT));
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// redirect server that redirect to absolute paths under same host
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// redirects /REDIRECT/file_name to /file_name
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let routes = warp::path("REDIRECT")
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.and(warp::path::peek())
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.map(|path: warp::path::Peek| {
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let p = path.as_str();
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let url = format!("/{}", p);
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let u = url.parse::<Uri>().unwrap();
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warp::redirect(u)
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})
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.or(
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warp::any()
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.and(warp::path::peek())
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.and(warp::fs::dir(root_path()))
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.map(custom_headers),
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);
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let absolute_redirect_server_fut =
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warp::serve(routes).bind(([127, 0, 0, 1], REDIRECT_ABSOLUTE_PORT));
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let echo_server = warp::path("echo_server")
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.and(warp::post())
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.and(warp::body::bytes())
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.and(warp::header::optional::<String>("x-status"))
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.and(warp::header::optional::<String>("content-type"))
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.and(warp::header::optional::<String>("user-agent"))
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.map(
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|bytes: bytes::Bytes,
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status: Option<String>,
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content_type: Option<String>,
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user_agent: Option<String>|
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-> Box<dyn Reply> {
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let mut res = Response::new(Body::from(bytes));
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if let Some(v) = status {
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*res.status_mut() = StatusCode::from_bytes(v.as_bytes()).unwrap();
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}
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let h = res.headers_mut();
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if let Some(v) = content_type {
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h.insert("content-type", HeaderValue::from_str(&v).unwrap());
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}
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if let Some(v) = user_agent {
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h.insert("user-agent", HeaderValue::from_str(&v).unwrap());
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}
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Box::new(res)
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},
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);
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let echo_multipart_file = warp::path("echo_multipart_file")
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.and(warp::post())
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.and(warp::body::bytes())
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.map(|bytes: bytes::Bytes| -> Box<dyn Reply> {
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let start = b"--boundary\t \r\n\
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Content-Disposition: form-data; name=\"field_1\"\r\n\
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\r\n\
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value_1 \r\n\
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\r\n--boundary\r\n\
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Content-Disposition: form-data; name=\"file\"; \
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filename=\"file.bin\"\r\n\
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Content-Type: application/octet-stream\r\n\
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\r\n";
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let end = b"\r\n--boundary--\r\n";
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let b = [start as &[u8], &bytes, end].concat();
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let mut res = Response::new(Body::from(b));
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let h = res.headers_mut();
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h.insert(
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"content-type",
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HeaderValue::from_static("multipart/form-data;boundary=boundary"),
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);
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Box::new(res)
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});
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let multipart_form_data =
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warp::path("multipart_form_data.txt").map(|| -> Box<dyn Reply> {
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let b = "Preamble\r\n\
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--boundary\t \r\n\
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Content-Disposition: form-data; name=\"field_1\"\r\n\
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\r\n\
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value_1 \r\n\
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\r\n--boundary\r\n\
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Content-Disposition: form-data; name=\"field_2\";\
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filename=\"file.js\"\r\n\
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Content-Type: text/javascript\r\n\
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\r\n\
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console.log(\"Hi\")\
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\r\n--boundary--\r\n\
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Epilogue";
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let mut res = Response::new(Body::from(b));
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res.headers_mut().insert(
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"content-type",
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HeaderValue::from_static("multipart/form-data;boundary=boundary"),
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);
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Box::new(res)
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});
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let etag_script = warp::path!("etag_script.ts")
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.and(warp::header::optional::<String>("if-none-match"))
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.map(|if_none_match| -> Box<dyn Reply> {
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if if_none_match == Some("33a64df551425fcc55e".to_string()) {
