remainder
size_t remainder;
remainder = fsize;
chunk = (remainder > MMAP_MAX_WRITE) ?
MMAP_MAX_WRITE : remainder;
if (write(to_fd, &p[fsize - remainder],
remainder -= chunk;
} while (remainder > 0);
double remainder(double, double);
#define remainder(a,b) __TG_FN2(remainder, (a), (b))
unsigned i, remainder;
remainder = bin->nregs & ((1 << (SIZEOF_INT_2POW + 3)) - 1);
if (remainder != 0) {
- remainder));
return remainder(x, y);
uintmax_t remainder = numerator - (quotient * denominator);
if (remainder * 2 < denominator)
if (remainder == 0)
numerator = remainder;
DFUNC_DBL_DBL(remainder)
char *remainder;
if ((remainder = strptime(val, "%a, %d %b %Y %T GMT", &tm)) == NULL &&
(remainder = strptime(val, "%a, %d-%b-%y %T GMT", &tm)) == NULL &&
(remainder = strptime(val, "%a %b %d %T %Y", &tm)) == NULL)
if (*remainder)
u_int remainder = sc->sc_freq % div;
if (remainder == 0) {
if (remainder < best_remainder) {
best_remainder = remainder;
btmagic_scale(int delta, int *remainder, int resolution)
delta += *remainder;
*remainder = delta - new * 1300 / resolution;
uint32_t remainder = (uint32_t)((a >= 0) ? a : (-a));
while (divider < remainder) {
if (remainder >= divider) {
remainder -= divider;
while (bit && remainder) {
if (remainder >= divider) {
remainder -= divider;
remainder <<= 1;
if (remainder >= divider) {
int remainder;
remainder = (16 * len) % 22;
if (remainder != 0 && remainder < 7)
int i, remainder;
remainder = (16 * len) % 22;
if (remainder != 0 && remainder < 7)
int remainder, space;
remainder = len;
if (space > remainder)
space = remainder;
cp = cp + space, remainder -= space;
while (remainder > 0) {
n->m_len = uimin(MLEN, remainder);
cp += n->m_len, remainder -= n->m_len;
m0->m_pkthdr.len += len - remainder;
return (remainder == 0);
int remainder;
remainder = (16 * len) % 22;
if (remainder != 0 && remainder < 7)
int remainder;
remainder = (16 * len) % 22;
if (remainder != 0 && remainder < 7)
const int remainder = (16 * totlen) % 22;
if (remainder != 0 && remainder < 7)
const int remainder = (16 * totlen) % 22;
if (remainder != 0 && remainder < 7)
int *remainder)
(sc, (((int) smoothed) - ((int) old_smoothed)), remainder);
scale_motion(const struct uatp_softc *sc, int delta, int *remainder,
delta, *remainder, (delta + (*remainder))));
delta, *remainder,
(((delta + (*remainder)) * ((int) (*multiplier)))
(((delta + (*remainder)) * ((int) (*multiplier)))
delta += *remainder;
*remainder = 0;
*remainder = (product % ((int) (*divisor)));
uatp_scale_motion(const struct uatp_softc *sc, int delta, int *remainder)
return scale_motion(sc, delta, remainder,
uatp_scale_fast_motion(const struct uatp_softc *sc, int delta, int *remainder)
return scale_motion(sc, delta, remainder,
int remainder, space;
remainder = len;
if (space > remainder)
space = remainder;
cp = cp + space, remainder -= space;
while (remainder > 0) {
n->m_len = uimin(MLEN, remainder);
cp += n->m_len, remainder -= n->m_len;
m0->m_pkthdr.len += len - remainder;
return (remainder == 0);
int ack, bitlen, data_dur, remainder;
remainder = (bitlen * 2) % rate;
if (remainder != 0) {
d->d_residue = (rate - remainder) / 16;
u_int fragno, fragsize, off, remainder, payload;
remainder = m0->m_pkthdr.len - off;
fragsize = totalhdrsize + remainder;
remainder -= payload;
} while (remainder != 0);
TEST(remainder(M_PI, M_E));