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;