ktime_compare
if (ktime_compare(now, expire) >= 0)
(ktime_compare(fence->timestamp, first_cs_time) < 0))
(ktime_compare(first_cs_time, max_ktime) != 0))
if (ktime_compare(ktime_get(), timeout) > 0) {
if (timeout_us && ktime_compare(ktime_get(), __timeout) > 0) { \
if (timeout_us && ktime_compare(ktime_get(), __timeout) > 0) \
if (timeout_us && ktime_compare(ktime_get(), __timeout) > 0) { \
if (ktime_compare(hdev->clk_throttling.timestamp[i].end, zero_time))
if (timeout_us && ktime_compare(ktime_get(), __timeout) > 0) \
if (ktime_compare(ktime_get(), timeout) > 0) {
if (ktime_compare(ktime_get(), timeout) > 0) {
if (ktime_compare(ktime_get(), timeout) > 0) {
ktime_compare(deleted_ws.max_time, ws->max_time) > 0 ?
if (drm_WARN_ON(crtc->dev, !ktime_compare(*vblank_time, cur_time)))
if (ktime_compare(ktime_get(), timeout) > 0)
return ktime_compare(*a, *b);
return ktime_compare(*a, *b);
if (timeout_us && ktime_compare(ktime_get(), timeout) > 0)
if (ktime_compare(dpu_crtc->vblank_cb_time, ktime_set(0, 0)) == 0)
ktime_compare(ktime_sub((A), (B)), ktime_set(0, 0))
if (ktime_compare(*timeout, now) <= 0)
ktime_compare(ktime_get(), timeout) < 0) {
ktime_compare(ktime_get(), timeout) < 0) {
while (ktime_compare(ktime_get(), timeout) < 0) {
if (ktime_compare(ktime_get(), timeout) > 0) {
if (!ktime_compare(dev->timestamp[INPUT_CLK_MONO], invalid_timestamp))
} while (ktime_compare(ktime_get(), irq_timeout) < 0);
} while (ktime_compare(ktime_get(), ati_timeout) < 0);
if (ktime_compare(zero_time, timestamp) >= 0)
KUNIT_ASSERT_EQ(test, ktime_compare(time, invalid_timestamp), 1);
KUNIT_ASSERT_EQ(test, ktime_compare(timestamp[INPUT_CLK_MONO], time), 0);
if (ktime_compare(ktime_get(), qp->timeout) > 0)
if (ktime_compare(ktime_get(), timeout) > 0) {
if (ktime_compare(ktime_get(), timeout) > 0)
if (ktime_compare(ktime_get(), timeout) > 0) {
if (ktime_compare(now, target) >= 0)
if (ktime_compare(now, target) >= 0)
if (ktime_compare(delkt, ktime_set(15, 0)) > 0) {
if (ktime_compare(ktime_get(), timeout) > 0)
if (ktime_compare(ktime_get(), timeout) > 0) {
if (ktime_compare(ktime_get(), timeout) > 0) {
timed_out = ktime_compare(ktime_get(), timeout) > 0;
if (ktime_compare(current_time, base_time) > 0) {
if (unlikely(ktime_compare(phc->system_time, zero_system_time))) {
if (ktime_compare(txtime, end_of_cycle) >= 0) {
if (ktime_compare(end_of_cycle, ring->last_tx_cycle) > 0)
if (ktime_compare(systim, base_time) > 0) {
if (ktime_compare(now, start))
if (ktime_compare(now, start))
(ktime_compare(alsa_stream->interpolate_start, now) < 0)) {
if (ktime_compare(now, ci->hr_timeouts[cur_timer]) >= 0) {
if (ktime_compare(now, fotg210->hr_timeouts[e]) >= 0)
if (ktime_compare(now, ehci->hr_timeouts[e]) >= 0)
ktime_compare(ktime_get(), __timeout) > 0; \
return ktime_compare(cmp1, cmp2) > 0;
return ktime_compare(cmp1, cmp2) < 0;
ktime_compare(ktime_get(), __timeout) > 0) { \
ktime_compare(iowq->min_timeout, iowq->timeout) >= 0)
while (ktime_compare(now, next_abs_period) > 0) {
} while (ktime_compare(end_time, spin_until) < 0);
else if (ktime_compare(pkt_dev->next_tx, best->next_tx) < 0)
ktime_compare(time_to_pkt,
if (ktime_compare(txtime, skb->tstamp) >= 0) {
if (ktime_compare(entry->end_time, oper->cycle_end_time) == 0)
if (ktime_compare(next_base_time, end_time) <= 0)
if (ktime_compare(next_base_time, extension_time) <= 0)
ktime_compare(ktime_get(), __timeout) > 0) { \