[PATCH] ub: random cleanups
Remove some silly messages and cast in stone "temporary" messages which we keep around. Also, I am hesitant to remove the initialization retries without having the hardware to test (anyone who was at KS04 has a spare?) Signed-off-by: Pete Zaitcev <zaitcev@yahoo.com> Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
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@ -10,17 +10,13 @@
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* TODO (sorted by decreasing priority)
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* -- set readonly flag for CDs, set removable flag for CF readers
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* -- do inquiry and verify we got a disk and not a tape (for LUN mismatch)
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* -- special case some senses, e.g. 3a/0 -> no media present, reduce retries
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* -- verify the 13 conditions and do bulk resets
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* -- kill last_pipe and simply do two-state clearing on both pipes
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* -- highmem
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* -- move top_sense and work_bcs into separate allocations (if they survive)
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* for cache purists and esoteric architectures.
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* -- Allocate structure for LUN 0 before the first ub_sync_tur, avoid NULL. ?
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* -- prune comments, they are too volumnous
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* -- Exterminate P3 printks
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* -- Resove XXX's
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* -- Redo "benh's retries", perhaps have spin-up code to handle them. V:D=?
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* -- CLEAR, CLR2STS, CLRRS seem to be ripe for refactoring.
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*/
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#include <linux/kernel.h>
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@ -180,7 +176,6 @@ struct ub_dev;
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#define UB_DIR_ILLEGAL2 2
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#define UB_DIR_WRITE 3
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/* P3 */
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#define UB_DIR_CHAR(c) (((c)==UB_DIR_WRITE)? 'w': \
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(((c)==UB_DIR_READ)? 'r': 'n'))
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@ -669,8 +664,9 @@ static int ub_request_fn_1(struct ub_lun *lun, struct request *rq)
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*/
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n_elem = blk_rq_map_sg(lun->disk->queue, rq, &urq->sgv[0]);
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if (n_elem < 0) {
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/* Impossible, because blk_rq_map_sg should not hit ENOMEM. */
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printk(KERN_INFO "%s: failed request map (%d)\n",
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lun->name, n_elem); /* P3 */
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lun->name, n_elem);
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goto drop;
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}
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if (n_elem > UB_MAX_REQ_SG) { /* Paranoia */
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@ -824,7 +820,9 @@ static int ub_rw_cmd_retry(struct ub_dev *sc, struct ub_lun *lun,
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if (urq->current_try >= 3)
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return -EIO;
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urq->current_try++;
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/* P3 */ printk("%s: dir %c len/act %d/%d "
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/* Remove this if anyone complains of flooding. */
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printk(KERN_DEBUG "%s: dir %c len/act %d/%d "
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"[sense %x %02x %02x] retry %d\n",
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sc->name, UB_DIR_CHAR(cmd->dir), cmd->len, cmd->act_len,
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cmd->key, cmd->asc, cmd->ascq, urq->current_try);
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@ -1241,8 +1239,6 @@ static void ub_scsi_urb_compl(struct ub_dev *sc, struct ub_scsi_cmd *cmd)
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* to check. But it's not all right if the device
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* counts disagree with our counts.
