*/
int ced_get_state(struct ced_data *ced, __u32 *state, __u32 *error)
{
- int nGot;
+ int got;
dev_dbg(&ced->interface->dev, "%s: entry\n", __func__);
*state = 0xFFFFFFFF; /* Start off with invalid state */
- nGot = usb_control_msg(ced->udev, usb_rcvctrlpipe(ced->udev, 0),
+ got = usb_control_msg(ced->udev, usb_rcvctrlpipe(ced->udev, 0),
GET_STATUS, (D_TO_H | VENDOR | DEVREQ), 0, 0,
ced->stat_buf, sizeof(ced->stat_buf), HZ);
- if (nGot != sizeof(ced->stat_buf)) {
+ if (got != sizeof(ced->stat_buf)) {
dev_err(&ced->interface->dev,
- "%s: FAILED, return code %d\n", __func__, nGot);
- ced->current_state = U14ERR_TIME; /* Indicate that things are very wrong indeed */
+ "%s: FAILED, return code %d\n", __func__, got);
+ /* Indicate that things are very wrong indeed */
+ ced->current_state = U14ERR_TIME;
*state = 0; /* Force status values to a known state */
*error = 0;
} else {
- int nDevice;
+ int device;
dev_dbg(&ced->interface->dev,
"%s: Success, state: 0x%x, 0x%x\n",
__func__, ced->stat_buf[0], ced->stat_buf[1]);
- *state = ced->stat_buf[0]; /* Return the state values to the calling code */
+ /* Return the state values to the calling code */
+ *state = ced->stat_buf[0];
+
*error = ced->stat_buf[1];
- nDevice = ced->udev->descriptor.bcdDevice >> 8; /* 1401 type code value */
- switch (nDevice) { /* so we can clean up current state */
+ /* 1401 type code value */
+ device = ced->udev->descriptor.bcdDevice >> 8;
+ switch (device) { /* so we can clean up current state */
case 0:
ced->current_state = U14ERR_U1401;
break;
- default: /* allow lots of device codes for future 1401s */
- if ((nDevice >= 1) && (nDevice <= 23))
- ced->current_state = (short)(nDevice + 6);
+ default: /* allow lots of device codes for future 1401s */
+ if ((device >= 1) && (device <= 23))
+ ced->current_state = (short)(device + 6);
else
ced->current_state = U14ERR_ILL;
break;