refactoring to send signal
This commit is contained in:
@ -804,19 +804,26 @@ do_kill(struct thread *thread, int pid, int tid, int sig, siginfo_t *info,
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int ptracecont)
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{
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dkprintf("do_kill,pid=%d,tid=%d,sig=%d\n", pid, tid, sig);
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struct cpu_local_var *v;
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struct thread *t;
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struct process *tproc;
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struct process *proc = thread? thread->proc: NULL;
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struct thread *tthread = NULL;
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int i;
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__sigset_t mask;
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struct list_head *head;
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ihk_spinlock_t *savelock = NULL;
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struct list_head *head = NULL;
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int rc;
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unsigned long irqstate = 0;
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struct k_sigaction *k;
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int doint;
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ihk_spinlock_t *savelock = NULL;
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int found = 0;
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siginfo_t info0;
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struct resource_set *rset = cpu_local_var(resource_set);
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int hash;
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struct thread_hash *thash = rset->thread_hash;
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struct process_hash *phash = rset->process_hash;
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struct mcs_rwlock_node lock;
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struct mcs_rwlock_node updatelock;
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if(sig > 64 || sig < 0)
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return -EINVAL;
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@ -829,10 +836,11 @@ do_kill(struct thread *thread, int pid, int tid, int sig, siginfo_t *info,
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}
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if(tid == -1 && pid <= 0){
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struct process *p;
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struct mcs_rwlock_node_irqsave slock;
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int pgid = -pid;
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int rc = -ESRCH;
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int *pids;
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int i;
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int n = 0;
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int sendme = 0;
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@ -844,30 +852,21 @@ do_kill(struct thread *thread, int pid, int tid, int sig, siginfo_t *info,
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pids = kmalloc(sizeof(int) * num_processors, IHK_MC_AP_NOWAIT);
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if(!pids)
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return -ENOMEM;
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for(i = 0; i < num_processors; i++){
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v = get_cpu_local_var(i);
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irqstate = ihk_mc_spinlock_lock(&(v->runq_lock));
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list_for_each_entry(t, &(v->runq), sched_list){
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int j;
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for(i = 0; i < HASH_SIZE; i++){
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mcs_rwlock_reader_lock(&phash->lock[i], &slock);
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list_for_each_entry(p, &phash->list[i], hash_list){
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if(pgid != 1 && p->pgid != pgid)
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continue;
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if(t->proc->pid <= 0)
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continue;
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if(pgid != 1 && t->proc->pgid != pgid)
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continue;
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if(thread && t->proc->pid == thread->proc->pid){
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if(thread && p->pid == thread->proc->pid){
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sendme = 1;
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continue;
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}
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for(j = 0; j < n; j++)
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if(pids[j] == t->proc->pid)
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break;
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if(j == n){
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pids[n] = t->proc->pid;
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n++;
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}
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pids[n] = p->pid;
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n++;
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}
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ihk_mc_spinlock_unlock(&(v->runq_lock), irqstate);
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mcs_rwlock_reader_unlock(&phash->lock[i], &slock);
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}
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for(i = 0; i < n; i++)
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rc = do_kill(thread, pids[i], -1, sig, info, ptracecont);
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@ -877,130 +876,132 @@ do_kill(struct thread *thread, int pid, int tid, int sig, siginfo_t *info,
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kfree(pids);
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return rc;
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}
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irqstate = cpu_disable_interrupt_save();
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mask = __sigmask(sig);
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if(tid == -1){
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struct thread *tthread0 = NULL;
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ihk_spinlock_t *savelock0 = NULL;
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struct mcs_rwlock_node plock;
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struct mcs_rwlock_node updatelock;
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for(i = 0; i < num_processors; i++){
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v = get_cpu_local_var(i);
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found = 0;
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ihk_mc_spinlock_lock_noirq(&(v->runq_lock));
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list_for_each_entry(t, &(v->runq), sched_list){
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if(t->proc->pid == pid){
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if(t->tid == pid || tthread == NULL){