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*/
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/* P3 */ printk("%s: resid %d len %d act %d\n",
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sc->name, len, cmd->len, cmd->act_len);
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goto Bad_End;
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}
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@ -1253,7 +1249,6 @@ static void ub_scsi_urb_compl(struct ub_dev *sc, struct ub_scsi_cmd *cmd)
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ub_state_sense(sc, cmd);
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return;
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case US_BULK_STAT_PHASE:
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/* P3 */ printk("%s: status PHASE\n", sc->name);
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goto Bad_End;
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default:
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printk(KERN_INFO "%s: unknown CSW status 0x%x\n",
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@ -1568,16 +1563,14 @@ static void ub_reset_task(void *arg)
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}
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if (atomic_read(&sc->poison)) {
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printk(KERN_NOTICE "%s: Not resetting disconnected device\n",
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sc->name); /* P3 This floods. Remove soon. XXX */
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;
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} else if ((sc->reset & 1) == 0) {
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ub_sync_reset(sc);
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msleep(700); /* usb-storage sleeps 6s (!) */
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ub_probe_clear_stall(sc, sc->recv_bulk_pipe);
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ub_probe_clear_stall(sc, sc->send_bulk_pipe);
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} else if (sc->dev->actconfig->desc.bNumInterfaces != 1) {
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printk(KERN_NOTICE "%s: Not resetting multi-interface device\n",
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sc->name); /* P3 This floods. Remove soon. XXX */
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;
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} else {
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if ((lkr = usb_lock_device_for_reset(sc->dev, sc->intf)) < 0) {
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printk(KERN_NOTICE
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@ -1819,10 +1812,8 @@ static int ub_sync_tur(struct ub_dev *sc, struct ub_lun *lun)
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rc = ub_submit_scsi(sc, cmd);
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spin_unlock_irqrestore(sc->lock, flags);
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if (rc != 0) {
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printk("ub: testing ready: submit error (%d)\n", rc); /* P3 */
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if (rc != 0)
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goto err_submit;
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}
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wait_for_completion(&compl);
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@ -1880,20 +1871,16 @@ static int ub_sync_read_cap(struct ub_dev *sc, struct ub_lun *lun,
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rc = ub_submit_scsi(sc, cmd);
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spin_unlock_irqrestore(sc->lock, flags);
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if (rc != 0) {
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printk("ub: reading capacity: submit error (%d)\n", rc); /* P3 */
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if (rc != 0)
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goto err_submit;
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}
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wait_for_completion(&compl);
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if (cmd->error != 0) {
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printk("ub: reading capacity: error %d\n", cmd->error); /* P3 */
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rc = -EIO;
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goto err_read;
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}
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if (cmd->act_len != 8) {
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printk("ub: reading capacity: size %d\n", cmd->act_len); /* P3 */
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rc = -EIO;
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goto err_read;
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}
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@ -1907,7 +1894,6 @@ static int ub_sync_read_cap(struct ub_dev *sc, struct ub_lun *lun,
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case 2048: shift = 2; break;
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case 4096: shift = 3; break;
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default:
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printk("ub: Bad sector size %u\n", bsize); /* P3 */
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rc = -EDOM;
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goto err_inv_bsize;
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}
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@ -2019,17 +2005,8 @@ static int ub_sync_getmaxlun(struct ub_dev *sc)
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sc->work_urb.error_count = 0;
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sc->work_urb.status = 0;
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if ((rc = usb_submit_urb(&sc->work_urb, GFP_KERNEL)) != 0) {
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if (rc == -EPIPE) {
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printk("%s: Stall submitting GetMaxLUN, using 1 LUN\n",
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sc->name); /* P3 */
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} else {
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printk(KERN_NOTICE
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"%s: Unable to submit GetMaxLUN (%d)\n",
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sc->name, rc);
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}
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if ((rc = usb_submit_urb(&sc->work_urb, GFP_KERNEL)) != 0)
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goto err_submit;
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}
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init_timer(&timer);
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timer.function = ub_probe_timeout;
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@ -2042,21 +2019,10 @@ static int ub_sync_getmaxlun(struct ub_dev *sc)
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del_timer_sync(&timer);
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usb_kill_urb(&sc->work_urb);
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if ((rc = sc->work_urb.status) < 0) {
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if (rc == -EPIPE) {
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printk("%s: Stall at GetMaxLUN, using 1 LUN\n",
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sc->name); /* P3 */
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} else {
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printk(KERN_NOTICE
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"%s: Error at GetMaxLUN (%d)\n",
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sc->name, rc);
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}
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if ((rc = sc->work_urb.status) < 0)
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goto err_io;
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}
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if (sc->work_urb.actual_length != 1) {
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printk("%s: GetMaxLUN returned %d bytes\n", sc->name,
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sc->work_urb.actual_length); /* P3 */
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nluns = 0;
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} else {
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if ((nluns = *p) == 55) {
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if (nluns > UB_MAX_LUNS)
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nluns = UB_MAX_LUNS;
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}
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printk("%s: GetMaxLUN returned %d, using %d LUNs\n", sc->name,
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*p, nluns); /* P3 */
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}
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kfree(p);
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@ -2266,7 +2230,7 @@ static int ub_probe(struct usb_interface *intf,
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* has to succeed, so we clear checks with an additional one here.
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* In any case it's not our business how revaliadation is implemented.
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*/
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for (i = 0; i < 3; i++) { /* Retries for benh's key */
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for (i = 0; i < 3; i++) { /* Retries for the schwag key from KS'04 */
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if ((rc = ub_sync_tur(sc, NULL)) <= 0) break;
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if (rc != 0x6) break;
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msleep(10);
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