mirror of
https://github.com/fluencelabs/wasmer
synced 2025-05-12 10:37:11 +00:00
449 lines
13 KiB
Rust
449 lines
13 KiB
Rust
#[cfg(unix)]
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mod unix;
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#[cfg(windows)]
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mod windows;
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#[cfg(unix)]
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pub use self::unix::*;
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#[cfg(windows)]
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pub use self::windows::*;
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use super::utils::copy_stat_into_wasm;
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use super::varargs::VarArgs;
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use byteorder::{ByteOrder, LittleEndian};
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/// NOTE: TODO: These syscalls only support wasm_32 for now because they assume offsets are u32
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/// Syscall list: https://www.cs.utexas.edu/~bismith/test/syscalls/syscalls32.html
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use libc::{
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// ENOTTY,
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c_int,
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c_void,
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chdir,
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// fcntl, setsockopt, getppid
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close,
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dup2,
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exit,
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fstat,
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getpid,
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// iovec,
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lseek,
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open,
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read,
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// readv,
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rmdir,
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// writev,
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stat,
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write,
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// sockaddr_in,
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};
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use wasmer_runtime_core::vm::Ctx;
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use super::env;
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use std::slice;
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// use std::sys::fd::FileDesc;
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// Another conditional constant for name resolution: Macos et iOS use
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// SO_NOSIGPIPE as a setsockopt flag to disable SIGPIPE emission on socket.
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// Other platforms do otherwise.
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#[cfg(target_os = "darwin")]
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use libc::SO_NOSIGPIPE;
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#[cfg(not(target_os = "darwin"))]
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const SO_NOSIGPIPE: c_int = 0;
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/// exit
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pub fn ___syscall1(ctx: &mut Ctx, which: c_int, mut varargs: VarArgs) {
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debug!("emscripten::___syscall1 (exit) {}", which);
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let status: i32 = varargs.get(ctx);
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unsafe {
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exit(status);
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}
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}
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/// read
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pub fn ___syscall3(ctx: &mut Ctx, which: i32, mut varargs: VarArgs) -> i32 {
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// -> ssize_t
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debug!("emscripten::___syscall3 (read) {}", which);
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let fd: i32 = varargs.get(ctx);
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let buf: u32 = varargs.get(ctx);
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let count = varargs.get(ctx);
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debug!("=> fd: {}, buf_offset: {}, count: {}", fd, buf, count);
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let buf_addr = emscripten_memory_pointer!(ctx.memory(0), buf) as *mut c_void;
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let ret = unsafe { read(fd, buf_addr, count) };
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debug!("=> ret: {}", ret);
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ret as _
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}
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/// write
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pub fn ___syscall4(ctx: &mut Ctx, which: c_int, mut varargs: VarArgs) -> c_int {
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debug!("emscripten::___syscall4 (write) {}", which);
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let fd: i32 = varargs.get(ctx);
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let buf: u32 = varargs.get(ctx);
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let count = varargs.get(ctx);
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debug!("=> fd: {}, buf: {}, count: {}", fd, buf, count);
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let buf_addr = emscripten_memory_pointer!(ctx.memory(0), buf) as *const c_void;
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unsafe { write(fd, buf_addr, count) as i32 }
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}
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/// open
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pub fn ___syscall5(ctx: &mut Ctx, which: c_int, mut varargs: VarArgs) -> c_int {
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debug!("emscripten::___syscall5 (open) {}", which);
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let pathname: u32 = varargs.get(ctx);
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let flags: i32 = varargs.get(ctx);
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let mode: u32 = varargs.get(ctx);
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let pathname_addr = emscripten_memory_pointer!(ctx.memory(0), pathname) as *const i8;
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let path_str = unsafe { std::ffi::CStr::from_ptr(pathname_addr).to_str().unwrap() };
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let fd = unsafe { open(pathname_addr, flags, mode) };
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debug!(
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"=> pathname: {}, flags: {}, mode: {} = fd: {}\npath: {}",
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pathname, flags, mode, fd, path_str
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);
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fd
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}
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/// close
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pub fn ___syscall6(ctx: &mut Ctx, which: c_int, mut varargs: VarArgs) -> c_int {
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debug!("emscripten::___syscall6 (close) {}", which);
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let fd: i32 = varargs.get(ctx);
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debug!("fd: {}", fd);
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unsafe { close(fd) }
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}
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// chdir
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pub fn ___syscall12(ctx: &mut Ctx, which: c_int, mut varargs: VarArgs) -> c_int {
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debug!("emscripten::___syscall12 (chdir) {}", which);
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let path_addr: i32 = varargs.get(ctx);
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unsafe {
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let path_ptr = emscripten_memory_pointer!(ctx.memory(0), path_addr) as *const i8;
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let path = std::ffi::CStr::from_ptr(path_ptr);
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let ret = chdir(path_ptr);
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debug!("=> path: {:?}, ret: {}", path, ret);
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ret
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}
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}
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pub fn ___syscall10(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall10");
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-1
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}
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pub fn ___syscall15(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall15");
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-1
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}
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// getpid
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pub fn ___syscall20(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall20 (getpid)");
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unsafe { getpid() }
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}
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pub fn ___syscall38(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall38");
