sc_cs
sf.sf_siginfo.si_sc.sc_cs = regs->tf_cs;
if (!is_seg_val(scp->sc_ss) || !is_seg_val(scp->sc_cs))
if (!CS_SECURE(scp->sc_cs)) {
regs->tf_cs = scp->sc_cs;
ASSYM(L_SC_CS, offsetof(struct l_sigcontext, sc_cs));
if (!CS_SECURE(context->sc_cs)) {
p->p_pid, p->p_comm, context->sc_cs);
regs->tf_cs = context->sc_cs;
sf.sf_uc.uc_mcontext.sc_cs = regs->tf_cs;
ASSYM(L_SC_CS, offsetof(struct l_sigcontext, sc_cs));
frame.sf_uc.uc_mcontext.sc_cs = regs->tf_cs;
frame.sf_sc.sc_cs = regs->tf_cs;
if (!CS_SECURE(frame.sf_sc.sc_cs)) {
regs->tf_cs = frame.sf_sc.sc_cs;
if (!CS_SECURE(context->sc_cs)) {
regs->tf_cs = context->sc_cs;
MCSPI_STAT_CH(sc->sc_cs)) & MCSPI_STAT_TXS) == 0) {
TI_SPI_WRITE(sc, MCSPI_TX_CH(sc->sc_cs), data[written]);
MCSPI_STAT_CH(sc->sc_cs)) & MCSPI_STAT_RXS) == 0) {
data[read] = TI_SPI_READ(sc, MCSPI_RX_CH(sc->sc_cs));
sc->sc_cs = cs;
ti_spi_set_clock(sc, sc->sc_cs, clockhz);
reg = TI_SPI_READ(sc, MCSPI_CONF_CH(sc->sc_cs));
TI_SPI_WRITE(sc, MCSPI_CONF_CH(sc->sc_cs), reg);
reg = TI_SPI_READ(sc, MCSPI_CTRL_CH(sc->sc_cs));
TI_SPI_WRITE(sc, MCSPI_CTRL_CH(sc->sc_cs), reg | MCSPI_CTRL_ENABLE);
reg = TI_SPI_READ(sc, MCSPI_CONF_CH(sc->sc_cs));
TI_SPI_WRITE(sc, MCSPI_CONF_CH(sc->sc_cs), reg |= MCSPI_CONF_FORCE);
reg = TI_SPI_READ(sc, MCSPI_CONF_CH(sc->sc_cs));
TI_SPI_WRITE(sc, MCSPI_CONF_CH(sc->sc_cs), reg);
reg = TI_SPI_READ(sc, MCSPI_CTRL_CH(sc->sc_cs));
TI_SPI_WRITE(sc, MCSPI_CTRL_CH(sc->sc_cs), reg);
reg = TI_SPI_READ(sc, MCSPI_CONF_CH(sc->sc_cs));
TI_SPI_WRITE(sc, MCSPI_CONF_CH(sc->sc_cs), reg);
uint32_t sc_cs;
sf.sf_siginfo.si_sc.sc_cs = regs->tf_cs;
if (!CS_SECURE(scp->sc_cs)) {
regs->tf_cs = scp->sc_cs;
int sc_cs;
ASSYM(L_SC_CS, offsetof(struct l_sigcontext, sc_cs));
frame.sf_uc.uc_mcontext.sc_cs = regs->tf_cs;
frame.sf_sc.sc_cs = regs->tf_cs;
if (!CS_SECURE(frame.sf_sc.sc_cs)) {
regs->tf_cs = frame.sf_sc.sc_cs;
if (!CS_SECURE(context->sc_cs)) {
regs->tf_cs = context->sc_cs;
long sc_cs;
int sc_cs;
l_ushort sc_cs;
l_uint sc_cs;