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if(!(mask & t->sigmask.__val[0])){
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tthread = t;
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if(!found && savelock) {
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ihk_mc_spinlock_unlock_noirq(savelock);
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}
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found = 1;
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savelock = &(v->runq_lock);
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if(savelock0 && savelock0 != savelock){
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ihk_mc_spinlock_unlock_noirq(savelock0);
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savelock0 = NULL;
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}
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}
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else if(tthread == NULL && tthread0 == NULL){
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tthread0 = t;
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found = 1;
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savelock0 = &(v->runq_lock);
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}
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}
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if(!(mask & t->sigmask.__val[0])){
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if(t->tid == pid || tthread == NULL){
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}
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}
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}
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found = 0;
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hash = process_hash(pid);
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mcs_rwlock_reader_lock_noirq(&phash->lock[hash], &plock);
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list_for_each_entry(tproc, &phash->list[hash], hash_list){
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if(tproc->pid == pid){
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found = 1;
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break;
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}
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if(!found) {
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ihk_mc_spinlock_unlock_noirq(&(v->runq_lock));
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}
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if(!found){
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mcs_rwlock_reader_unlock_noirq(&phash->lock[hash], &plock);
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cpu_restore_interrupt(irqstate);
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return -ESRCH;
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}
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mcs_rwlock_reader_lock_noirq(&tproc->update_lock, &updatelock);
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if(tproc->pstatus == PS_EXITED || tproc->pstatus == PS_ZOMBIE){
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goto done;
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}
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mcs_rwlock_reader_lock_noirq(&tproc->threads_lock, &lock);
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list_for_each_entry(t, &tproc->threads_list, siblings_list){
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if(t->tid == pid || tthread == NULL){
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if(t->tstatus == PS_EXITED){
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continue;
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}
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if(!(mask & t->sigmask.__val[0])){
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tthread = t;
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found = 1;
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}
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else if(tthread == NULL && tthread0 == NULL){
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tthread0 = t;
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found = 1;
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}
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}
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}
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if(tthread == NULL){
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tthread = tthread0;
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savelock = savelock0;
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}
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}
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else if(pid == -1){
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for(i = 0; i < num_processors; i++){
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v = get_cpu_local_var(i);
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found = 0;
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ihk_mc_spinlock_lock_noirq(&(v->runq_lock));
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list_for_each_entry(t, &(v->runq), sched_list){
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if(t->proc->pid > 0 &&
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t->tid == tid){
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savelock = &(v->runq_lock);
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found = 1;
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tthread = t;
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break;
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}
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}
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if(!found)
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ihk_mc_spinlock_unlock_noirq(&(v->runq_lock));
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if(tthread && tthread->tstatus != PS_EXITED){
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savelock = &tthread->sigcommon->lock;
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head = &tthread->sigcommon->sigpending;
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hold_thread(tthread);
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}
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else
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tthread = NULL;
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mcs_rwlock_reader_unlock_noirq(&tproc->threads_lock, &lock);
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done:
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mcs_rwlock_reader_unlock_noirq(&tproc->update_lock, &updatelock);
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mcs_rwlock_reader_unlock_noirq(&phash->lock[hash], &plock);
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}
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else{
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for(i = 0; i < num_processors; i++){
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v = get_cpu_local_var(i);
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found = 0;
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ihk_mc_spinlock_lock_noirq(&(v->runq_lock));
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list_for_each_entry(t, &(v->runq), sched_list){
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if(t->proc->pid == pid &&
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t->tid == tid){
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savelock = &(v->runq_lock);
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found = 1;
