drive_state[drive].track = NEED_2_RECAL;
}
-/* selects the fdc and drive, and enables the fdc's input/dma. */
+/*
+ * selects the fdc and drive, and enables the fdc's input/dma.
+ * Both current_drive and current_fdc are changed to match the new drive.
+ */
static void set_fdc(int drive)
{
- unsigned int new_fdc = current_fdc;
+ unsigned int fdc;
- if (drive >= 0 && drive < N_DRIVE) {
- new_fdc = FDC(drive);
- current_drive = drive;
+ if (drive < 0 || drive >= N_DRIVE) {
+ pr_info("bad drive value %d\n", drive);
+ return;
}
- if (new_fdc >= N_FDC) {
+
+ fdc = FDC(drive);
+ if (fdc >= N_FDC) {
pr_info("bad fdc value\n");
return;
}
- current_fdc = new_fdc;
- set_dor(current_fdc, ~0, 8);
+
+ set_dor(fdc, ~0, 8);
#if N_FDC > 1
- set_dor(1 - current_fdc, ~8, 0);
+ set_dor(1 - fdc, ~8, 0);
#endif
- if (fdc_state[current_fdc].rawcmd == 2)
- reset_fdc_info(current_fdc, 1);
- if (fdc_inb(current_fdc, FD_STATUS) != STATUS_READY)
- fdc_state[current_fdc].reset = 1;
+ if (fdc_state[fdc].rawcmd == 2)
+ reset_fdc_info(fdc, 1);
+ if (fdc_inb(fdc, FD_STATUS) != STATUS_READY)
+ fdc_state[fdc].reset = 1;
+
+ current_drive = drive;
+ current_fdc = fdc;
}
-/* locks the driver */
+/*
+ * locks the driver.
+ * Both current_drive and current_fdc are changed to match the new drive.
+ */
static int lock_fdc(int drive)
{
if (WARN(atomic_read(&usage_count) == 0,
.done = generic_done
};
+/*
+ * Resets the FDC connected to drive <drive>.
+ * Both current_drive and current_fdc are changed to match the new drive.
+ */
static int user_reset_fdc(int drive, int arg, bool interruptible)
{
int ret;