2020-11-30 14:35:12 -05:00
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use crate::colors;
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use crate::flags::Flags;
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use crate::permissions::Permissions;
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use crate::program_state::ProgramState;
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use crate::tokio_util;
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use crate::worker::MainWorker;
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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::FutureExt;
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use deno_core::ModuleLoader;
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use deno_core::ModuleSpecifier;
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use deno_core::OpState;
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use std::cell::RefCell;
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use std::convert::TryInto;
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use std::env::current_exe;
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use std::fs::File;
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use std::io::Read;
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use std::io::Seek;
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use std::io::SeekFrom;
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use std::io::Write;
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2020-12-01 09:11:02 -05:00
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use std::path::PathBuf;
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2020-11-30 14:35:12 -05:00
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use std::pin::Pin;
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use std::rc::Rc;
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const MAGIC_TRAILER: &[u8; 8] = b"d3n0l4nd";
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/// This function will try to run this binary as a standalone binary
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/// produced by `deno compile`. It determines if this is a stanalone
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/// binary by checking for the magic trailer string `D3N0` at EOF-12.
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/// After the magic trailer is a u64 pointer to the start of the JS
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/// file embedded in the binary. This file is read, and run. If no
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/// magic trailer is present, this function exits with Ok(()).
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pub fn try_run_standalone_binary(args: Vec<String>) -> Result<(), AnyError> {
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let current_exe_path = current_exe()?;
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let mut current_exe = File::open(current_exe_path)?;
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let trailer_pos = current_exe.seek(SeekFrom::End(-16))?;
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let mut trailer = [0; 16];
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current_exe.read_exact(&mut trailer)?;
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let (magic_trailer, bundle_pos_arr) = trailer.split_at(8);
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if magic_trailer == MAGIC_TRAILER {
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let bundle_pos_arr: &[u8; 8] = bundle_pos_arr.try_into()?;
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let bundle_pos = u64::from_be_bytes(*bundle_pos_arr);
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current_exe.seek(SeekFrom::Start(bundle_pos))?;
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let bundle_len = trailer_pos - bundle_pos;
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let mut bundle = String::new();
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current_exe.take(bundle_len).read_to_string(&mut bundle)?;
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// TODO: check amount of bytes read
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if let Err(err) = tokio_util::run_basic(run(bundle, args)) {
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eprintln!("{}: {}", colors::red_bold("error"), err.to_string());
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std::process::exit(1);
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}
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std::process::exit(0);
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} else {
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Ok(())
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}
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}
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const SPECIFIER: &str = "file://$deno$/bundle.js";
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struct EmbeddedModuleLoader(String);
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impl ModuleLoader for EmbeddedModuleLoader {
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fn resolve(
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&self,
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_op_state: Rc<RefCell<OpState>>,
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specifier: &str,
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_referrer: &str,
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_is_main: bool,
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) -> Result<ModuleSpecifier, AnyError> {
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if specifier != SPECIFIER {
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return Err(type_error(
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"Self-contained binaries don't support module loading",
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));
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}
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Ok(ModuleSpecifier::resolve_url(specifier)?)
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}
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fn load(
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&self,
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_op_state: Rc<RefCell<OpState>>,
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module_specifier: &ModuleSpecifier,
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_maybe_referrer: Option<ModuleSpecifier>,
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_is_dynamic: bool,
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) -> Pin<Box<deno_core::ModuleSourceFuture>> {
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let module_specifier = module_specifier.clone();
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let code = self.0.to_string();
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async move {
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if module_specifier.to_string() != SPECIFIER {
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return Err(type_error(
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"Self-contained binaries don't support module loading",
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));
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}
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Ok(deno_core::ModuleSource {
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code,
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module_url_specified: module_specifier.to_string(),
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module_url_found: module_specifier.to_string(),
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})
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}
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.boxed_local()
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}
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}
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async fn run(source_code: String, args: Vec<String>) -> Result<(), AnyError> {
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let mut flags = Flags::default();
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flags.argv = args[1..].to_vec();
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// TODO(lucacasonato): remove once you can specify this correctly through embedded metadata
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flags.unstable = true;
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let main_module = ModuleSpecifier::resolve_url(SPECIFIER)?;
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let program_state = ProgramState::new(flags.clone())?;
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let permissions = Permissions::allow_all();
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let module_loader = Rc::new(EmbeddedModuleLoader(source_code));
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let mut worker = MainWorker::from_options(
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&program_state,
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main_module.clone(),
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permissions,
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module_loader,
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2020-12-01 17:33:44 -05:00
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None,
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2020-11-30 14:35:12 -05:00
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);
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worker.execute_module(&main_module).await?;
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worker.execute("window.dispatchEvent(new Event('load'))")?;
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worker.run_event_loop().await?;
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worker.execute("window.dispatchEvent(new Event('unload'))")?;
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Ok(())
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}
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/// This functions creates a standalone deno binary by appending a bundle
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/// and magic trailer to the currently executing binary.
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pub async fn create_standalone_binary(
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mut source_code: Vec<u8>,
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2020-12-01 09:11:02 -05:00
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output: PathBuf,
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2020-11-30 14:35:12 -05:00
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) -> Result<(), AnyError> {
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let original_binary_path = std::env::current_exe()?;
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let mut original_bin = tokio::fs::read(original_binary_path).await?;
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let mut trailer = MAGIC_TRAILER.to_vec();
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trailer.write_all(&original_bin.len().to_be_bytes())?;
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let mut final_bin =
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Vec::with_capacity(original_bin.len() + source_code.len() + trailer.len());
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final_bin.append(&mut original_bin);
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final_bin.append(&mut source_code);
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final_bin.append(&mut trailer);
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2020-12-01 09:11:02 -05:00
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let output =
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if cfg!(windows) && output.extension().unwrap_or_default() != "exe" {
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PathBuf::from(output.display().to_string() + ".exe")
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} else {
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output
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};
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tokio::fs::write(&output, final_bin).await?;
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2020-11-30 14:35:12 -05:00
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#[cfg(unix)]
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{
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use std::os::unix::fs::PermissionsExt;
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let perms = std::fs::Permissions::from_mode(0o777);
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2020-12-01 09:11:02 -05:00
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tokio::fs::set_permissions(output, perms).await?;
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2020-11-30 14:35:12 -05:00
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}
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Ok(())
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}
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