Files
windmill/backend/parsers/windmill-parser-java/src/wasm_libc.rs
pyranota 59740c0478 feat: add java support (#5458)
* feat: add nu (nushell) support

* add worker tests

* deactivate tables and non-any types below top-level

full support will come in V1
for V0 it's better to keep things minimal and simple

* add syntax highlighting

used python's grammar, since nushell isn't supported by monaco nor svelte-highlights

for V1 nu will get it`s own grammar

* add logo

* partially implement plugin support

* change logo + ability to deploy + nsjail draft

* static variables + get_resource + get_variable

* lsp/dev.nu + initial nu lsp (not working yet)

* make it work with nsjail

* nullguard

* Much more flexible signature parsing and better error-messages

* add init script

* rename nulsp to nu

* install nu to dockerfile

* fix merge

* implement Default for MainArgSignature

* stage NU_CACHE_DIR

* improve dockerfiles

* dev.nu for parser-wasm + flake.nix

* update code for windows

* add nushell to flake

* upload Cargo.lock

* make build.sh work on nixos

* build wasm cli parsers

* add docs to README_DEV.md

* add helper script docker/dev.nu

* improve docker/dev.nu

* fix windows

* commit frontend/package(lock).json

* update cargo.lock

* correctly update cargo.lock

* remove lsp

* update flake.nix to include svelte server and nushell

* Revert base.sql to main

* remove PLUGIN_USE_RE

* make CARGO_PATH private

* add nu to cli

* Change flags to build wasm-nu-parser

* remove flake.nix from parser-wasm

* update wasm-build target

* remove unused import

* add cli support for nu

* update github workflows

* wasm-build 0.17 -> 0.19

* update build script

* update cargo.lock

* Fix typographical error

* start working on java

* do java boilerplate

* implement parser for java

* update Cargo.lock

* update ENV_SETTINGS

* use published nu parser

* update package.lock

* java is S3 + Caching enabled

* install nsjail backup

* commit v0

* fix nsjail

* v0.1

* rewrite parser in tree-sitter

* implement parser from scratch

* polishing

* change init script to match new parser

* fix imports

* fix cli build

* fix cli build

* refactor install phase

* implement .valid.windmill atomic verification

* implement java init functionality

* remove quick-xml

* fix windows not recognizing 'mvn'