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let r =
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warp::reply::with_status(warp::reply(), StatusCode::NOT_MODIFIED);
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let r = with_header(r, "Content-type", "application/typescript");
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let r = with_header(r, "ETag", "33a64df551425fcc55e");
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Box::new(r)
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} else {
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let mut res = Response::new(Body::from("console.log('etag')"));
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let h = res.headers_mut();
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h.insert(
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"Content-type",
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HeaderValue::from_static("application/typescript"),
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);
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h.insert("ETag", HeaderValue::from_static("33a64df551425fcc55e"));
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Box::new(res)
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}
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});
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let xtypescripttypes = warp::path!("xTypeScriptTypes.js")
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.map(|| {
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let mut res = Response::new(Body::from("export const foo = 'foo';"));
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let h = res.headers_mut();
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h.insert(
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"Content-type",
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HeaderValue::from_static("application/javascript"),
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);
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h.insert(
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"X-TypeScript-Types",
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HeaderValue::from_static("./xTypeScriptTypes.d.ts"),
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);
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res
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})
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.or(warp::path!("xTypeScriptTypes.d.ts").map(|| {
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let mut res = Response::new(Body::from("export const foo: 'foo';"));
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res.headers_mut().insert(
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"Content-type",
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HeaderValue::from_static("application/typescript"),
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);
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res
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}))
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.or(warp::path!("type_directives_redirect.js").map(|| {
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let mut res = Response::new(Body::from("export const foo = 'foo';"));
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let h = res.headers_mut();
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h.insert(
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"Content-type",
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HeaderValue::from_static("application/javascript"),
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);
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h.insert(
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"X-TypeScript-Types",
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HeaderValue::from_static(
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"http://localhost:4547/xTypeScriptTypesRedirect.d.ts",
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),
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);
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res
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}))
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.or(warp::path!("cli"/"tests"/"subdir"/"xTypeScriptTypesRedirect.d.ts").map(|| {
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let mut res = Response::new(Body::from(
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"import './xTypeScriptTypesRedirected.d.ts';",
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));
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let h = res.headers_mut();
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h.insert(
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"Content-type",
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HeaderValue::from_static("application/typescript"),
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);
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res
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}))
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.or(warp::path!("cli"/"tests"/"subdir"/"xTypeScriptTypesRedirected.d.ts").map(|| {
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let mut res = Response::new(Body::from("export const foo: 'foo';"));
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let h = res.headers_mut();
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h.insert(
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"Content-type",
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HeaderValue::from_static("application/typescript"),
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);
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res
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}))
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.or(warp::path!("referenceTypes.js").map(|| {
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let mut res = Response::new(Body::from("/// <reference types=\"./xTypeScriptTypes.d.ts\" />\r\nexport const foo = \"foo\";\r\n"));
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let h = res.headers_mut();
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h.insert(
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"Content-type",
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HeaderValue::from_static("application/javascript"),
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);
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res
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}));
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let content_type_handler = warp::any()
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.and(warp::path::peek())
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.and(warp::fs::dir(root_path()))
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.map(custom_headers)
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.or(etag_script)
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.or(xtypescripttypes)
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.or(echo_server)
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.or(echo_multipart_file)
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.or(multipart_form_data);
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let http_fut =
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warp::serve(content_type_handler.clone()).bind(([127, 0, 0, 1], PORT));
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let https_fut = warp::serve(content_type_handler.clone())