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-1
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}
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// rmdir
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pub fn ___syscall40(ctx: &mut Ctx, _which: c_int, mut varargs: VarArgs) -> c_int {
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debug!("emscripten::___syscall40 (rmdir)");
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let pathname: u32 = varargs.get(ctx);
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let pathname_addr = emscripten_memory_pointer!(ctx.memory(0), pathname) as *const i8;
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unsafe { rmdir(pathname_addr) }
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}
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pub fn ___syscall60(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall60");
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-1
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}
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// dup2
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pub fn ___syscall63(ctx: &mut Ctx, which: c_int, mut varargs: VarArgs) -> c_int {
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debug!("emscripten::___syscall63 (dup2) {}", which);
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let src: i32 = varargs.get(ctx);
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let dst: i32 = varargs.get(ctx);
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unsafe { dup2(src, dst) }
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}
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// getppid
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pub fn ___syscall64(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall64 (getppid)");
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unsafe { getpid() }
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}
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pub fn ___syscall66(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall66");
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-1
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}
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pub fn ___syscall75(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall75");
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-1
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}
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pub fn ___syscall85(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall85");
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-1
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}
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pub fn ___syscall91(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall91");
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-1
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}
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pub fn ___syscall97(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall97");
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-1
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}
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pub fn ___syscall110(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall110");
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-1
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}
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// mmap2
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pub fn ___syscall192(ctx: &mut Ctx, which: c_int, mut varargs: VarArgs) -> c_int {
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debug!("emscripten::___syscall192 (mmap2) {}", which);
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let addr: i32 = varargs.get(ctx);
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let len: u32 = varargs.get(ctx);
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let prot: i32 = varargs.get(ctx);
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let flags: i32 = varargs.get(ctx);
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let fd: i32 = varargs.get(ctx);
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let off: i32 = varargs.get(ctx);
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debug!(
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"=> addr: {}, len: {}, prot: {}, flags: {}, fd: {}, off: {}",
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addr, len, prot, flags, fd, off
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);
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if fd == -1 {
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let ptr = env::call_memalign(ctx, 16384, len);
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if ptr == 0 {
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return -1;
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}
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env::call_memset(ctx, ptr, 0, len);
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ptr as _
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} else {
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-1
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}
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}
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/// lseek
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pub fn ___syscall140(ctx: &mut Ctx, which: i32, mut varargs: VarArgs) -> i32 {
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// -> c_int
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debug!("emscripten::___syscall140 (lseek) {}", which);
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let fd: i32 = varargs.get(ctx);
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let offset = varargs.get(ctx);
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let whence: i32 = varargs.get(ctx);
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debug!("=> fd: {}, offset: {}, whence = {}", fd, offset, whence);
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unsafe { lseek(fd, offset, whence) as _ }
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}
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/// readv
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#[allow(clippy::cast_ptr_alignment)]
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pub fn ___syscall145(ctx: &mut Ctx, which: c_int, mut varargs: VarArgs) -> i32 {
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// -> ssize_t
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debug!("emscripten::___syscall145 (readv) {}", which);
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// let fd: i32 = varargs.get(ctx);
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// let iov: u32 = varargs.get(ctx);
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// let iovcnt: i32 = varargs.get(ctx);
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// debug!("=> fd: {}, iov: {}, iovcnt = {}", fd, iov, iovcnt);
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// let iov_addr = emscripten_memory_pointer!(ctx.memory(0), iov) as *mut iovec;
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// unsafe { readv(fd, iov_addr, iovcnt) }
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let fd: i32 = varargs.get(ctx);
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let iov: i32 = varargs.get(ctx);
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let iovcnt: i32 = varargs.get(ctx);
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#[repr(C)]
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struct GuestIovec {
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iov_base: i32,
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iov_len: i32,
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}
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debug!("=> fd: {}, iov: {}, iovcnt = {}", fd, iov, iovcnt);
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let mut ret = 0;
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unsafe {
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for i in 0..iovcnt {
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let guest_iov_addr =
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emscripten_memory_pointer!(ctx.memory(0), (iov + i * 8)) as *mut GuestIovec;
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let iov_base = emscripten_memory_pointer!(ctx.memory(0), (*guest_iov_addr).iov_base)
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as *mut c_void;
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let iov_len = (*guest_iov_addr).iov_len as _;
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// debug!("=> iov_addr: {:?}, {:?}", iov_base, iov_len);
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let curr = read(fd, iov_base, iov_len);
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if curr < 0 {
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return -1;
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}
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ret += curr;
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}
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// debug!(" => ret: {}", ret);
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ret as _
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}
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}
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// writev
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#[allow(clippy::cast_ptr_alignment)]
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pub fn ___syscall146(ctx: &mut Ctx, which: i32, mut varargs: VarArgs) -> i32 {
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// -> ssize_t
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debug!("emscripten::___syscall146 (writev) {}", which);
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let fd: i32 = varargs.get(ctx);
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let iov: i32 = varargs.get(ctx);
