* Assumes dma lock is held */
static void das1800_flush_dma_channel(struct comedi_device *dev,
struct comedi_subdevice *s,
- unsigned int channel, uint16_t *buffer)
+ struct das1800_dma_desc *dma)
{
struct das1800_private *devpriv = dev->private;
unsigned int nbytes;
unsigned int nsamples;
- disable_dma(channel);
+ disable_dma(dma->chan);
/* clear flip-flop to make sure 2-byte registers
* get set correctly */
- clear_dma_ff(channel);
+ clear_dma_ff(dma->chan);
/* figure out how many points to read */
- nbytes = devpriv->dma_transfer_size - get_dma_residue(channel);
+ nbytes = devpriv->dma_transfer_size - get_dma_residue(dma->chan);
nsamples = comedi_bytes_to_samples(s, nbytes);
nsamples = comedi_nsamples_left(s, nsamples);
- munge_data(dev, buffer, nsamples);
- comedi_buf_write_samples(s, buffer, nsamples);
+ munge_data(dev, dma->virt_addr, nsamples);
+ comedi_buf_write_samples(s, dma->virt_addr, nsamples);
}
/* flushes remaining data from board when external trigger has stopped acquisition
const int dual_dma = devpriv->irq_dma_bits & DMA_DUAL;
flags = claim_dma_lock();
- das1800_flush_dma_channel(dev, s, dma->chan, dma->virt_addr);
+ das1800_flush_dma_channel(dev, s, dma);
if (dual_dma) {
/* switch to other channel and flush it */
devpriv->cur_dma = 1 - devpriv->cur_dma;
dma = &devpriv->dma_desc[devpriv->cur_dma];
- das1800_flush_dma_channel(dev, s, dma->chan, dma->virt_addr);
+ das1800_flush_dma_channel(dev, s, dma);
}
release_dma_lock(flags);
const int dual_dma = devpriv->irq_dma_bits & DMA_DUAL;
flags = claim_dma_lock();
- das1800_flush_dma_channel(dev, s, dma->chan, dma->virt_addr);
+ das1800_flush_dma_channel(dev, s, dma);
/* re-enable dma channel */
set_dma_addr(dma->chan, dma->hw_addr);
set_dma_count(dma->chan, devpriv->dma_transfer_size);