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.tls()
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.cert_path("std/http/testdata/tls/localhost.crt")
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.key_path("std/http/testdata/tls/localhost.key")
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.bind(([127, 0, 0, 1], HTTPS_PORT));
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let mut server_fut = async {
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futures::join!(
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http_fut,
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https_fut,
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redirect_server_fut,
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another_redirect_server_fut,
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inf_redirect_server_fut,
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double_redirect_server_fut,
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absolute_redirect_server_fut,
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)
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}
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.boxed();
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let mut did_print_ready = false;
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future::poll_fn(move |cx| {
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let poll_result = server_fut.poll_unpin(cx);
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if !replace(&mut did_print_ready, true) {
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println!("ready");
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}
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poll_result
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})
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.await;
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}
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fn custom_headers(path: warp::path::Peek, f: warp::fs::File) -> Box<dyn Reply> {
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let p = path.as_str();
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if p.ends_with("cli/tests/x_deno_warning.js") {
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let f = with_header(f, "Content-Type", "application/javascript");
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let f = with_header(f, "X-Deno-Warning", "foobar");
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return Box::new(f);
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}
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if p.ends_with("cli/tests/053_import_compression/brotli") {
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let f = with_header(f, "Content-Encoding", "br");
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let f = with_header(f, "Content-Type", "application/javascript");
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let f = with_header(f, "Content-Length", "26");
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return Box::new(f);
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}
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if p.ends_with("cli/tests/053_import_compression/gziped") {
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let f = with_header(f, "Content-Encoding", "gzip");
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let f = with_header(f, "Content-Type", "application/javascript");
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let f = with_header(f, "Content-Length", "39");
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return Box::new(f);
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}
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let content_type = if p.contains(".t1.") {
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Some("text/typescript")
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} else if p.contains(".t2.") {
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Some("video/vnd.dlna.mpeg-tts")
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} else if p.contains(".t3.") {
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Some("video/mp2t")
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} else if p.contains(".t4.") {
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Some("application/x-typescript")
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} else if p.contains(".j1.") {
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Some("text/javascript")
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} else if p.contains(".j2.") {
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Some("application/ecmascript")
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} else if p.contains(".j3.") {
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Some("text/ecmascript")
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} else if p.contains(".j4.") {
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Some("application/x-javascript")
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} else if p.contains("form_urlencoded") {
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Some("application/x-www-form-urlencoded")
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} else if p.contains("unknown_ext") || p.contains("no_ext") {
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Some("text/typescript")
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} else if p.contains("mismatch_ext") {
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Some("text/javascript")
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} else if p.ends_with(".ts") || p.ends_with(".tsx") {
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Some("application/typescript")
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} else if p.ends_with(".js") || p.ends_with(".jsx") {
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Some("application/javascript")
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} else if p.ends_with(".json") {
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Some("application/json")
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} else {
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None
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};
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if let Some(t) = content_type {
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Box::new(with_header(f, "Content-Type", t))
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} else {
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Box::new(f)
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}
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}
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pub struct HttpServerGuard<'a> {
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#[allow(dead_code)]
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g: MutexGuard<'a, ()>,
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test_server: Child,
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}
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impl<'a> Drop for HttpServerGuard<'a> {
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fn drop(&mut self) {
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match self.test_server.try_wait() {
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Ok(None) => {
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self.test_server.kill().expect("failed to kill test_server");
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let _ = self.test_server.wait();
