CORE_SB
regdata = ci->ops->read32(ci->ctx, CORE_SB(core->base, sbidhigh));
address = CORE_SB(core->pub.base, sbtmstatelow);
val = ci->ops->read32(ci->ctx, CORE_SB(base, sbtmstatelow));
val = ci->ops->read32(ci->ctx, CORE_SB(base, sbtmstatelow));
val = ci->ops->read32(ci->ctx, CORE_SB(base, sbtmstatelow));
ci->ops->write32(ci->ctx, CORE_SB(base, sbtmstatelow),
val = ci->ops->read32(ci->ctx, CORE_SB(base, sbtmstatelow));
SPINWAIT((ci->ops->read32(ci->ctx, CORE_SB(base, sbtmstatehigh))
val = ci->ops->read32(ci->ctx, CORE_SB(base, sbtmstatehigh));
val = ci->ops->read32(ci->ctx, CORE_SB(base, sbidlow));
CORE_SB(base, sbimstate));
CORE_SB(base, sbimstate), val);
CORE_SB(base, sbimstate));
CORE_SB(base, sbimstate)) &
ci->ops->write32(ci->ctx, CORE_SB(base, sbtmstatelow), val);
val = ci->ops->read32(ci->ctx, CORE_SB(base, sbtmstatelow));
val = ci->ops->read32(ci->ctx, CORE_SB(base, sbidlow));
CORE_SB(base, sbimstate));
CORE_SB(base, sbimstate), val);
ci->ops->write32(ci->ctx, CORE_SB(base, sbtmstatelow),
ci->ops->write32(ci->ctx, CORE_SB(base, sbtmstatelow),
regdata = ci->ops->read32(ci->ctx, CORE_SB(base, sbtmstatelow));
regdata = ci->ops->read32(ci->ctx, CORE_SB(base, sbtmstatehigh));
ci->ops->write32(ci->ctx, CORE_SB(base, sbtmstatehigh), 0);
regdata = ci->ops->read32(ci->ctx, CORE_SB(base, sbimstate));
ci->ops->write32(ci->ctx, CORE_SB(base, sbimstate), regdata);
ci->ops->write32(ci->ctx, CORE_SB(base, sbtmstatelow),
regdata = ci->ops->read32(ci->ctx, CORE_SB(base, sbtmstatelow));
ci->ops->write32(ci->ctx, CORE_SB(base, sbtmstatelow),
regdata = ci->ops->read32(ci->ctx, CORE_SB(base, sbtmstatelow));