return tpci200;
}
+static void __tpci200_clear_mask(__le16 __iomem *addr, u16 mask)
+{
+ iowrite16(ioread16(addr) & (~mask), addr);
+}
+
+static void tpci200_clear_mask(struct tpci200_board *tpci200,
+ __le16 __iomem *addr, u16 mask)
+{
+ mutex_lock(&tpci200->mutex);
+ __tpci200_clear_mask(addr, mask);
+ mutex_unlock(&tpci200->mutex);
+}
+
+static void __tpci200_set_mask(__le16 __iomem *addr, u16 mask)
+{
+ iowrite16(ioread16(addr) | mask, addr);
+}
+
+static void tpci200_set_mask(struct tpci200_board *tpci200,
+ __le16 __iomem *addr, u16 mask)
+{
+ mutex_lock(&tpci200->mutex);
+ __tpci200_set_mask(addr, mask);
+ mutex_unlock(&tpci200->mutex);
+}
+
static void tpci200_unregister(struct tpci200_board *tpci200)
{
int i;
{
struct tpci200_board *tpci200 = (struct tpci200_board *) dev_id;
int i;
- unsigned short status_reg, reg_value;
+ unsigned short status_reg;
unsigned short unhandled_ints = 0;
irqreturn_t ret = IRQ_NONE;
struct slot_irq *slot_irq;
dev_info(&slot_irq->holder->dev,
"No registered ISR for slot [%d:%d]!. IRQ will be disabled.\n",
tpci200->number, i);
- reg_value = readw(
- &tpci200->info->interface_regs->control[i]);
- reg_value &=
- ~(TPCI200_INT0_EN | TPCI200_INT1_EN);
- writew(reg_value,
- &tpci200->info->interface_regs->control[i]);
+ __tpci200_clear_mask(
+ &tpci200->info->interface_regs->control[i],
+ TPCI200_INT0_EN | TPCI200_INT1_EN);
}
}
}
{
struct tpci200_board *tpci200 = check_slot(dev);
u16 __iomem *addr;
- u16 reg;
if (!tpci200)
return -ENODEV;
addr = &tpci200->info->interface_regs->control[dev->slot];
- /* Ensure the control register is not changed by another task after we
- * have read it. */
- mutex_lock(&tpci200->mutex);
- reg = ioread16(addr);
switch (mherz) {
case 8:
- reg &= ~(TPCI200_CLK32);
+ tpci200_clear_mask(tpci200, addr, TPCI200_CLK32);
break;
case 32:
- reg |= TPCI200_CLK32;
+ tpci200_set_mask(tpci200, addr, TPCI200_CLK32);
break;
default:
- mutex_unlock(&tpci200->mutex);
return -EINVAL;
}
- iowrite16(reg, addr);
- mutex_unlock(&tpci200->mutex);
return 0;
}