
The kernel now bills processes for time spent in kernelspace and userspace separately. The accounting is forwarded to the parent process in reap(). This makes the "time" builtin in bash work.
197 lines
6.9 KiB
C++
197 lines
6.9 KiB
C++
#include "i386.h"
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#include "Process.h"
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#include "Syscall.h"
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#include "Console.h"
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#include "Scheduler.h"
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extern "C" void syscall_entry(RegisterDump&);
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extern "C" void syscall_ISR();
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extern volatile RegisterDump* syscallRegDump;
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asm(
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".globl syscall_ISR \n"
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"syscall_ISR:\n"
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" pusha\n"
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" pushw %ds\n"
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" pushw %es\n"
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" pushw %fs\n"
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" pushw %gs\n"
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" pushw %ss\n"
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" pushw %ss\n"
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" pushw %ss\n"
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" pushw %ss\n"
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" pushw %ss\n"
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" popw %ds\n"
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" popw %es\n"
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" popw %fs\n"
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" popw %gs\n"
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" mov %esp, %eax\n"
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" call syscall_entry\n"
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" popw %gs\n"
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" popw %gs\n"
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" popw %fs\n"
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" popw %es\n"
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" popw %ds\n"
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" popa\n"
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" iret\n"
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);
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namespace Syscall {
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void initialize()
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{
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register_user_callable_interrupt_handler(0x80, syscall_ISR);
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kprintf("syscall: int 0x80 handler installed\n");
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}
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static dword handle(RegisterDump& regs, dword function, dword arg1, dword arg2, dword arg3)
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{
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ASSERT_INTERRUPTS_ENABLED();
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switch (function) {
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case Syscall::SC_yield:
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Scheduler::yield();
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break;
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case Syscall::SC_putch:
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Console::the().putChar(arg1 & 0xff);
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break;
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case Syscall::SC_sleep:
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return current->sys$sleep((unsigned)arg1);
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case Syscall::SC_gettimeofday:
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return current->sys$gettimeofday((timeval*)arg1);
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case Syscall::SC_get_dir_entries:
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return current->sys$get_dir_entries((int)arg1, (void*)arg2, (size_t)arg3);
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case Syscall::SC_lstat:
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return current->sys$lstat((const char*)arg1, (Unix::stat*)arg2);
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case Syscall::SC_stat:
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return current->sys$stat((const char*)arg1, (Unix::stat*)arg2);
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case Syscall::SC_getcwd:
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return current->sys$getcwd((char*)arg1, (size_t)arg2);
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case Syscall::SC_open:
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return current->sys$open((const char*)arg1, (int)arg2);
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case Syscall::SC_write:
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return current->sys$write((int)arg1, (const void*)arg2, (size_t)arg3);
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case Syscall::SC_close:
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//kprintf("syscall: close(%d)\n", arg1);
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return current->sys$close((int)arg1);
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case Syscall::SC_read:
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//kprintf("syscall: read(%d, %p, %u)\n", arg1, arg2, arg3);
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return current->sys$read((int)arg1, (void*)arg2, (size_t)arg3);
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case Syscall::SC_lseek:
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return current->sys$lseek((int)arg1, (off_t)arg2, (int)arg3);
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case Syscall::SC_kill:
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return current->sys$kill((pid_t)arg1, (int)arg2);
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case Syscall::SC_getuid:
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return current->sys$getuid();
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case Syscall::SC_getgid:
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return current->sys$getgid();
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case Syscall::SC_getpid:
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return current->sys$getpid();
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case Syscall::SC_getppid:
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return current->sys$getppid();
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case Syscall::SC_waitpid:
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return current->sys$waitpid((pid_t)arg1, (int*)arg2, (int)arg3);
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case Syscall::SC_mmap:
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return (dword)current->sys$mmap((const SC_mmap_params*)arg1);
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case Syscall::SC_munmap:
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return current->sys$munmap((void*)arg1, (size_t)arg2);
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case Syscall::SC_gethostname:
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return current->sys$gethostname((char*)arg1, (size_t)arg2);
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case Syscall::SC_exit:
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cli();
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current->sys$exit((int)arg1);
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ASSERT_NOT_REACHED();
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return 0;
