return;
}
+ mutex_lock(&epf->lock);
epf->driver->ops->unbind(epf);
+ mutex_unlock(&epf->lock);
module_put(epf->driver->owner);
}
EXPORT_SYMBOL_GPL(pci_epf_unbind);
*/
int pci_epf_bind(struct pci_epf *epf)
{
+ int ret;
+
if (!epf->driver) {
dev_WARN(&epf->dev, "epf device not bound to driver\n");
return -EINVAL;
if (!try_module_get(epf->driver->owner))
return -EAGAIN;
- return epf->driver->ops->bind(epf);
+ mutex_lock(&epf->lock);
+ ret = epf->driver->ops->bind(epf);
+ mutex_unlock(&epf->lock);
+
+ return ret;
}
EXPORT_SYMBOL_GPL(pci_epf_bind);
device_initialize(dev);
dev->bus = &pci_epf_bus_type;
dev->type = &pci_epf_type;
+ mutex_init(&epf->lock);
ret = dev_set_name(dev, "%s", name);
if (ret) {
* @driver: the EPF driver to which this EPF device is bound
* @list: to add pci_epf as a list of PCI endpoint functions to pci_epc
* @nb: notifier block to notify EPF of any EPC events (like linkup)
+ * @lock: mutex to protect pci_epf_ops
*/
struct pci_epf {
struct device dev;
struct pci_epf_driver *driver;
struct list_head list;
struct notifier_block nb;
+ /* mutex to protect against concurrent access of pci_epf_ops */
+ struct mutex lock;
};
#define to_pci_epf(epf_dev) container_of((epf_dev), struct pci_epf, dev)