xv6-lab/kernel/sysproc.c
2023-01-25 15:47:02 +00:00

119 lines
1.5 KiB
C

#include "types.h"
#include "riscv.h"
#include "defs.h"
#include "param.h"
#include "memlayout.h"
#include "spinlock.h"
#include "proc.h"
uint64
sys_exit(void)
{
int n;
argint(0, &n);
exit(n);
return 0; // not reached
}
uint64
sys_getpid(void)
{
return myproc()->pid;
}
uint64
sys_fork(void)
{
return fork();
}
uint64
sys_wait(void)
{
uint64 p;
argaddr(0, &p);
return wait(p);
}
uint64
sys_sbrk(void)
{
uint64 addr;
int n;
argint(0, &n);
addr = myproc()->sz;
if(growproc(n) < 0)
return -1;
return addr;
}
uint64
sys_sleep(void)
{
int n;
uint ticks0;
argint(0, &n);
if(n < 0)
n = 0;
backtrace();
acquire(&tickslock);
ticks0 = ticks;
while(ticks - ticks0 < n){
if(killed(myproc())){
release(&tickslock);
return -1;
}
sleep(&ticks, &tickslock);
}
release(&tickslock);
return 0;
}
uint64
sys_kill(void)
{
int pid;
argint(0, &pid);
return kill(pid);
}
// return how many clock tick interrupts have occurred
// since start.
uint64
sys_uptime(void)
{
uint xticks;
acquire(&tickslock);
xticks = ticks;
release(&tickslock);
return xticks;
}
uint64
sys_sigalarm(void)
{
int interval;
uint64 hdlr;
argint(0, &interval);
argaddr(1, &hdlr);
struct proc* p = myproc();
p->alarm_ticks = 0;
p->alarm_intrv = interval;
p->alarm_hdlr = hdlr;
return 0;
}
uint64
sys_sigreturn(void)
{
struct proc* p = myproc();
memmove(p->trapframe, p->trapframe1, sizeof(struct trapframe));
p->alarm_ticks = 0;
return p->trapframe->a0;
}