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}
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Ok(Some(status)) => panic!("test_server exited unexpectedly {}", status),
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Err(e) => panic!("test_server error: {}", e),
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}
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}
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}
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/// Starts target/debug/test_server when the returned guard is dropped, the server
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/// will be killed.
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pub fn http_server<'a>() -> HttpServerGuard<'a> {
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// TODO(bartlomieju) Allow tests to use the http server in parallel.
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let r = GUARD.lock();
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let g = if let Err(poison_err) = r {
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// If panics happened, ignore it. This is for tests.
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poison_err.into_inner()
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} else {
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r.unwrap()
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};
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println!("test_server starting...");
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let mut test_server = Command::new(test_server_path())
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.current_dir(root_path())
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.stdout(Stdio::piped())
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.spawn()
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.expect("failed to execute test_server");
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let stdout = test_server.stdout.as_mut().unwrap();
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use std::io::{BufRead, BufReader};
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let lines = BufReader::new(stdout).lines();
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for maybe_line in lines {
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if let Ok(line) = maybe_line {
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if line.starts_with("ready") {
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break;
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}
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} else {
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panic!(maybe_line.unwrap_err());
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}
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}
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HttpServerGuard { test_server, g }
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}
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/// Helper function to strip ansi codes.
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pub fn strip_ansi_codes(s: &str) -> std::borrow::Cow<str> {
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STRIP_ANSI_RE.replace_all(s, "")
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}
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|
|
pub fn run_and_collect_output(
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expect_success: bool,
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args: &str,
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input: Option<Vec<&str>>,
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envs: Option<Vec<(String, String)>>,
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need_http_server: bool,
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) -> (String, String) {
|
|
let mut deno_process_builder = deno_cmd();
|
|
deno_process_builder
|
|
.args(args.split_whitespace())
|
|
.current_dir(&tests_path())
|
|
.stdin(Stdio::piped())
|
|
.stdout(Stdio::piped())
|
|
.stderr(Stdio::piped());
|
|
if let Some(envs) = envs {
|
|
deno_process_builder.envs(envs);
|
|
}
|
|
let http_guard = if need_http_server {
|
|
Some(http_server())
|
|
} else {
|
|
None
|
|
};
|
|
let mut deno = deno_process_builder
|
|
.spawn()
|
|
.expect("failed to spawn script");
|
|
if let Some(lines) = input {
|
|
let stdin = deno.stdin.as_mut().expect("failed to get stdin");
|
|
stdin
|
|
.write_all(lines.join("\n").as_bytes())
|
|
.expect("failed to write to stdin");
|
|
}
|
|
let Output {
|
|
stdout,
|
|
stderr,
|
|
status,
|
|
} = deno.wait_with_output().expect("failed to wait on child");
|
|
drop(http_guard);
|
|
let stdout = String::from_utf8(stdout).unwrap();
|
|
let stderr = String::from_utf8(stderr).unwrap();
|
|
if expect_success != status.success() {
|
|
eprintln!("stdout: <<<{}>>>", stdout);
|
|
eprintln!("stderr: <<<{}>>>", stderr);
|
|
panic!("Unexpected exit code: {:?}", status.code());
|
|
}
|
|
(stdout, stderr)
|
|
}
|
|
|
|
pub fn new_deno_dir() -> TempDir {
|
|
TempDir::new().expect("tempdir fail")
|
|
}
|
|
|
|
pub fn deno_cmd() -> Command {
|
|
let e = deno_exe_path();
|
|
let deno_dir = new_deno_dir();
|
|
assert!(e.exists());
|
|
let mut c = Command::new(e);
|
|
c.env("DENO_DIR", deno_dir.path());
|
|
c
|
|
}
|
|
|
|
pub fn run_python_script(script: &str) {
|
|
let deno_dir = new_deno_dir();
|
|
let output = Command::new("python")
|
|
.env("DENO_DIR", deno_dir.path())
|
|
.current_dir(root_path())
|
|
.arg(script)
|
|
.arg(format!("--build-dir={}", target_dir().display()))
|
|
.arg(format!("--executable={}", deno_exe_path().display()))
|
|
.output()
|
|
.expect("failed to spawn script");
|
|
if !output.status.success() {
|
|
let stdout = String::from_utf8(output.stdout).unwrap();
|
|
let stderr = String::from_utf8(output.stderr).unwrap();
|
|
panic!(
|
|
"{} executed with failing error code\n{}{}",
|
|
script, stdout, stderr
|
|
);
|
|
}
|
|
}
|
|
|
|
#[derive(Debug, Default)]
|
|
pub struct CheckOutputIntegrationTest {
|
|
pub args: &'static str,
|
|
pub output: &'static str,
|
|
pub input: Option<&'static str>,
|
|
pub output_str: Option<&'static str>,
|
|
pub exit_code: i32,
|
|
pub http_server: bool,
|
|
}
|
|
|
|
impl CheckOutputIntegrationTest {
|
|
pub fn run(&self) {
|
|
let args = self.args.split_whitespace();
|
|
let root = root_path();
|
|
let deno_exe = deno_exe_path();
|
|
println!("root path {}", root.display());
|
|
println!("deno_exe path {}", deno_exe.display());
|
|
|
|
let http_server_guard = if self.http_server {
|
|
Some(http_server())
|
|
} else {
|
|
None
|
|
};
|
|
|
|
let (mut reader, writer) = pipe().unwrap();
|
|
let tests_dir = root.join("cli").join("tests");
|
|
let mut command = deno_cmd();
|
|
println!("deno_exe args {}", self.args);
|
|
println!("deno_exe tests path {:?}", &tests_dir);
|
|
command.args(args);
|
|
command.current_dir(&tests_dir);
|
|
command.stdin(Stdio::piped());
|
|
let writer_clone = writer.try_clone().unwrap();
|
|
command.stderr(writer_clone);
|
|
command.stdout(writer);
|
|
|
|
let mut process = command.spawn().expect("failed to execute process");
|
|
|
|
if let Some(input) = self.input {
|
|
let mut p_stdin = process.stdin.take().unwrap();
|
|
write!(p_stdin, "{}", input).unwrap();
|
|
}
|
|
|
|
// Very important when using pipes: This parent process is still
|
|
// holding its copies of the write ends, and we have to close them
|
|
// before we read, otherwise the read end will never report EOF. The
|
|
// Command object owns the writers now, and dropping it closes them.
