memset(mem, 0, 0x1000 * nthreads * pages_per_thread);
count = get_dirty_pages_reset(mem, nthreads * pages_per_thread, 1, page_size);
- ksft_test_result(count > 0, "%s count %d\n", __func__, count);
+ ksft_test_result(count > 0, "%s count %u\n", __func__, count);
count = get_dirty_pages_reset(mem, nthreads * pages_per_thread, 1, page_size);
- ksft_test_result(count == 0, "%s count %d\n", __func__, count);
+ ksft_test_result(count == 0, "%s count %u\n", __func__, count);
finish = 0;
for (i = 0; i < nthreads; ++i)
ksft_exit_fail_msg("pthread_barrier_wait\n");
if (count > nthreads * access_per_thread)
- ksft_exit_fail_msg("Too big count %d expected %d, iter %d\n",
+ ksft_exit_fail_msg("Too big count %u expected %u, iter %u\n",
count, nthreads * access_per_thread, i);
c = get_dirty_pages_reset(mem, nthreads * pages_per_thread, 1, page_size);
* access and application gets page fault again for the same write.
*/
if (count < nthreads * access_per_thread) {
- ksft_test_result_fail("Lost update, iter %d, %d vs %d.\n", i, count,
+ ksft_test_result_fail("Lost update, iter %u, %u vs %u.\n", i, count,
nthreads * access_per_thread);
return;
}
finish = 1;
pthread_barrier_wait(&end_barrier);
- ksft_test_result_pass("%s Extra pages %u (%.1lf%%), extra thread faults %d.\n", __func__,
+ ksft_test_result_pass("%s Extra pages %u (%.1lf%%), extra thread faults %u.\n", __func__,
extra_pages,
100.0 * extra_pages / (iter_count * nthreads * access_per_thread),
extra_thread_faults);