UE_ADDR
mask = UE_ADDR;
mask = (UE_DIR_IN | UE_DIR_OUT | UE_ADDR);
if ((type == UE_CONTROL) && ((ep & UE_ADDR) == 0)) {
cfg[0].endpoint = addr & UE_ADDR;
addr = (uhe->desc.bEndpointAddress & UE_ADDR);
cfg[0].endpoint = addr & UE_ADDR;
cfg[0].endpoint = addr & UE_ADDR;
ep_no = (xfer->endpointno & UE_ADDR);
ep_no = (ep->edesc->bEndpointAddress & UE_ADDR);
(ed->bEndpointAddress & UE_ADDR),
ep_no = xfer->endpointno & UE_ADDR;
ep_no = (xfer->endpointno & UE_ADDR);
ep_no = (pipe->edesc->bEndpointAddress & UE_ADDR);
(ed->bEndpointAddress & UE_ADDR),
ep_no = xfer->endpointno & UE_ADDR;
ep_no = xfer->endpointno & UE_ADDR;
ep_no = (xfer->endpointno & UE_ADDR);
uint8_t ep_no = xfer->endpointno & UE_ADDR;
((xfer->endpointno & UE_ADDR) << HCCHAR_EPNUM_SHIFT) |
reg = DOTG_DIEPCTL(ep_no & UE_ADDR);
temp = sc->sc_in_ctl[ep_no & UE_ADDR];
reg = DOTG_DOEPCTL(ep_no & UE_ADDR);
temp = sc->sc_out_ctl[ep_no & UE_ADDR];
sc->sc_active_rx_ep &= ~(1U << (ep_no & UE_ADDR));
(ep_no & UE_ADDR) == GRXSTSRD_CHNUM_GET(
(ed->bEndpointAddress & UE_ADDR),
ep_no = xfer->endpointno & UE_ADDR;
ep_no = (xfer->endpointno & UE_ADDR);
ep_no = (ep->edesc->bEndpointAddress & UE_ADDR);
(ed->bEndpointAddress & UE_ADDR),
ep_no = xfer->endpointno & UE_ADDR;
uint8_t ep_no = (xfer->endpointno & UE_ADDR);
ep_no = (ep->edesc->bEndpointAddress & UE_ADDR);
(ed->bEndpointAddress & UE_ADDR),
ep_no = xfer->endpointno & UE_ADDR;
if ((edesc->bEndpointAddress & UE_ADDR) != 0) {
if ((edesc->bEndpointAddress & UE_ADDR) == 0) {
((((x) & UE_DIR_IN) ? 1 : 0) | (2 * ((x) & UE_ADDR)))
ea = (ted->bEndpointAddress & (UE_ADDR | UE_DIR_IN | UE_DIR_OUT));
ep_no = (ed->bEndpointAddress & UE_ADDR);
#define UE_GET_ADDR(a) ((a) & UE_ADDR)
EA_MASK = (UE_DIR_IN | UE_DIR_OUT | UE_ADDR),
ea_mask |= UE_ADDR;
ea_val |= (setup->endpoint & UE_ADDR);
usb_config[0].endpoint = ed->bEndpointAddress & UE_ADDR;
usb_config[0].endpoint = ed->bEndpointAddress & UE_ADDR;
usb_config[0].endpoint = ed->bEndpointAddress & UE_ADDR;