c_data
memcpy(sc->sc_bbuf, cmd->c_data, cmd->c_datalen);
memcpy(cmd->c_data, sc->sc_bbuf, cmd->c_datalen);
cmd.c_data = data;
memcpy(sc->sc_bbuf, cmd->c_data, cmd->c_datalen);
memcpy(cmd->c_data, sc->sc_bbuf, cmd->c_datalen);
memcpy(sc->sc_dmabounce_buf, cmd->c_data, cmd->c_datalen);
memcpy(cmd->c_data, sc->sc_dmabounce_buf, cmd->c_datalen);
cmd->c_opcode, cmd->c_flags, cmd->c_data, cmd->c_datalen,
if (cmd->c_data != NULL && cmd->c_datalen > MAX_TRANSFER_SIZE) {
if (cmd->c_data != NULL && cmd->c_datalen) {
if (cmd->c_datalen > 0 && cmd->c_data != NULL) {
uint32_t *dest = (uint32_t*)cmd->c_data;
uint32_t *dest = (uint32_t*)cmd->c_data;
memcpy(sc->sc_dmabounce_buf, cmd->c_data,
memcpy(cmd->c_data, sc->sc_dmabounce_buf,
cmd->c_opcode, cmd->c_flags, cmd->c_data, cmd->c_datalen,
memcpy(sc->sc_edma_bbuf, cmd->c_data, cmd->c_datalen);
memcpy(cmd->c_data, sc->sc_edma_bbuf, cmd->c_datalen);
device_xname(sc->sc_dev), cmd->c_opcode, cmd->c_arg, cmd->c_data,
&& DMA_ALIGNED(cmd->c_data)) {
cmd->c_buf = cmd->c_data;
&& DMA_ALIGNED(sc->sc_cmd->c_data)) {
&& DMA_ALIGNED(sc->sc_cmd->c_data)) {
&& DMA_ALIGNED(cmd->c_data)) {
tmp.c_data = addr + wd_data;
int c_data;
#define WDC_READ_DATA_STREAM(chp) inw((chp)->c_data)
#define WDC_READ_DATA(chp) inwrb((chp)->c_data)
chp->c_data = (uint16_t *)(cmdreg + wd_data);
volatile uint16_t *c_data;
#define WDC_READ_DATA(chp) *(chp)->c_data
cmd.c_data = data;
cmd.c_data = ptr;
cmd.c_data = ptr;
cmd->c_opcode, cmd->c_arg, cmd->c_data,
if (cmd->c_data && !ISSET(sc->caps, SMC_CAPS_SPI_MODE)) {
void *c_data; /* buffer to send or read into */
if (cmd->c_datalen > 0 && cmd->c_data != NULL) {
uint8_t *dest = (uint8_t*)cmd->c_data;
uint32_t *dest = (uint32_t*)cmd->c_data;
cmd->c_opcode, cmd->c_arg, cmd->c_data, cmd->c_datalen,
uint32_t *p = cmd->c_data;
u_char *data = cmd->c_data;
sdmmc_dump_data(NULL, cmd->c_data, cmd->c_datalen);
u_char *data = cmd->c_data;
sdmmc_dump_data(NULL, cmd->c_data, cmd->c_datalen);
char *data = cmd->c_data;
device_xname(sc->sc_dev), cmd->c_opcode, cmd->c_arg, cmd->c_data,
uint32_t *p = cmd->c_data;
u_char *data = cmd->c_data;
sdmmc_dump_data(NULL, cmd->c_data, cmd->c_datalen);
u_char *data = cmd->c_data;
sdmmc_dump_data(NULL, cmd->c_data, cmd->c_datalen);
u_char *data = cmd->c_data;
chp->c_data = (uint16_t *)(cmdreg + wd_data);
volatile uint16_t *c_data;
#define WDC_READ_DATA(chp) *(chp)->c_data
#define WDC_READ_DATA_STREAM(chp) *(chp)->c_data
bswap16(*(chp)->c_data); \
*(chp)->c_data; \
memcpy(sc->sc_dmabounce_buf, cmd->c_data,
memcpy(cmd->c_data, sc->sc_dmabounce_buf,
cmd->c_opcode, cmd->c_flags, cmd->c_data, cmd->c_datalen,
cmd->c_opcode, cmd->c_flags, cmd->c_data, cmd->c_datalen);
cmd->c_buf = cmd->c_data;
ptr = cmd->c_data;
ptr = cmd->c_data;
if (!read && cmd->c_data != NULL && cmd->c_datalen > 0) {
if (read && cmd->c_data != NULL && cmd->c_datalen > 0)
if (cmd->c_data != NULL && cmd->c_datalen < 512) {
if (cmd->c_data) {
cmd->c_opcode, cmd->c_flags, cmd->c_data, cmd->c_datalen,
cmd->c_buf = cmd->c_data;
device_xname(sc->sc_dev), cmd->c_opcode, cmd->c_arg, cmd->c_data,
if ((uint32_t)cmd->c_data & 0x3) {
if (cmd->c_data &&
if (cmd->c_data != NULL) {
if (cmd->c_error == 0 && cmd->c_data != NULL)
HDEVNAME(hp), cmd->c_opcode, cmd->c_arg, cmd->c_data,
cmd->c_data != NULL) {
uint8_t *data = cmd->c_data;
DEVNAME(sc), cmd->c_opcode, cmd->c_arg, cmd->c_data,
if (cmd->c_data && !ISSET(sc->sc_caps, SMC_CAPS_SPI_MODE)) {
cmd.c_data = datap;
cmd.c_data = ptr;
cmd.c_data = ptr;
cmd.c_data = ptr;
cmd.c_data = ptr;
cmd.c_data = ptr;
cmd.c_data = ptr;
cmd.c_data = data;
cmd.c_data = data;
void *c_data; /* buffer to send or read into */
return (strncmp(fstype, plan->c_data, sizeof(fstype)) == 0);
new->c_data = arg;
return (!fnmatch(plan->c_data, entry->fts_name, 0));
new->c_data = pattern;
return (!fnmatch(plan->c_data, entry->fts_name, FNM_CASEFOLD));
new->c_data = pattern;
return (!fnmatch(plan->c_data, entry->fts_path, 0));
new->c_data = pattern;