unsigned i;
 
        while (1) {
-               wait_event(d->go, atomic_read(&d->ready) ||
+               wait_event(d->go, atomic_read_acquire(&d->ready) ||
                                  kthread_should_stop());
                if (kthread_should_stop()) {
                        d->thr = NULL;
-                       atomic_set(&d->stop, 1);
+                       atomic_set_release(&d->stop, 1);
                        wake_up(&d->done);
                        break;
                }
                for (i = 0; i < d->run_threads; i++)
                        *d->crc32 = crc32_le(*d->crc32,
                                             d->unc[i], *d->unc_len[i]);
-               atomic_set(&d->stop, 1);
+               atomic_set_release(&d->stop, 1);
                wake_up(&d->done);
        }
        return 0;
        struct cmp_data *d = data;
 
        while (1) {
-               wait_event(d->go, atomic_read(&d->ready) ||
+               wait_event(d->go, atomic_read_acquire(&d->ready) ||
                                  kthread_should_stop());
                if (kthread_should_stop()) {
                        d->thr = NULL;
                        d->ret = -1;
-                       atomic_set(&d->stop, 1);
+                       atomic_set_release(&d->stop, 1);
                        wake_up(&d->done);
                        break;
                }
                d->ret = lzo1x_1_compress(d->unc, d->unc_len,
                                          d->cmp + LZO_HEADER, &d->cmp_len,
                                          d->wrk);
-               atomic_set(&d->stop, 1);
+               atomic_set_release(&d->stop, 1);
                wake_up(&d->done);
        }
        return 0;
 
                        data[thr].unc_len = off;
 
-                       atomic_set(&data[thr].ready, 1);
+                       atomic_set_release(&data[thr].ready, 1);
                        wake_up(&data[thr].go);
                }
 
                        break;
 
                crc->run_threads = thr;
-               atomic_set(&crc->ready, 1);
+               atomic_set_release(&crc->ready, 1);
                wake_up(&crc->go);
 
                for (run_threads = thr, thr = 0; thr < run_threads; thr++) {
                        wait_event(data[thr].done,
-                                  atomic_read(&data[thr].stop));
+                               atomic_read_acquire(&data[thr].stop));
                        atomic_set(&data[thr].stop, 0);
 
                        ret = data[thr].ret;
                        }
                }
 
-               wait_event(crc->done, atomic_read(&crc->stop));
+               wait_event(crc->done, atomic_read_acquire(&crc->stop));
                atomic_set(&crc->stop, 0);
        }
 
        struct dec_data *d = data;
 
        while (1) {
-               wait_event(d->go, atomic_read(&d->ready) ||
+               wait_event(d->go, atomic_read_acquire(&d->ready) ||
                                  kthread_should_stop());
                if (kthread_should_stop()) {
                        d->thr = NULL;
                        d->ret = -1;
-                       atomic_set(&d->stop, 1);
+                       atomic_set_release(&d->stop, 1);
                        wake_up(&d->done);
                        break;
                }
                        flush_icache_range((unsigned long)d->unc,
                                           (unsigned long)d->unc + d->unc_len);
 
-               atomic_set(&d->stop, 1);
+               atomic_set_release(&d->stop, 1);
                wake_up(&d->done);
        }
        return 0;
                }
 
                if (crc->run_threads) {
-                       wait_event(crc->done, atomic_read(&crc->stop));
+                       wait_event(crc->done, atomic_read_acquire(&crc->stop));
                        atomic_set(&crc->stop, 0);
                        crc->run_threads = 0;
                }
                                        pg = 0;
                        }
 
-                       atomic_set(&data[thr].ready, 1);
+                       atomic_set_release(&data[thr].ready, 1);
                        wake_up(&data[thr].go);
                }
 
 
                for (run_threads = thr, thr = 0; thr < run_threads; thr++) {
                        wait_event(data[thr].done,
-                                  atomic_read(&data[thr].stop));
+                               atomic_read_acquire(&data[thr].stop));
                        atomic_set(&data[thr].stop, 0);
 
                        ret = data[thr].ret;
                                ret = snapshot_write_next(snapshot);
                                if (ret <= 0) {
                                        crc->run_threads = thr + 1;
-                                       atomic_set(&crc->ready, 1);
+                                       atomic_set_release(&crc->ready, 1);
                                        wake_up(&crc->go);
                                        goto out_finish;
                                }
                }
 
                crc->run_threads = thr;
-               atomic_set(&crc->ready, 1);
+               atomic_set_release(&crc->ready, 1);
                wake_up(&crc->go);
        }
 
 out_finish:
        if (crc->run_threads) {
-               wait_event(crc->done, atomic_read(&crc->stop));
+               wait_event(crc->done, atomic_read_acquire(&crc->stop));
                atomic_set(&crc->stop, 0);
        }
        stop = ktime_get();