|
|
drop(command);
|
|
|
|
let mut actual = String::new();
|
|
reader.read_to_string(&mut actual).unwrap();
|
|
|
|
let status = process.wait().expect("failed to finish process");
|
|
let exit_code = status.code().unwrap();
|
|
|
|
drop(http_server_guard);
|
|
|
|
actual = strip_ansi_codes(&actual).to_string();
|
|
|
|
if self.exit_code != exit_code {
|
|
println!("OUTPUT\n{}\nOUTPUT", actual);
|
|
panic!(
|
|
"bad exit code, expected: {:?}, actual: {:?}",
|
|
self.exit_code, exit_code
|
|
);
|
|
}
|
|
|
|
let expected = if let Some(s) = self.output_str {
|
|
s.to_owned()
|
|
} else {
|
|
let output_path = tests_dir.join(self.output);
|
|
println!("output path {}", output_path.display());
|
|
std::fs::read_to_string(output_path).expect("cannot read output")
|
|
};
|
|
|
|
if !wildcard_match(&expected, &actual) {
|
|
println!("OUTPUT\n{}\nOUTPUT", actual);
|
|
println!("EXPECTED\n{}\nEXPECTED", expected);
|
|
panic!("pattern match failed");
|
|
}
|
|
}
|
|
}
|
|
|
|
fn wildcard_match(pattern: &str, s: &str) -> bool {
|
|
pattern_match(pattern, s, "[WILDCARD]")
|
|
}
|
|
|
|
pub fn pattern_match(pattern: &str, s: &str, wildcard: &str) -> bool {
|
|
// Normalize line endings
|
|
let mut s = s.replace("\r\n", "\n");
|
|
let pattern = pattern.replace("\r\n", "\n");
|
|
|
|
if pattern == wildcard {
|
|
return true;
|
|
}
|
|
|
|
let parts = pattern.split(wildcard).collect::<Vec<&str>>();
|
|
if parts.len() == 1 {
|
|
return pattern == s;
|
|
}
|
|
|
|
if !s.starts_with(parts[0]) {
|
|
return false;
|
|
}
|
|
|
|
// If the first line of the pattern is just a wildcard the newline character
|
|
// needs to be pre-pended so it can safely match anything or nothing and
|
|
// continue matching.
|
|
if pattern.lines().next() == Some(wildcard) {
|
|
s.insert_str(0, "\n");
|
|
}
|
|
|
|
let mut t = s.split_at(parts[0].len());
|
|
|
|
for (i, part) in parts.iter().enumerate() {
|
|
if i == 0 {
|
|
continue;
|
|
}
|
|
dbg!(part, i);
|
|
if i == parts.len() - 1 && (*part == "" || *part == "\n") {
|
|
dbg!("exit 1 true", i);
|
|
return true;
|
|
}
|
|
if let Some(found) = t.1.find(*part) {
|
|
dbg!("found ", found);
|
|
t = t.1.split_at(found + part.len());
|
|
} else {
|
|
dbg!("exit false ", i);
|
|
return false;
|
|
}
|
|
}
|
|
|
|
dbg!("end ", t.1.len());
|
|
t.1.is_empty()
|
|
}
|
|
|
|
#[test]
|
|
fn test_wildcard_match() {
|
|
let fixtures = vec![
|
|
("foobarbaz", "foobarbaz", true),
|
|
("[WILDCARD]", "foobarbaz", true),
|
|
("foobar", "foobarbaz", false),
|
|
("foo[WILDCARD]baz", "foobarbaz", true),
|
|
("foo[WILDCARD]baz", "foobazbar", false),
|
|
("foo[WILDCARD]baz[WILDCARD]qux", "foobarbazqatqux", true),
|
|
("foo[WILDCARD]", "foobar", true),
|
|
("foo[WILDCARD]baz[WILDCARD]", "foobarbazqat", true),
|
|
// check with different line endings
|
|
("foo[WILDCARD]\nbaz[WILDCARD]\n", "foobar\nbazqat\n", true),
|
|
(
|
|
"foo[WILDCARD]\nbaz[WILDCARD]\n",
|
|
"foobar\r\nbazqat\r\n",
|
|
true,
|
|
),
|
|
(
|
|
"foo[WILDCARD]\r\nbaz[WILDCARD]\n",
|
|
"foobar\nbazqat\r\n",
|
|
true,
|
|
),
|
|
(
|
|
"foo[WILDCARD]\r\nbaz[WILDCARD]\r\n",
|
|
"foobar\nbazqat\n",
|
|
true,
|
|
),
|
|
(
|
|
"foo[WILDCARD]\r\nbaz[WILDCARD]\r\n",
|
|
"foobar\r\nbazqat\r\n",
|
|
true,
|
|
),
|
|
];
|
|
|
|
// Iterate through the fixture lists, testing each one
|
|
for (pattern, string, expected) in fixtures {
|
|
let actual = wildcard_match(pattern, string);
|
|
dbg!(pattern, string, expected);
|
|
assert_eq!(actual, expected);
|
|
}
|
|
}
|