/****************************************************************************/
/****************************************************************************/
+struct ddb_irq *ddb_irq_set(struct ddb *dev, u32 link, u32 nr,
+ void (*handler)(void *), void *data)
+{
+ struct ddb_irq *irq = &dev->link[link].irq[nr];
+
+ irq->handler = handler;
+ irq->data = data;
+ return irq;
+}
+
static void ddb_set_dma_table(struct ddb_io *io)
{
struct ddb *dev = io->port->dev;
spin_unlock_irqrestore(&dma->lock, flags);
}
-static void input_handler(unsigned long data)
+static void input_handler(void *data)
{
struct ddb_input *input = (struct ddb_input *)data;
struct ddb_dma *dma = input->dma;
- /*
- * If there is no input connected, input_tasklet() will
- * just copy pointers and ACK. So, there is no need to go
- * through the tasklet scheduler.
- */
- if (input->redi)
- queue_work(ddb_wq, &dma->work);
- else
- input_work(&dma->work);
+ queue_work(ddb_wq, &dma->work);
}
-static void output_handler(unsigned long data)
+static void output_work(struct work_struct *work)
{
- struct ddb_output *output = (struct ddb_output *)data;
- struct ddb_dma *dma = output->dma;
+ struct ddb_dma *dma = container_of(work, struct ddb_dma, work);
+ struct ddb_output *output = (struct ddb_output *)dma->io;
struct ddb *dev = output->port->dev;
spin_lock(&dma->lock);
spin_unlock(&dma->lock);
}
+static void output_handler(void *data)
+{
+ struct ddb_output *output = (struct ddb_output *)data;
+ struct ddb_dma *dma = output->dma;
+
+ queue_work(ddb_wq, &dma->work);
+}
+
/****************************************************************************/
/****************************************************************************/
spin_lock_init(&dma->lock);
init_waitqueue_head(&dma->wq);
if (out) {
+ INIT_WORK(&dma->work, output_work);
dma->regs = rm->odma->base + rm->odma->size * nr;
dma->bufregs = rm->odma_buf->base + rm->odma_buf->size * nr;
dma->num = OUTPUT_DMA_BUFS;
dev_dbg(dev->dev, "init link %u, input %u, handler %u\n",
port->lnr, nr, dma_nr + base);
- dev->handler[0][dma_nr + base] = input_handler;
- dev->handler_data[0][dma_nr + base] = (unsigned long)input;
+ ddb_irq_set(dev, 0, dma_nr + base, &input_handler, input);
ddb_dma_init(input, dma_nr, 0);
}
}
const struct ddb_regmap *rm0 = io_regmap(output, 0);
u32 base = rm0->irq_base_odma;
- dev->handler[0][nr + base] = output_handler;
- dev->handler_data[0][nr + base] = (unsigned long)output;
+ ddb_irq_set(dev, 0, nr + base, &output_handler, output);
ddb_dma_init(output, nr, 1);
}
}
/****************************************************************************/
#define IRQ_HANDLE(_nr) \
- do { if ((s & (1UL << ((_nr) & 0x1f))) && dev->handler[0][_nr]) \
- dev->handler[0][_nr](dev->handler_data[0][_nr]); } \
+ do { if ((s & (1UL << ((_nr) & 0x1f))) && \
+ dev->link[0].irq[_nr].handler) \
+ dev->link[0].irq[_nr].handler(dev->link[0].irq[_nr].data); } \
while (0)
static void irq_handle_msg(struct ddb *dev, u32 s)
ddblwritel(link, (pwm << 8), TEMPMON_FANCONTROL);
}
-static void temp_handler(unsigned long data)
+static void temp_handler(void *data)
{
struct ddb_link *link = (struct ddb_link *)data;
memcpy(link->temp_tab, temperature_table,
sizeof(temperature_table));
}
- dev->handler[l][link->info->tempmon_irq] = temp_handler;
- dev->handler_data[l][link->info->tempmon_irq] = (unsigned long)link;
+ ddb_irq_set(dev, l, link->info->tempmon_irq, temp_handler, link);
ddblwritel(link, (TEMPMON_CONTROL_OVERTEMP | TEMPMON_CONTROL_AUTOSCAN |
TEMPMON_CONTROL_INTENABLE),
TEMPMON_CONTROL);