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tthread = t;
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break;
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}
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found = 0;
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hash = thread_hash(tid);
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mcs_rwlock_reader_lock_noirq(&thash->lock[hash], &lock);
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list_for_each_entry(tthread, &thash->list[hash], hash_list){
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if(pid != -1 && tthread->proc->pid != pid){
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continue;
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}
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if(found)
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if(tthread->tid == tid){
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found = 1;
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break;
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ihk_mc_spinlock_unlock_noirq(&(v->runq_lock));
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}
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}
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if(!found){
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mcs_rwlock_reader_unlock_noirq(&thash->lock[hash], &lock);
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cpu_restore_interrupt(irqstate);
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return -ESRCH;
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}
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tproc = tthread->proc;
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mcs_rwlock_reader_lock_noirq(&tproc->update_lock, &updatelock);
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savelock = &tthread->sigpendinglock;
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head = &tthread->sigpending;
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if(sig == SIGKILL ||
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(tproc->pstatus != PS_EXITED &&
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tproc->pstatus != PS_ZOMBIE &&
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tthread->tstatus != PS_EXITED)){
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hold_thread(tthread);
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}
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else{
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tthread = NULL;
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}
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mcs_rwlock_reader_unlock_noirq(&tproc->update_lock, &updatelock);
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mcs_rwlock_reader_unlock_noirq(&thash->lock[hash], &lock);
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}
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if(!tthread){
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cpu_restore_interrupt(irqstate);
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return -ESRCH;
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}
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if(sig != SIGCONT &&
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thread &&
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thread->proc->euid != 0 &&
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thread->proc->ruid != tthread->proc->ruid &&
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thread->proc->euid != tthread->proc->ruid &&
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thread->proc->ruid != tthread->proc->suid &&
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thread->proc->euid != tthread->proc->suid){
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ihk_mc_spinlock_unlock_noirq(savelock);
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proc &&
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proc->euid != 0 &&
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proc->ruid != tproc->ruid &&
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proc->euid != tproc->ruid &&
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proc->ruid != tproc->suid &&
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proc->euid != tproc->suid){
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if(tthread)
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release_thread(tthread);
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cpu_restore_interrupt(irqstate);
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return -EPERM;
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}
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if(sig == 0){
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ihk_mc_spinlock_unlock_noirq(savelock);
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if(sig == 0 || tthread == NULL || tthread->tstatus == PS_EXITED){
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if(tthread)
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release_thread(tthread);
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cpu_restore_interrupt(irqstate);
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return 0;
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}
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doint = 0;
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if(tid == -1){
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ihk_mc_spinlock_lock_noirq(&tthread->sigcommon->lock);
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head = &tthread->sigcommon->sigpending;
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}
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else{
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ihk_mc_spinlock_lock_noirq(&tthread->sigpendinglock);
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head = &tthread->sigpending;
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}
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ihk_mc_spinlock_lock_noirq(savelock);
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/* Put signal event even when handler is SIG_IGN or SIG_DFL
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because target ptraced thread must call ptrace_report_signal
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in check_signal */
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rc = 0;
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k = tthread->sigcommon->action + sig - 1;
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if((sig != SIGKILL && (tthread->proc->ptrace & PT_TRACED)) ||
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if((sig != SIGKILL && (tproc->ptrace & PT_TRACED)) ||
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(k->sa.sa_handler != (void *)1 &&
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(k->sa.sa_handler != NULL ||
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(sig != SIGCHLD && sig != SIGURG)))){
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@ -1032,27 +1033,20 @@ do_kill(struct thread *thread, int pid, int tid, int sig, siginfo_t *info,
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}
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}
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}
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if(tid == -1){
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ihk_mc_spinlock_unlock_noirq(&tthread->sigcommon->lock);
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}
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else{
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ihk_mc_spinlock_unlock_noirq(&tthread->sigpendinglock);
