* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*
- * FIXME: brdp->state needs proper locking.
*/
/*****************************************************************************/
* the board has been detected, and whether it is actually running a slave
* or not.
*/
-#define BST_FOUND 0x1
-#define BST_STARTED 0x2
-#define BST_PROBED 0x4
+#define BST_FOUND 0
+#define BST_STARTED 1
+#define BST_PROBED 2
/*
* Define the set of port state flags. These are marked for internal
brdp = stli_brds[brdnr];
if (brdp == NULL)
return -ENODEV;
- if ((brdp->state & BST_STARTED) == 0)
+ if (!test_bit(BST_STARTED, &brdp->state))
return -ENODEV;
portnr = MINOR2PORT(minordev);
if (portnr > brdp->nrports)
rc = stli_portcmdstats(NULL, portp);
uart = "UNKNOWN";
- if (brdp->state & BST_STARTED) {
+ if (test_bit(BST_STARTED, &brdp->state)) {
switch (stli_comstats.hwid) {
case 0: uart = "2681"; break;
case 1: uart = "SC26198"; break;
}
seq_printf(m, "%d: uart:%s ", portnr, uart);
- if ((brdp->state & BST_STARTED) && (rc >= 0)) {
+ if (test_bit(BST_STARTED, &brdp->state) && rc >= 0) {
char sep;
seq_printf(m, "tx:%d rx:%d", (int) stli_comstats.txtotal,
brdp = stli_brds[brdnr];
if (brdp == NULL)
continue;
- if ((brdp->state & BST_STARTED) == 0)
+ if (!test_bit(BST_STARTED, &brdp->state))
continue;
spin_lock(&brd_lock);
}
- brdp->state |= BST_FOUND;
+ set_bit(BST_FOUND, &brdp->state);
return 0;
err_unmap:
iounmap(brdp->membase);
brdp->panels[0] = brdp->nrports;
- brdp->state |= BST_FOUND;
+ set_bit(BST_FOUND, &brdp->state);
return 0;
err_unmap:
iounmap(brdp->membase);
spin_unlock_irqrestore(&brd_lock, flags);
if (rc == 0)
- brdp->state |= BST_STARTED;
+ set_bit(BST_STARTED, &brdp->state);
if (! stli_timeron) {
stli_timeron++;
if (retval)
goto err_null;
- brdp->state |= BST_PROBED;
+ set_bit(BST_PROBED, &brdp->state);
pci_set_drvdata(pdev, brdp);
EBRDENABLE(brdp);
brdp = stli_brds[i];
if (brdp == NULL)
continue;
- if (brdp->state & BST_FOUND) {
+ if (test_bit(BST_FOUND, &brdp->state)) {
EBRDENABLE(brdp);
brdp->enable = NULL;
brdp->disable = NULL;
return -ENODEV;
mutex_lock(&portp->port.mutex);
- if (brdp->state & BST_STARTED) {
+ if (test_bit(BST_STARTED, &brdp->state)) {
if ((rc = stli_cmdwait(brdp, portp, A_GETSTATS,
&stli_cdkstats, sizeof(asystats_t), 1)) < 0) {
mutex_unlock(&portp->port.mutex);
mutex_lock(&portp->port.mutex);
- if (brdp->state & BST_STARTED) {
+ if (test_bit(BST_STARTED, &brdp->state)) {
if ((rc = stli_cmdwait(brdp, portp, A_CLEARSTATS, NULL, 0, 0)) < 0) {
mutex_unlock(&portp->port.mutex);
return rc;
rc = stli_startbrd(brdp);
break;
case STL_BSTOP:
- brdp->state &= ~BST_STARTED;
+ clear_bit(BST_STARTED, &brdp->state);
break;
case STL_BRESET:
- brdp->state &= ~BST_STARTED;
+ clear_bit(BST_STARTED, &brdp->state);
EBRDRESET(brdp);
if (stli_shared == 0) {
if (brdp->reenable != NULL)
unsigned int j;
for (j = 0; (j < stli_nrbrds); j++) {
- if ((brdp = stli_brds[j]) == NULL || (brdp->state & BST_PROBED))
+ if ((brdp = stli_brds[j]) == NULL ||
+ test_bit(BST_PROBED, &brdp->state))
continue;
stli_cleanup_ports(brdp);