mirror of
https://github.com/LadybirdBrowser/ladybird.git
synced 2024-11-14 11:54:53 +03:00
84725ef3a5
This returns ENOSYS if you are running in the real kernel, and some other result if you are running in UserspaceEmulator. There are other ways we could check if we're inside an emulator, but it seemed easier to just ask. :^)
513 lines
13 KiB
C++
513 lines
13 KiB
C++
/*
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* Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice, this
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* list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form must reproduce the above copyright notice,
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* this list of conditions and the following disclaimer in the documentation
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* and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
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* SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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* CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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* OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#pragma once
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#include <AK/Types.h>
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#include <AK/Userspace.h>
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#ifdef __serenity__
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# include <LibC/fd_set.h>
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#endif
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constexpr int syscall_vector = 0x82;
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extern "C" {
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struct pollfd;
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struct timeval;
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struct timespec;
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struct sockaddr;
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struct siginfo;
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struct stat;
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typedef u32 socklen_t;
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}
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namespace Kernel {
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#define ENUMERATE_SYSCALLS(S) \
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S(yield) \
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S(open) \
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S(close) \
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S(read) \
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S(lseek) \
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S(kill) \
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S(getuid) \
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S(exit) \
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S(geteuid) \
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S(getegid) \
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S(getgid) \
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S(getpid) \
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S(getppid) \
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S(getresuid) \
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S(getresgid) \
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S(waitid) \
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S(mmap) \
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S(munmap) \
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S(get_dir_entries) \
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S(getcwd) \
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S(gettimeofday) \
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S(gethostname) \
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S(sethostname) \
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S(chdir) \
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S(uname) \
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S(set_mmap_name) \
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S(readlink) \
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S(write) \
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S(ttyname) \
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S(stat) \
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S(getsid) \
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S(setsid) \
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S(getpgid) \
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S(setpgid) \
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S(getpgrp) \
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S(fork) \
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S(execve) \
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S(dup2) \
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S(sigaction) \
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S(umask) \
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S(getgroups) \
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S(setgroups) \
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S(sigreturn) \
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S(sigprocmask) \
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S(sigpending) \
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S(pipe) \
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S(killpg) \
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S(seteuid) \
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S(setegid) \
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S(setuid) \
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S(setgid) \
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S(setresuid) \
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S(setresgid) \
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S(alarm) \
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S(fstat) \
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S(access) \
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S(fcntl) \
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S(ioctl) \
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S(mkdir) \
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S(times) \
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S(utime) \
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S(sync) \
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S(ptsname) \
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S(select) \
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S(unlink) \
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S(poll) \
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S(rmdir) \
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S(chmod) \
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S(socket) \
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S(bind) \
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S(accept) \
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S(listen) \
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S(connect) \
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S(link) \
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S(chown) \
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S(fchmod) \
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S(symlink) \
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S(sendmsg) \
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S(recvmsg) \
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S(getsockopt) \
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S(setsockopt) \
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S(create_thread) \
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S(gettid) \
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S(donate) \
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S(rename) \
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S(ftruncate) \
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S(exit_thread) \
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S(mknod) \
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S(writev) \
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S(beep) \
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S(getsockname) \
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S(getpeername) \
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S(sched_setparam) \
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S(sched_getparam) \
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S(fchown) \
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S(halt) \
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S(reboot) \
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S(mount) \
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S(umount) \
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S(dump_backtrace) \
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S(dbgputch) \
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S(dbgputstr) \
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S(watch_file) \
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S(mprotect) \
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S(realpath) \
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S(get_process_name) \
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S(fchdir) \
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S(getrandom) \
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S(getkeymap) \
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S(setkeymap) \
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S(clock_gettime) \
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S(clock_settime) \
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S(clock_nanosleep) \
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S(join_thread) \
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S(module_load) \
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S(module_unload) \
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S(detach_thread) \
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S(set_thread_name) \
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S(get_thread_name) \
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S(madvise) \
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S(purge) \
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S(profiling_enable) \
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S(profiling_disable) \
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S(futex) \
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S(chroot) \
