/* SPDX-License-Identifier: GPL-2.0 * * Copyright (C) 2018 Jason A. Donenfeld . All Rights Reserved. */ package tun // #include // static ssize_t callFnWithCtx(const void *func, const void *ctx, const void *buffer, size_t len) // { // return ((ssize_t(*)(const void *, const unsigned char *, size_t))func)(ctx, buffer, len); // } import "C" import ( "os" "syscall" "unsafe" ) type nativeTun struct { events chan TUNEvent mtu int readFn unsafe.Pointer writeFn unsafe.Pointer ctx unsafe.Pointer } func CreateTUN(mtu uint16, readFn unsafe.Pointer, writeFn unsafe.Pointer, ctx unsafe.Pointer) TUNDevice { if mtu == 0 { /* 0 means automatic MTU, which iOS makes outerMTU-80-15. The 80 is for * WireGuard and the 15 ensures our padding will work. Therefore, it's * safe to have this code assume a massive MTU. */ mtu = ^mtu } tun := &nativeTun{ events: make(chan TUNEvent, 10), mtu: int(mtu), readFn: readFn, writeFn: writeFn, ctx: ctx, } tun.events <- TUNEventUp return tun } func (tun *nativeTun) Name() (string, error) { return "tun", nil } func (tun *nativeTun) File() *os.File { return nil } func (tun *nativeTun) Events() chan TUNEvent { return tun.events } func (tun *nativeTun) Read(buff []byte, offset int) (int, error) { ret := C.callFnWithCtx(tun.readFn, tun.ctx, unsafe.Pointer(&buff[offset]), C.size_t(len(buff) - offset)) if ret < 0 { return 0, syscall.Errno(-ret) } return int(ret), nil } func (tun *nativeTun) Write(buff []byte, offset int) (int, error) { ret := C.callFnWithCtx(tun.writeFn, tun.ctx, unsafe.Pointer(&buff[offset]), C.size_t(len(buff) - offset)) if ret < 0 { return 0, syscall.Errno(-ret) } return int(ret), nil } func (tun *nativeTun) Close() error { if tun.events != nil { close(tun.events) } return nil } func (tun *nativeTun) setMTU(n int) error { tun.mtu = n return nil } func (tun *nativeTun) MTU() (int, error) { return tun.mtu, nil }