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let iovcnt: i32 = varargs.get(ctx);
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#[repr(C)]
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struct GuestIovec {
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iov_base: i32,
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iov_len: i32,
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}
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debug!("=> fd: {}, iov: {}, iovcnt = {}", fd, iov, iovcnt);
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let mut ret = 0;
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unsafe {
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for i in 0..iovcnt {
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let guest_iov_addr =
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emscripten_memory_pointer!(ctx.memory(0), (iov + i * 8)) as *mut GuestIovec;
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let iov_base = emscripten_memory_pointer!(ctx.memory(0), (*guest_iov_addr).iov_base)
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as *const c_void;
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let iov_len = (*guest_iov_addr).iov_len as _;
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// debug!("=> iov_addr: {:?}, {:?}", iov_base, iov_len);
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let curr = write(fd, iov_base, iov_len);
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if curr < 0 {
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return -1;
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}
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ret += curr;
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}
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// debug!(" => ret: {}", ret);
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ret as _
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}
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}
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pub fn ___syscall168(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall168");
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-1
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}
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pub fn ___syscall191(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall191 - stub");
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-1
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}
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pub fn ___syscall194(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall194 - stub");
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-1
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}
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pub fn ___syscall196(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall194 - stub");
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-1
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}
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pub fn ___syscall199(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall199 - stub");
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-1
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}
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// stat64
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pub fn ___syscall195(ctx: &mut Ctx, which: c_int, mut varargs: VarArgs) -> c_int {
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debug!("emscripten::___syscall195 (stat64) {}", which);
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let pathname: u32 = varargs.get(ctx);
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let buf: u32 = varargs.get(ctx);
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let pathname_addr = emscripten_memory_pointer!(ctx.memory(0), pathname) as *const i8;
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unsafe {
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let mut _stat: stat = std::mem::zeroed();
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let ret = stat(pathname_addr, &mut _stat);
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debug!("ret: {}", ret);
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if ret != 0 {
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return ret;
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}
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copy_stat_into_wasm(ctx, buf, &_stat);
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}
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0
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}
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// fstat64
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pub fn ___syscall197(ctx: &mut Ctx, which: c_int, mut varargs: VarArgs) -> c_int {
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debug!("emscripten::___syscall197 (fstat64) {}", which);
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let fd: c_int = varargs.get(ctx);
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let buf: u32 = varargs.get(ctx);
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unsafe {
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let mut stat = std::mem::zeroed();
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let ret = fstat(fd, &mut stat);
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debug!("ret: {}", ret);
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if ret != 0 {
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return ret;
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}
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copy_stat_into_wasm(ctx, buf, &stat);
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}
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0
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}
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pub fn ___syscall220(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall220");
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-1
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}
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// fcntl64
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pub fn ___syscall221(ctx: &mut Ctx, which: c_int, mut varargs: VarArgs) -> c_int {
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debug!("emscripten::___syscall221 (fcntl64) {}", which);
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// fcntl64
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let _fd: i32 = varargs.get(ctx);
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let cmd: u32 = varargs.get(ctx);
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match cmd {
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2 => 0,
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_ => -1,
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}
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}
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pub fn ___syscall268(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall268");
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-1
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}
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pub fn ___syscall272(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall272");
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-1
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}
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pub fn ___syscall295(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall295");
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-1
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}
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pub fn ___syscall300(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall300");
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-1
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}
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pub fn ___syscall334(_ctx: &mut Ctx, _one: i32, _two: i32) -> i32 {
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debug!("emscripten::___syscall334");
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-1
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}
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// prlimit64
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pub fn ___syscall340(ctx: &mut Ctx, which: c_int, mut varargs: VarArgs) -> c_int {
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debug!("emscripten::___syscall340 (prlimit64), {}", which);
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// NOTE: Doesn't really matter. Wasm modules cannot exceed WASM_PAGE_SIZE anyway.
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let _pid: i32 = varargs.get(ctx);
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let _resource: i32 = varargs.get(ctx);
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let _new_limit: u32 = varargs.get(ctx);
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let old_limit: u32 = varargs.get(ctx);
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if old_limit != 0 {
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// just report no limits
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let buf_ptr = emscripten_memory_pointer!(ctx.memory(0), old_limit) as *mut u8;
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let buf = unsafe { slice::from_raw_parts_mut(buf_ptr, 16) };
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LittleEndian::write_i32(&mut buf[..], -1); // RLIM_INFINITY
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LittleEndian::write_i32(&mut buf[4..], -1); // RLIM_INFINITY
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LittleEndian::write_i32(&mut buf[8..], -1); // RLIM_INFINITY
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LittleEndian::write_i32(&mut buf[12..], -1); // RLIM_INFINITY
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}
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0
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}
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