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S(pledge) \
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S(unveil) \
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S(perf_event) \
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S(shutdown) \
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S(get_stack_bounds) \
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S(ptrace) \
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S(sendfd) \
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S(recvfd) \
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S(sysconf) \
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S(set_process_name) \
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S(disown) \
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S(adjtime) \
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S(allocate_tls) \
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S(prctl) \
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S(mremap) \
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S(set_coredump_metadata) \
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S(abort) \
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S(anon_create) \
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S(msyscall) \
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S(readv) \
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S(emuctl)
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namespace Syscall {
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enum Function {
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#undef __ENUMERATE_SYSCALL
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#define __ENUMERATE_SYSCALL(x) SC_##x,
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ENUMERATE_SYSCALLS(__ENUMERATE_SYSCALL)
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#undef __ENUMERATE_SYSCALL
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__Count
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};
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constexpr const char* to_string(Function function)
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{
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switch (function) {
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#undef __ENUMERATE_SYSCALL
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#define __ENUMERATE_SYSCALL(x) \
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case SC_##x: \
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return #x;
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ENUMERATE_SYSCALLS(__ENUMERATE_SYSCALL)
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#undef __ENUMERATE_SYSCALL
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default:
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break;
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}
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return "Unknown";
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}
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#ifdef __serenity__
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struct StringArgument {
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const char* characters;
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size_t length { 0 };
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};
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template<typename DataType, typename SizeType>
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struct MutableBufferArgument {
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DataType* data { nullptr };
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SizeType size { 0 };
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};
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struct StringListArgument {
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StringArgument* strings {};
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size_t length { 0 };
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};
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struct SC_mmap_params {
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uintptr_t addr;
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size_t size;
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size_t alignment;
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int32_t prot;
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int32_t flags;
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int32_t fd;
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ssize_t offset;
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StringArgument name;
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};
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struct SC_mremap_params {
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uintptr_t old_address;
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size_t old_size;
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size_t new_size;
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int32_t flags;
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};
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struct SC_open_params {
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int dirfd;
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StringArgument path;
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int options;
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u16 mode;
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};
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struct SC_select_params {
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int nfds;
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fd_set* readfds;
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fd_set* writefds;
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fd_set* exceptfds;
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const struct timespec* timeout;
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const u32* sigmask;
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};
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struct SC_poll_params {
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struct pollfd* fds;
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unsigned nfds;
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const struct timespec* timeout;
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const u32* sigmask;
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};
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struct SC_clock_nanosleep_params {
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int clock_id;
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int flags;
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const struct timespec* requested_sleep;
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struct timespec* remaining_sleep;
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};
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struct SC_getsockopt_params {
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int sockfd;
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int level;
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int option;
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void* value;
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socklen_t* value_size;
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};
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struct SC_setsockopt_params {
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int sockfd;
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int level;
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int option;
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const void* value;
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socklen_t value_size;
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};
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struct SC_getsockname_params {
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int sockfd;
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sockaddr* addr;
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socklen_t* addrlen;
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};
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struct SC_getpeername_params {
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int sockfd;
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sockaddr* addr;
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socklen_t* addrlen;
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};
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struct SC_futex_params {
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u32* userspace_address;
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int futex_op;
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u32 val;
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union {
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const timespec* timeout;
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uintptr_t val2;
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};
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u32* userspace_address2;
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u32 val3;
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};
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struct SC_setkeymap_params {
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const u32* map;
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const u32* shift_map;
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const u32* alt_map;
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const u32* altgr_map;
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const u32* shift_altgr_map;
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StringArgument map_name;
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};
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struct SC_getkeymap_params {
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u32* map;
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u32* shift_map;
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u32* alt_map;
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u32* altgr_map;
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u32* shift_altgr_map;
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MutableBufferArgument<char, size_t> map_name;
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};
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struct SC_create_thread_params {
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unsigned int m_detach_state = 0; // JOINABLE or DETACHED
