struct driver_data *drv_data = dev_id;
        struct chip_data *chip = drv_data->cur_chip;
        struct spi_message *msg = drv_data->cur_msg;
+       unsigned short dmastat = get_dma_curr_irqstat(drv_data->dma_channel);
        u16 spistat = read_STAT(drv_data);
 
-       dev_dbg(&drv_data->pdev->dev, "in dma_irq_handler\n");
+       dev_dbg(&drv_data->pdev->dev,
+               "in dma_irq_handler dmastat:0x%x spistat:0x%x\n",
+               dmastat, spistat);
+
        clear_dma_irqstat(drv_data->dma_channel);
 
        /* Wait for DMA to complete */
 
         /* Handle for abort */
        if (message->state == ERROR_STATE) {
+               dev_dbg(&drv_data->pdev->dev, "transfer: we've hit an error\n");
                message->status = -EIO;
                giveback(drv_data);
                return;
 
        /* Handle end of message */
        if (message->state == DONE_STATE) {
+               dev_dbg(&drv_data->pdev->dev, "transfer: all done!\n");
                message->status = 0;
                giveback(drv_data);
                return;
 
        /* Delay if requested at end of transfer */
        if (message->state == RUNNING_STATE) {
+               dev_dbg(&drv_data->pdev->dev, "transfer: still running ...\n");
                previous = list_entry(transfer->transfer_list.prev,
                                      struct spi_transfer, transfer_list);
                if (previous->delay_usecs)
                dma_config = (RESTART | dma_width | DI_EN);
                if (drv_data->rx != NULL) {
                        /* set transfer mode, and enable SPI */
-                       dev_dbg(&drv_data->pdev->dev, "doing DMA in.\n");
+                       dev_dbg(&drv_data->pdev->dev, "doing DMA in to %p (size %zx)\n",
+                               drv_data->rx, drv_data->len_in_bytes);
 
                        /* invalidate caches, if needed */
                        if (bfin_addr_dcachable((unsigned long) drv_data->rx))