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case Syscall::SC_get_arguments:
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return current->sys$get_arguments((int*)arg1, (char***)arg2);
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case Syscall::SC_get_environment:
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return current->sys$get_environment((char***)arg1);
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case Syscall::SC_chdir:
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return current->sys$chdir((const char*)arg1);
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case Syscall::SC_uname:
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return current->sys$uname((utsname*)arg1);
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case Syscall::SC_set_mmap_name:
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return current->sys$set_mmap_name((void*)arg1, (size_t)arg2, (const char*)arg3);
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case Syscall::SC_readlink:
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return current->sys$readlink((const char*)arg1, (char*)arg2, (size_t)arg3);
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case Syscall::SC_ttyname_r:
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return current->sys$ttyname_r((int)arg1, (char*)arg2, (size_t)arg3);
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case Syscall::SC_setsid:
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return current->sys$setsid();
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case Syscall::SC_getsid:
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return current->sys$getsid((pid_t)arg1);
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case Syscall::SC_setpgid:
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return current->sys$setpgid((pid_t)arg1, (pid_t)arg2);
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case Syscall::SC_getpgid:
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return current->sys$getpgid((pid_t)arg1);
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case Syscall::SC_getpgrp:
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return current->sys$getpgrp();
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case Syscall::SC_fork:
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return current->sys$fork(regs);
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case Syscall::SC_execve:
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return current->sys$execve((const char*)arg1, (const char**)arg2, (const char**)arg3);
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case Syscall::SC_geteuid:
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return current->sys$geteuid();
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case Syscall::SC_getegid:
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return current->sys$getegid();
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case Syscall::SC_isatty:
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return current->sys$isatty((int)arg1);
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case Syscall::SC_getdtablesize:
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return current->sys$getdtablesize();
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case Syscall::SC_dup:
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return current->sys$dup((int)arg1);
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case Syscall::SC_dup2:
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return current->sys$dup2((int)arg1, (int)arg2);
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case Syscall::SC_sigaction:
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return current->sys$sigaction((int)arg1, (const Unix::sigaction*)arg2, (Unix::sigaction*)arg3);
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case Syscall::SC_umask:
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return current->sys$umask((mode_t)arg1);
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case Syscall::SC_getgroups:
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return current->sys$getgroups((int)arg1, (gid_t*)arg2);
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case Syscall::SC_setgroups:
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return current->sys$setgroups((size_t)arg1, (const gid_t*)arg2);
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case Syscall::SC_sigreturn:
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current->sys$sigreturn();
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ASSERT_NOT_REACHED();
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return 0;
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case Syscall::SC_sigprocmask:
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return current->sys$sigprocmask((int)arg1, (const Unix::sigset_t*)arg2, (Unix::sigset_t*)arg3);
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case Syscall::SC_pipe:
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return current->sys$pipe((int*)arg1);
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case Syscall::SC_killpg:
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return current->sys$killpg((int)arg1, (int)arg2);
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case Syscall::SC_setuid:
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return current->sys$setuid((uid_t)arg1);
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case Syscall::SC_setgid:
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return current->sys$setgid((gid_t)arg1);
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case Syscall::SC_alarm:
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return current->sys$alarm((unsigned)arg1);
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case Syscall::SC_access:
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return current->sys$access((const char*)arg1, (int)arg2);
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case Syscall::SC_fcntl:
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return current->sys$fcntl((int)arg1, (int)arg2, (dword)arg3);
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case Syscall::SC_ioctl:
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return current->sys$ioctl((int)arg1, (unsigned)arg2, (unsigned)arg3);
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case Syscall::SC_fstat:
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return current->sys$fstat((int)arg1, (Unix::stat*)arg2);
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case Syscall::SC_mkdir:
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return current->sys$mkdir((const char*)arg1, (mode_t)arg2);
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case Syscall::SC_times:
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return current->sys$times((Unix::tms*)arg1);
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default:
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kprintf("<%u> int0x80: Unknown function %u requested {%x, %x, %x}\n", current->pid(), function, arg1, arg2, arg3);
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break;
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}
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return 0;
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}
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}
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void syscall_entry(RegisterDump& regs)
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{
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dword function = regs.eax;
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dword arg1 = regs.edx;
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dword arg2 = regs.ecx;
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dword arg3 = regs.ebx;
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regs.eax = Syscall::handle(regs, function, arg1, arg2, arg3);
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}
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