ffs32
return ffs32((uint32_t)mask);
return ffs32((uint32_t)x);
while ((bit = ffs32(pending)) != 0) {
while ((bit = ffs32(status)) != 0) {
while ((bit = ffs32(pend)) != 0) {
while ((bit = ffs32(status)) != 0) {
const int crtc_index = ffs32(sc->sc_encoder.base.possible_crtcs) - 1;
const int crtc_index = ffs32(sc->sc_encoder.base.possible_crtcs) - 1;
const int crtc_index = ffs32(sc->sc_encoder.base.possible_crtcs) - 1;
while ((bit = ffs32(status)) != 0) {
bit = ffs32(irql);
bit = ffs32(irql);
bit = ffs32(irqh);
bit = ffs32(irqh);
irq = ffs32(pend) - 1;
irq = 32 + ffs32(pend) - 1;
irq = ffs32(pend) - 1;
irq = ffs32(pend) - 1;
p = ffs32(mask);
avail = ffs32(chq->queue_xfers_avail & mask);
#define ffsl(v) ffs32(v)
#define ffsl(v) ffs32(v)
while ((i = ffs32(estat)) != 0) {
num = ffs32(intrs) - 1;
ha = ffs32(spi_present_mask) - 1;
bit = ffs32(bitmap[i]);
#ifndef ffs32
ATF_CHECK_EQ_MSG((n = ffs32(0)), 0x00, "n=%d", n);
ATF_CHECK_EQ_MSG((n = ffs32(UINT32_MAX)), 0x01, "n=%d", n);
ATF_CHECK_EQ_MSG((n = ffs32((uint32_t)1 << i)), i + 1,
ATF_CHECK_EQ_MSG((n = ffs32(bits[i].val)), (m = bits[i].ffs),
ATF_CHECK_EQ_MSG((n = ffs32(bits[i].val << 1)),
ATF_CHECK_EQ_MSG((n = ffs32(bits[i].val << 9)),