supply
extern void supply(struct sockaddr_in *, struct interface *,
supply(from, aifp, OUT_QUERY, 0,
supply(from, aifp, OUT_UNICAST, 0,
supply(&dst, ifp, type, flash, vers, 1);
struct fdtbus_regulator *supply;
supply = fdtbus_regulator_acquire(phandle, "phy-supply");
if (supply != NULL) {
if (fdtbus_regulator_enable(supply) != 0) {
const char *supply = sc->sc_tad->tad_supplies[n];
reg = fdtbus_regulator_acquire(phandle, supply);
aprint_error_dev(self, "couldn't acquire %s\n", supply);
aprint_error_dev(self, "couldn't enable %s\n", supply);
const char *supply = hdmi_supplies[n];
reg = fdtbus_regulator_acquire(hdmi_phandle, supply);
supply);
supply);
#define NETADD(c) { *netoring.supply = (c); ring_supplied(&netoring, 1); }
*ttyoring.supply = c; \
ring->supply = ring->consume = ring->bottom = buffer;
ring->mark = ring_decrement(ring, ring->supply, 1);
ring->supply = ring_increment(ring, ring->supply, count);
ring->consume = ring->supply = ring->bottom;
return ring_subtract(ring, ring->consume, ring->supply);
if ((ring->consume < ring->supply) || ring_empty(ring)) {
return ring_subtract(ring, ring->top, ring->supply);
return ring_subtract(ring, ring->consume, ring->supply);
return ring_subtract(ring, ring->supply, ring->consume);
if ((ring->supply < ring->consume) || ring_full(ring)) {
return ring_subtract(ring, ring->supply, ring->consume);
memmove(ring->supply, buffer, i);
if (ring_empty(ring) || ring->clearto == ring->supply)
s = ring->supply;
ring->clearto = ring->supply;
ring->clearto = ring->supply;
#define ring_empty(d) (((d)->consume == (d)->supply) && \
#define ring_full(d) (((d)->supply == (d)->consume) && \
*supply, /* where data comes in to */
c = recv(net, (char *)netiring.supply, canread, 0);
Dump('<', netiring.supply, c);
c = TerminalRead(ttyiring.supply, ring_empty_consecutive(&ttyiring));
*ttyiring.supply = termEofChar;
Dump('<', ttyiring.supply, c);