segment
pxe_p = (pxe_t *)PTOV(pxenv_p->PXEPtr.segment * 16 +
pxe_p->EntryPointSP.segment,
pxenv_p->RMEntry.segment, pxenv_p->RMEntry.offset);
bcopy(PTOV((gci_p->Buffer.segment << 4) + gci_p->Buffer.offset),
__pxenvseg = pxenv_p->RMEntry.segment;
__bangpxeseg = pxe_p->EntryPointSP.segment;
udpwrite_p->buffer.segment = VTOPSEG(pkt);
udpread_p->buffer.segment = VTOPSEG(data_buffer);
uint16_t segment;
u_int8_t segment;
sense_data->segment = 0;
sense_data->segment = 0;
u_short segment = 0;
while (datalen && (segment < MAX_SCATTER)) {
segment,
phys->data[segment].addr = segaddr;
phys->data[segment].size = segsize;
segment++;
return (segment);
sense_data->segment = 0;
sense_data->segment = 0;
reg = adev->reg_offset[entry->hwip][entry->instance][entry->segment] + entry->reg;
u32 segment;
dm_write_reg_func(ctx, reg + DCE_BASE.instance[0].segment[reg##_BASE_IDX] + inst_offset, value, __func__)
dm_read_reg_func(ctx, reg + DCE_BASE.instance[0].segment[reg##_BASE_IDX] + inst_offset, __func__)
generic_reg_update_ex(ctx, DCE_BASE.instance[0].segment[mm##reg_name##_BASE_IDX] + mm##reg_name + inst_offset, \
dm_read_reg_func(ctx, mm##reg_name + DCE_BASE.instance[0].segment[mm##reg_name##_BASE_IDX] + inst_offset, __func__), \
generic_reg_update_ex(ctx, DCE_BASE.instance[0].segment[mm##reg_name##_BASE_IDX] + mm##reg_name + inst_offset, 0, \
int32_t segment;
for (segment = 6; segment > (6 - NUM_REGIONS); segment--) {
seg_offset = (segment + (NUM_REGIONS - 7)) * NUM_PTS_IN_REGION;
unsigned int segment[MAX_SEGMENT];
unsigned int segment[MAX_SEGMENT];
unsigned char segment = block >> 1;
unsigned char xfers = segment ? 3 : 2;
.buf = &segment,
int segment, ntries = 0;
segment = 0;
++segment;
if (segment >= FXP_NTXSEG)
if (segment >= FXP_NTXSEG) {
for (m = mb_head, segment = 0; m != NULL; m = m->m_next) {
KKASSERT(segment < FXP_NTXSEG);
txp->tbd[segment].tb_addr =
txp->tbd[segment].tb_size = m->m_len;
segment++;
txp->tbd_number = segment;
vm_offset_t segment;
segment = FONT_BUF + 0x4000*page;
segment -= 0xe000;
bcopy_fromio((uintptr_t)segment + ch*32, data, fontsize*count);
bcopy_fromio((uintptr_t)segment + c*32, data, fontsize);
vm_offset_t segment;
segment = FONT_BUF + 0x4000*page;
segment -= 0xe000;
bcopy_toio(data, (uintptr_t)segment + ch*32, fontsize*count);
bcopy_toio(data, (uintptr_t)segment + c*32, fontsize);
#define SHIFTIN(segment, byte, dlci) \
(dlci) <<= (segment)->width; \
(((byte) & (segment)->mask) >> (segment)->shift); \
#define SHIFTOUT(segment, byte, dlci) \
(byte) |= (((dlci) << (segment)->shift) & (segment)->mask); \
(dlci) >>= (segment)->width; \
char *segment;
for (segment = cp; *cp != '\0'; cp++) {
if (*segment == '\0')
hook = ng_findhook(node, segment);
#define SHIFTIN(segment, byte, dlci) \
(dlci) <<= (segment)->width; \
(((byte) & (segment)->mask) >> (segment)->shift); \
#define SHIFTOUT(segment, byte, dlci) \
(byte) |= (((dlci) << (segment)->shift) & (segment)->mask); \
(dlci) >>= (segment)->width; \
char *segment;
for (segment = cp; *cp != '\0'; cp++) {
if (*segment == '\0')
hook = ng_findhook(node, segment);
segment,
u_int8_t segment; /* segment number */
uint16_t segment;
readEntry( &segment, sizeof(segment) );
if ( segment ) { /* search EBDA */
target = (vm_offset_t)segment << 4;
readEntry( &segment, sizeof(segment) );
--segment; /* less ONE_KBYTE */
target = segment * 1024;
target, segment );
LIST_ENTRY(segment) _next;
struct segment *s, *last, *end;
struct segment *s;
static struct segment *
struct segment *new, *prev, *s;
if ((new = calloc(1, sizeof(struct segment))) == NULL)
struct segment *start, *end, *s;
LIST_HEAD(gen_sc, segment) rtsc, lssc;
static struct segment *gsc_getentry(struct gen_sc *, double);