state 56 kernel/proc.c p->state = UNUSED; state 116 kernel/proc.c if (p->state == UNUSED) { state 126 kernel/proc.c p->state = USED; state 170 kernel/proc.c p->state = UNUSED; state 228 kernel/proc.c p->state = RUNNABLE; state 301 kernel/proc.c np->state = RUNNABLE; state 358 kernel/proc.c p->state = ZOMBIE; state 387 kernel/proc.c if (pp->state == ZOMBIE) { state 447 kernel/proc.c if (p->state == RUNNABLE) { state 451 kernel/proc.c p->state = RUNNING; state 489 kernel/proc.c if (p->state == RUNNING) state 505 kernel/proc.c p->state = RUNNABLE; state 568 kernel/proc.c p->state = SLEEPING; state 589 kernel/proc.c if (p->state == SLEEPING) { state 590 kernel/proc.c p->state = RUNNABLE; state 612 kernel/proc.c if (p->state == SLEEPING) { state 614 kernel/proc.c p->state = RUNNABLE; state 690 kernel/proc.c char *state; state 694 kernel/proc.c if (p->state == UNUSED) state 696 kernel/proc.c if (p->state >= 0 && p->state < NELEM(states) && states[p->state]) state 697 kernel/proc.c state = states[p->state]; state 699 kernel/proc.c state = "???"; state 700 kernel/proc.c printk("%d %s %s", p->pid, state, p->name); state 86 kernel/proc.h enum procstate state; // Process state state 56 user/printf.c int c0, c1, c2, i, state; state 58 user/printf.c state = 0; state 61 user/printf.c if (state == 0) { state 63 user/printf.c state = '%'; state 67 user/printf.c } else if (state == '%') { state 114 user/printf.c state = 0;