#include <linux/intel_mid_dma.h>
#include <linux/module.h>
+#include "dmaengine.h"
+
#define MAX_CHAN 4 /*max ch across controllers*/
#include "intel_mid_dma_regs.h"
struct intel_mid_dma_lli *llitem;
void *param_txd = NULL;
- midc->completed = txd->cookie;
+ dma_cookie_complete(txd);
callback_txd = txd->callback;
param_txd = txd->callback_param;
dma_cookie_t cookie;
spin_lock_bh(&midc->lock);
- cookie = midc->chan.cookie;
-
- if (++cookie < 0)
- cookie = 1;
-
- midc->chan.cookie = cookie;
- desc->txd.cookie = cookie;
-
+ cookie = dma_cookie_assign(tx);
if (list_empty(&midc->active_list))
list_add_tail(&desc->desc_node, &midc->active_list);
dma_cookie_t cookie,
struct dma_tx_state *txstate)
{
- struct intel_mid_dma_chan *midc = to_intel_mid_dma_chan(chan);
- dma_cookie_t last_used;
- dma_cookie_t last_complete;
- int ret;
-
- last_complete = midc->completed;
- last_used = chan->cookie;
+ struct intel_mid_dma_chan *midc = to_intel_mid_dma_chan(chan);
+ enum dma_status ret;
- ret = dma_async_is_complete(cookie, last_complete, last_used);
+ ret = dma_cookie_status(chan, cookie, txstate);
if (ret != DMA_SUCCESS) {
spin_lock_bh(&midc->lock);
midc_scan_descriptors(to_middma_device(chan->device), midc);
spin_unlock_bh(&midc->lock);
- last_complete = midc->completed;
- last_used = chan->cookie;
-
- ret = dma_async_is_complete(cookie, last_complete, last_used);
+ ret = dma_cookie_status(chan, cookie, txstate);
}
- if (txstate) {
- txstate->last = last_complete;
- txstate->used = last_used;
- txstate->residue = 0;
- }
return ret;
}
* @sg_len: length of sg txn
* @direction: DMA transfer dirtn
* @flags: DMA flags
+ * @context: transfer context (ignored)
*
* Prepares LLI based periphral transfer
*/
static struct dma_async_tx_descriptor *intel_mid_dma_prep_slave_sg(
struct dma_chan *chan, struct scatterlist *sgl,
unsigned int sg_len, enum dma_transfer_direction direction,
- unsigned long flags)
+ unsigned long flags, void *context)
{
struct intel_mid_dma_chan *midc = NULL;
struct intel_mid_dma_slave *mids = NULL;
/*trying to free ch in use!!!!!*/
pr_err("ERR_MDMA: trying to free ch in use\n");
}
- pm_runtime_put(&mid->pdev->dev);
spin_lock_bh(&midc->lock);
midc->descs_allocated = 0;
list_for_each_entry_safe(desc, _desc, &midc->active_list, desc_node) {
/* Disable CH interrupts */
iowrite32(MASK_INTR_REG(midc->ch_id), mid->dma_base + MASK_BLOCK);
iowrite32(MASK_INTR_REG(midc->ch_id), mid->dma_base + MASK_ERR);
+ pm_runtime_put(&mid->pdev->dev);
}
/**
pm_runtime_get_sync(&mid->pdev->dev);
if (mid->state == SUSPENDED) {
- if (dma_resume(mid->pdev)) {
+ if (dma_resume(&mid->pdev->dev)) {
pr_err("ERR_MDMA: resume failed");
return -EFAULT;
}
pm_runtime_put(&mid->pdev->dev);
return -EIO;
}
- midc->completed = chan->cookie = 1;
+ dma_cookie_init(chan);
spin_lock_bh(&midc->lock);
while (midc->descs_allocated < DESCS_PER_CHANNEL) {
}
err_status &= mid->intr_mask;
if (err_status) {
- iowrite32(MASK_INTR_REG(err_status), mid->dma_base + MASK_ERR);
+ iowrite32((err_status << INT_MASK_WE),
+ mid->dma_base + MASK_ERR);
call_tasklet = 1;
}
if (call_tasklet)
LNW_PERIPHRAL_MASK_SIZE);
if (dma->mask_reg == NULL) {
pr_err("ERR_MDMA:Can't map periphral intr space !!\n");
- return -ENOMEM;
+ err = -ENOMEM;
+ goto err_ioremap;
}
} else
dma->mask_reg = NULL;
struct intel_mid_dma_chan *midch = &dma->ch[i];
midch->chan.device = &dma->common;
- midch->chan.cookie = 1;
+ dma_cookie_init(&midch->chan);
midch->ch_id = dma->chan_base + i;
pr_debug("MDMA:Init CH %d, ID %d\n", i, midch->ch_id);
err_engine:
free_irq(pdev->irq, dma);
err_irq:
+ if (dma->mask_reg)
+ iounmap(dma->mask_reg);
+err_ioremap:
pci_pool_destroy(dma->dma_pool);
err_dma_pool:
pr_err("ERR_MDMA:setup_dma failed: %d\n", err);
*
* This function is called by OS when a power event occurs
*/
-int dma_suspend(struct pci_dev *pci, pm_message_t state)
+static int dma_suspend(struct device *dev)
{
+ struct pci_dev *pci = to_pci_dev(dev);
int i;
struct middma_device *device = pci_get_drvdata(pci);
pr_debug("MDMA: dma_suspend called\n");
*
* This function is called by OS when a power event occurs
*/
-int dma_resume(struct pci_dev *pci)
+int dma_resume(struct device *dev)
{
+ struct pci_dev *pci = to_pci_dev(dev);
int ret;
struct middma_device *device = pci_get_drvdata(pci);
.runtime_suspend = dma_runtime_suspend,
.runtime_resume = dma_runtime_resume,
.runtime_idle = dma_runtime_idle,
+ .suspend = dma_suspend,
+ .resume = dma_resume,
};
static struct pci_driver intel_mid_dma_pci_driver = {
.probe = intel_mid_dma_probe,
.remove = __devexit_p(intel_mid_dma_remove),
#ifdef CONFIG_PM
- .suspend = dma_suspend,
- .resume = dma_resume,
.driver = {
.pm = &intel_mid_dma_pm,
},