fls32
shift = 8 - fls32(__SHIFTOUT_MASK(mix->mask));
shift = 8 - fls32(__SHIFTOUT_MASK(mix->mask));
shift = 8 - fls32(__SHIFTOUT_MASK(mix->mask));
shift = 8 - fls32(__SHIFTOUT_MASK(mix->mask));
shift = 8 - fls32(__SHIFTOUT_MASK(mix->mask));
shift = 8 - fls32(__SHIFTOUT_MASK(mix->mask));
shift = 8 - fls32(__SHIFTOUT_MASK(mix->mask));
shift = 8 - fls32(__SHIFTOUT_MASK(mix->mask));
shift = 8 - fls32(__SHIFTOUT_MASK(mix->mask));
shift = 8 - fls32(__SHIFTOUT_MASK(mix->mask));
while ((irqno = fls32(irqbits) - 1) >= 0) {
(irqno = fls32(pending) - 1) >= 0;
while ((irqno = fls32(sc->sc_intr_pending) - 1) >= 0) {
while ((irqno = fls32(sc->sc_obio_intr_pending) - 1) >= 0) {
while ((i = fls32(intstat.lo) - 1) >= 0) {
while ((i = fls32(intstat.hi) - 1) >= 0) {
return fls32(info->PixelInformation.RedMask
current_blkshift = fls32(current_blkbytes) - 9;
shift = 8 - fls32(__SHIFTOUT_MASK(mix->mask[ch]));
shift = 8 - fls32(__SHIFTOUT_MASK(mix->mask[ch]));
sc->sc_row_shift = fls32(sc->sc_cols) - 1;
n = 1U << (fls32(val) - 1);
n = 1U << (fls32(val) - 1);
(1U << (fls32(sc->sc_rx_ring_ndescs) - 1)));
(1U << (fls32(sc->sc_tx_ring_ndescs) - 1)));
return (1U << (fls32(n) - 1));
bit = fls32(factor);
#ifndef fls32
((sizeof(_n) > 4 ? fls64(_n) : fls32(_n)) - 1) \
_l = fls32(_div - 1);
ATF_CHECK_EQ_MSG((n = fls32(0)), 0x00, "n=%d", n);
ATF_CHECK_EQ_MSG((n = fls32(UINT32_MAX)), 0x20, "n=%d", n);
ATF_CHECK_EQ_MSG((n = fls32(bits[i].val)), (m = bits[i].fls),
ATF_CHECK_EQ_MSG((n = fls32(bits[i].val << 1)),
ATF_CHECK_EQ_MSG((n = fls32(bits[i].val << 9)),