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int m_schedule_priority = 30; // THREAD_PRIORITY_NORMAL
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// FIXME: Implement guard pages in create_thread (unreadable pages at "overflow" end of stack)
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// "If an implementation rounds up the value of guardsize to a multiple of {PAGESIZE},
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// a call to pthread_attr_getguardsize() specifying attr shall store in the guardsize
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// parameter the guard size specified by the previous pthread_attr_setguardsize() function call"
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// ... ok, if you say so posix. Guess we get to lie to people about guard page size
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unsigned int m_guard_page_size = 0; // Rounded up to PAGE_SIZE
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unsigned int m_reported_guard_page_size = 0; // The lie we tell callers
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unsigned int m_stack_size = 4 * MiB; // Default PTHREAD_STACK_MIN
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void* m_stack_location; // nullptr means any, o.w. process virtual address
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};
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struct SC_realpath_params {
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StringArgument path;
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MutableBufferArgument<char, size_t> buffer;
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};
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struct SC_set_mmap_name_params {
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void* addr;
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size_t size;
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StringArgument name;
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};
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struct SC_execve_params {
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StringArgument path;
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StringListArgument arguments;
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StringListArgument environment;
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};
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struct SC_readlink_params {
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StringArgument path;
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MutableBufferArgument<char, size_t> buffer;
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};
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struct SC_link_params {
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StringArgument old_path;
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StringArgument new_path;
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};
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struct SC_chown_params {
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StringArgument path;
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u32 uid;
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u32 gid;
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};
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struct SC_mknod_params {
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StringArgument path;
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u16 mode;
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u32 dev;
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};
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struct SC_symlink_params {
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StringArgument target;
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StringArgument linkpath;
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};
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struct SC_rename_params {
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StringArgument old_path;
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StringArgument new_path;
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};
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struct SC_mount_params {
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int source_fd;
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StringArgument target;
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StringArgument fs_type;
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int flags;
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};
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struct SC_pledge_params {
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StringArgument promises;
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StringArgument execpromises;
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};
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struct SC_unveil_params {
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StringArgument path;
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StringArgument permissions;
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};
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struct SC_waitid_params {
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int idtype;
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int id;
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struct siginfo* infop;
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int options;
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};
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struct SC_stat_params {
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StringArgument path;
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struct stat* statbuf;
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int follow_symlinks;
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};
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struct SC_ptrace_params {
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int request;
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pid_t tid;
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u8* addr;
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int data;
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};
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struct SC_ptrace_peek_params {
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const u32* address;
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u32* out_data;
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};
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struct SC_set_coredump_metadata_params {
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StringArgument key;
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StringArgument value;
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};
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void initialize();
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int sync();
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inline uintptr_t invoke(Function function)
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{
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uintptr_t result;
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asm volatile("int $0x82"
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: "=a"(result)
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: "a"(function)
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: "memory");
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return result;
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}
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template<typename T1>
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inline uintptr_t invoke(Function function, T1 arg1)
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{
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uintptr_t result;
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asm volatile("int $0x82"
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: "=a"(result)
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: "a"(function), "d"((uintptr_t)arg1)
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: "memory");
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return result;
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}
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template<typename T1, typename T2>
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inline uintptr_t invoke(Function function, T1 arg1, T2 arg2)
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{
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uintptr_t result;
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asm volatile("int $0x82"
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: "=a"(result)
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: "a"(function), "d"((uintptr_t)arg1), "c"((uintptr_t)arg2)
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: "memory");
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return result;
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}
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template<typename T1, typename T2, typename T3>
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inline uintptr_t invoke(Function function, T1 arg1, T2 arg2, T3 arg3)
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{
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uintptr_t result;
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asm volatile("int $0x82"
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: "=a"(result)
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: "a"(function), "d"((uintptr_t)arg1), "c"((uintptr_t)arg2), "b"((uintptr_t)arg3)
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: "memory");
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return result;
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}
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#endif
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}
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#undef __ENUMERATE_SYSCALL
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#define __ENUMERATE_SYSCALL(x) using Syscall::SC_##x;
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ENUMERATE_SYSCALLS(__ENUMERATE_SYSCALL)
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#undef __ENUMERATE_SYSCALL
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}
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using namespace Kernel;
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