#include <linux/module.h>
#include <linux/pagemap.h>
#include <linux/pci.h>
-#include <linux/semaphore.h>
+#include <linux/mutex.h>
#include <linux/slab.h>
#include <linux/spinlock.h>
#include <linux/syscalls.h>
void *kern_buf; /* Buffer address in kernel space */
dma_addr_t pci_buf; /* Buffer address in PCI address space */
unsigned long long size_buf; /* Buffer size */
- struct semaphore sem; /* Semaphore for locking image */
+ struct mutex mutex; /* Mutex for locking image */
struct device *device; /* Sysfs device */
struct vme_resource *resource; /* VME resource */
int users; /* Number of current users */
int err;
unsigned int minor = MINOR(inode->i_rdev);
- down(&image[minor].sem);
+ mutex_lock(&image[minor].mutex);
/* Allow device to be opened if a resource is needed and allocated. */
if (minor < CONTROL_MINOR && image[minor].resource == NULL) {
printk(KERN_ERR "No resources allocated for device\n");
/* Increment user count */
image[minor].users++;
- up(&image[minor].sem);
+ mutex_unlock(&image[minor].mutex);
return 0;
err_res:
- up(&image[minor].sem);
+ mutex_unlock(&image[minor].mutex);
return err;
}
{
unsigned int minor = MINOR(inode->i_rdev);
- down(&image[minor].sem);
+ mutex_lock(&image[minor].mutex);
/* Decrement user count */
image[minor].users--;
- up(&image[minor].sem);
+ mutex_unlock(&image[minor].mutex);
return 0;
}
if (minor == CONTROL_MINOR)
return 0;
- down(&image[minor].sem);
+ mutex_lock(&image[minor].mutex);
/* XXX Do we *really* want this helper - we can use vme_*_get ? */
image_size = vme_get_size(image[minor].resource);
/* Ensure we are starting at a valid location */
if ((*ppos < 0) || (*ppos > (image_size - 1))) {
- up(&image[minor].sem);
+ mutex_unlock(&image[minor].mutex);
return 0;
}
retval = -EINVAL;
}
- up(&image[minor].sem);
-
+ mutex_unlock(&image[minor].mutex);
if (retval > 0)
*ppos += retval;
if (minor == CONTROL_MINOR)
return 0;
- down(&image[minor].sem);
+ mutex_lock(&image[minor].mutex);
image_size = vme_get_size(image[minor].resource);
/* Ensure we are starting at a valid location */
if ((*ppos < 0) || (*ppos > (image_size - 1))) {
- up(&image[minor].sem);
+ mutex_unlock(&image[minor].mutex);
return 0;
}
default:
retval = -EINVAL;
}
-
- up(&image[minor].sem);
+
+ mutex_unlock(&image[minor].mutex);
if (retval > 0)
*ppos += retval;
if (minor == CONTROL_MINOR)
return -EINVAL;
- down(&image[minor].sem);
+ mutex_lock(&image[minor].mutex);
image_size = vme_get_size(image[minor].resource);
switch (whence) {
absolute = image_size + off;
break;
default:
- up(&image[minor].sem);
+ mutex_unlock(&image[minor].mutex);
return -EINVAL;
break;
}
if ((absolute < 0) || (absolute >= image_size)) {
- up(&image[minor].sem);
+ mutex_unlock(&image[minor].mutex);
return -EINVAL;
}
file->f_pos = absolute;
- up(&image[minor].sem);
+ mutex_unlock(&image[minor].mutex);
return absolute;
}
for (i = 0; i < VME_DEVS; i++) {
image[i].kern_buf = NULL;
image[i].pci_buf = 0;
- sema_init(&image[i].sem, 1);
+ mutex_init(&image[i].mutex);
image[i].device = NULL;
image[i].resource = NULL;
image[i].users = 0;
int i;
/* Remove sysfs Entries */
- for (i = 0; i < VME_DEVS; i++)
+ for (i = 0; i < VME_DEVS; i++) {
+ mutex_destroy(&image[i].mutex);
device_destroy(vme_user_sysfs_class, MKDEV(VME_MAJOR, i));
+ }
class_destroy(vme_user_sysfs_class);
for (i = MASTER_MINOR; i < (MASTER_MAX + 1); i++) {