* create empty settings.xml if there is no config provided

* clean up

* change default settings.xml

* change classpath format for windows

* docs to helper

* java copy bin cache instead of symlink

* remove comments

* merge

* fix package.json

* fix package.json 2

* minor fixing

* migrate to Coursier

* update misc

* Http(s) Proxy + CA certs

* remove unused .wasm

* make requirements insensitive to spaces

* update handle_child refs

* rework save_cache for directories

* fix s3 bug

* compile .wasm for cli

* remove uuid import

* fix compilation

* use reference

* fix zero-dep failure

* removing unsafe stuff

* remove unneeded imports

* revert: we still need winapi

* remove nix store from nsjail

* do not create cache_nomount

* add java to dnt

* remove duplicated dependency in init script

* fix typos

* fix CI

* use published parser
2025-03-27 15:12:55 +01:00

208 lines
5.8 KiB
Rust

use std::collections::BTreeMap;
use std::sync::{Mutex, OnceLock};
use std::{
alloc::{self, Layout},
ffi::{c_char, c_int, c_void},
mem::align_of,
ptr,
};
use wasm_bindgen::prelude::*;
/* -------------------------------- stdlib.h -------------------------------- */
#[no_mangle]
pub unsafe extern "C" fn abort() {
panic!("Aborted from C");
}
macro_rules! console_log {
($($t:tt)*) => (unsafe { log(&format_args!($($t)*).to_string()) })
}
#[wasm_bindgen]
extern "C" {
#[wasm_bindgen(js_namespace = console)]
fn log(a: &str);
}
#[no_mangle]
pub unsafe extern "C" fn malloc(size: usize) -> *mut c_void {
if size == 0 {
return ptr::null_mut();
}
let (layout, offset_to_data) = layout_for_size_prepended(size);
let buf = alloc::alloc(layout);
store_layout(buf, layout, offset_to_data)
}
#[no_mangle]
pub unsafe extern "C" fn calloc(count: usize, size: usize) -> *mut c_void {
if count == 0 || size == 0 {
return ptr::null_mut();
}
let (layout, offset_to_data) = layout_for_size_prepended(size * count);
let buf = alloc::alloc_zeroed(layout);
store_layout(buf, layout, offset_to_data)
}
#[no_mangle]
pub unsafe extern "C" fn realloc(buf: *mut c_void, new_size: usize) -> *mut c_void {
if buf.is_null() {
malloc(new_size)
} else if new_size == 0 {
free(buf);
ptr::null_mut()
} else {
let (old_buf, old_layout) = retrieve_layout(buf);
let (new_layout, offset_to_data) = layout_for_size_prepended(new_size);
let new_buf = alloc::realloc(old_buf, old_layout, new_layout.size());
store_layout(new_buf, new_layout, offset_to_data)
}
}
#[no_mangle]
pub unsafe extern "C" fn free(buf: *mut c_void) {
if buf.is_null() {
return;
}
let (buf, layout) = retrieve_layout(buf);
alloc::dealloc(buf, layout);
}
// In all these allocations, we store the layout before the data for later retrieval.
// This is because we need to know the layout when deallocating the memory.
// Here are some helper methods for that:
/// Given a pointer to the data, retrieve the layout and the pointer to the layout.
unsafe fn retrieve_layout(buf: *mut c_void) -> (*mut u8, Layout) {
let (_, layout_offset) = Layout::new::<Layout>()
.extend(Layout::from_size_align(0, align_of::<*const u8>() * 2).unwrap())
.unwrap();
let buf = (buf as *mut u8).offset(-(layout_offset as isize));
let layout = *(buf as *mut Layout);
(buf, layout)
}
/// Calculate a layout for a given size with space for storing a layout at the start.
/// Returns the layout and the offset to the data.
fn layout_for_size_prepended(size: usize) -> (Layout, usize) {
Layout::new::<Layout>()
.extend(Layout::from_size_align(size, align_of::<*const u8>() * 2).unwrap())
.unwrap()
}
/// Store a layout in the pointer, returning a pointer to where the data should be stored.
unsafe fn store_layout(buf: *mut u8, layout: Layout, offset_to_data: usize) -> *mut c_void {
*(buf as *mut Layout) = layout;
(buf as *mut u8).offset(offset_to_data as isize) as *mut c_void
}
/* -------------------------------- string.h -------------------------------- */
#[no_mangle]
pub unsafe extern "C" fn strncmp(ptr1: *const c_void, ptr2: *const c_void, n: usize) -> c_int {
let s1 = std::slice::from_raw_parts(ptr1 as *const u8, n);
let s2 = std::slice::from_raw_parts(ptr2 as *const u8, n);
for (a, b) in s1.iter().zip(s2.iter()) {
if *a != *b || *a == 0 {
return (*a as i32) - (*b as i32);
}
}
0
}
/* -------------------------------- wctype.h -------------------------------- */
#[no_mangle]
pub unsafe extern "C" fn iswspace(c: c_int) -> bool {
char::from_u32(c as u32).map_or(false, |c| c.is_whitespace())
}
#[no_mangle]
pub unsafe extern "C" fn iswalnum(c: c_int) -> bool {
char::from_u32(c as u32).map_or(false, |c| c.is_alphanumeric())
}
/* --------------------------------- time.h --------------------------------- */
#[no_mangle]
pub unsafe extern "C" fn clock() -> u64 {
panic!("clock is not supported");
}
/* --------------------------------- ctype.h -------------------------------- */
#[no_mangle]
pub unsafe extern "C" fn isprint(c: c_int) -> bool {
c >= 32 && c <= 126
}
/* --------------------------------- stdio.h -------------------------------- */
#[no_mangle]
pub unsafe extern "C" fn fprintf(_file: *mut c_void, _format: *const c_void, _args: ...) -> c_int {
panic!("fprintf is not supported");
}
#[no_mangle]
pub unsafe extern "C" fn fputs(_s: *const c_void, _file: *mut c_void) -> c_int {
panic!("fputs is not supported");
}
#[no_mangle]
pub unsafe extern "C" fn fputc(_c: c_int, _file: *mut c_void) -> c_int {
panic!("fputc is not supported");
}
#[no_mangle]
pub unsafe extern "C" fn fdopen(_fd: c_int, _mode: *const c_void) -> *mut c_void {
panic!("fdopen is not supported");
}
#[no_mangle]
pub unsafe extern "C" fn fclose(_file: *mut c_void) -> c_int {
panic!("fclose is not supported");
}
#[no_mangle]
pub unsafe extern "C" fn fwrite(
_ptr: *const c_void,
_size: usize,
_nmemb: usize,
_stream: *mut c_void,
) -> usize {
panic!("fwrite is not supported");
}
#[no_mangle]
pub unsafe extern "C" fn vsnprintf(
_buf: *mut c_char,
_size: usize,
_format: *const c_char,
_args: ...
) -> c_int {
panic!("vsnprintf is not supported");
}
#[no_mangle]
pub extern "C" fn clock_gettime(ptr: usize, new_size: usize) {
panic!("clock_gettime is not supported");
}
// int snprintf( char* restrict buffer, size_t bufsz, const char* restrict format, ... );
#[no_mangle]
pub extern "C" fn snprintf() {
panic!("snprintf is not supported");
}
#[no_mangle]
pub extern "C" fn __assert_fail(_: *const i32, _: *const i32, _: *const i32, _: *const i32) {
panic!("oh no");
}