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}
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ihk_mc_spinlock_unlock_noirq(savelock);
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cpu_restore_interrupt(irqstate);
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if (doint && !(mask & tthread->sigmask.__val[0])) {
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int cpuid = tthread->cpu_id;
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int pid = tthread->proc->pid;
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int pid = tproc->pid;
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int status = tthread->tstatus;
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if (thread != tthread) {
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dkprintf("do_kill,ipi,pid=%d,cpu_id=%d\n",
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tthread->proc->pid, tthread->cpu_id);
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tproc->pid, tthread->cpu_id);
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ihk_mc_interrupt_cpu(get_x86_cpu_local_variable(tthread->cpu_id)->apic_id, 0xd0);
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}
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ihk_mc_spinlock_unlock_noirq(savelock);
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cpu_restore_interrupt(irqstate);
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if(!tthread->proc->nohost)
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interrupt_syscall(pid, cpuid);
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@ -1067,10 +1061,7 @@ do_kill(struct thread *thread, int pid, int tid, int sig, siginfo_t *info,
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}
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}
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}
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else {
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ihk_mc_spinlock_unlock_noirq(savelock);
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cpu_restore_interrupt(irqstate);
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}
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release_thread(tthread);
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return rc;
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}
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@ -2090,7 +2090,7 @@ out:
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void hold_thread(struct thread *thread)
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{
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if (thread->proc->pstatus & (PS_ZOMBIE | PS_EXITED)) {
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if (thread->tstatus == PS_EXITED) {
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panic("hold_thread: already exited process");
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}
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@ -2130,15 +2130,15 @@ void destroy_thread(struct thread *thread)
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struct resource_set *resource_set = cpu_local_var(resource_set);
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int hash;
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mcs_rwlock_writer_lock(&proc->threads_lock, &lock);
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list_del(&thread->siblings_list);
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mcs_rwlock_writer_unlock(&proc->threads_lock, &lock);
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hash = thread_hash(thread->tid);
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mcs_rwlock_writer_lock(&resource_set->thread_hash->lock[hash], &lock);
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list_del(&thread->hash_list);
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mcs_rwlock_writer_unlock(&resource_set->thread_hash->lock[hash], &lock);
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mcs_rwlock_writer_lock(&proc->threads_lock, &lock);
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list_del(&thread->siblings_list);
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mcs_rwlock_writer_unlock(&proc->threads_lock, &lock);
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cpu_clear(thread->cpu_id, &thread->vm->cpu_set, &thread->vm->cpu_set_lock);
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list_for_each_entry_safe(pending, signext, &thread->sigpending, list){
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list_del(&pending->list);
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@ -2801,7 +2801,7 @@ find_thread(int pid, int tid, struct mcs_rwlock_node_irqsave *lock)
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if(thread->tid == tid){
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if(pid <= 0)
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return thread;
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if(pid == thread->proc->pid)
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if(thread->proc->pid == pid)
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return thread;
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}
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}
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@ -2833,8 +2833,7 @@ find_process(int pid, struct mcs_rwlock_node_irqsave *lock)
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mcs_rwlock_reader_lock(&phash->lock[hash], lock);
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list_for_each_entry(proc, &phash->list[hash], hash_list){
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if(proc->pid == pid){
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if(pid == proc->pid)
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return proc;
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return proc;
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}
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}
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mcs_rwlock_reader_unlock(&phash->lock[hash], lock);
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@ -606,6 +606,7 @@ terminate(int rc, int sig)
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do_kill(mythread, proc->pid, ids[i], SIGKILL, NULL, 0);
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}
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kfree(ids);
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ids = NULL;
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}
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mcs_rwlock_reader_unlock(&proc->threads_lock, &lock);
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@ -3527,7 +3528,14 @@ SYSCALL_DECLARE(exit)
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FUTEX_WAKE, 1, 0, NULL, 0, 0);
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}
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mcs_rwlock_reader_lock(&proc->threads_lock, &lock);
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if(proc->pstatus == PS_EXITED){
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mcs_rwlock_reader_unlock(&proc->threads_lock, &lock);
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terminate(exit_status, 0);
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return 0;
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}
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thread->tstatus = PS_EXITED;
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mcs_rwlock_reader_unlock(&proc->threads_lock, &lock);
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release_thread(thread);
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schedule();
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