1 /* ppa.c -- low level driver for the IOMEGA PPA3
2 * parallel port SCSI host adapter.
4 * (The PPA3 is the embedded controller in the ZIP drive.)
6 * (c) 1995,1996 Grant R. Guenther, grant@torque.net,
7 * under the terms of the GNU General Public License.
11 #include <linux/init.h>
12 #include <linux/kernel.h>
13 #include <linux/slab.h>
14 #include <linux/module.h>
15 #include <linux/blkdev.h>
16 #include <linux/parport.h>
17 #include <linux/workqueue.h>
18 #include <linux/delay.h>
19 #include <linux/jiffies.h>
22 #include <scsi/scsi.h>
23 #include <scsi/scsi_cmnd.h>
24 #include <scsi/scsi_device.h>
25 #include <scsi/scsi_host.h>
28 static void ppa_reset_pulse(unsigned int base
);
31 struct pardevice
*dev
; /* Parport device entry */
32 int base
; /* Actual port address */
33 int mode
; /* Transfer mode */
34 struct scsi_cmnd
*cur_cmd
; /* Current queued command */
35 struct delayed_work ppa_tq
; /* Polling interrupt stuff */
36 unsigned long jstart
; /* Jiffies at start */
37 unsigned long recon_tmo
; /* How many usecs to wait for reconnection (6th bit) */
38 unsigned int failed
:1; /* Failure flag */
39 unsigned wanted
:1; /* Parport sharing busy flag */
40 unsigned int dev_no
; /* Device number */
41 wait_queue_head_t
*waiting
;
42 struct Scsi_Host
*host
;
43 struct list_head list
;
48 static unsigned int mode
= PPA_AUTODETECT
;
49 module_param(mode
, uint
, 0644);
50 MODULE_PARM_DESC(mode
, "Transfer mode (0 = Autodetect, 1 = SPP 4-bit, "
51 "2 = SPP 8-bit, 3 = EPP 8-bit, 4 = EPP 16-bit, 5 = EPP 32-bit");
53 static struct scsi_pointer
*ppa_scsi_pointer(struct scsi_cmnd
*cmd
)
55 return scsi_cmd_priv(cmd
);
58 static inline ppa_struct
*ppa_dev(struct Scsi_Host
*host
)
60 return *(ppa_struct
**)&host
->hostdata
;
63 static DEFINE_SPINLOCK(arbitration_lock
);
65 static void got_it(ppa_struct
*dev
)
67 dev
->base
= dev
->dev
->port
->base
;
69 ppa_scsi_pointer(dev
->cur_cmd
)->phase
= 1;
71 wake_up(dev
->waiting
);
74 static void ppa_wakeup(void *ref
)
76 ppa_struct
*dev
= (ppa_struct
*) ref
;
79 spin_lock_irqsave(&arbitration_lock
, flags
);
81 parport_claim(dev
->dev
);
85 spin_unlock_irqrestore(&arbitration_lock
, flags
);
89 static int ppa_pb_claim(ppa_struct
*dev
)
93 spin_lock_irqsave(&arbitration_lock
, flags
);
94 if (parport_claim(dev
->dev
) == 0) {
99 spin_unlock_irqrestore(&arbitration_lock
, flags
);
103 static void ppa_pb_dismiss(ppa_struct
*dev
)
107 spin_lock_irqsave(&arbitration_lock
, flags
);
108 wanted
= dev
->wanted
;
110 spin_unlock_irqrestore(&arbitration_lock
, flags
);
112 parport_release(dev
->dev
);
115 static inline void ppa_pb_release(ppa_struct
*dev
)
117 parport_release(dev
->dev
);
121 * Start of Chipset kludges
124 /* This is to give the ppa driver a way to modify the timings (and other
125 * parameters) by writing to the /proc/scsi/ppa/0 file.
126 * Very simple method really... (To simple, no error checking :( )
127 * Reason: Kernel hackers HATE having to unload and reload modules for
129 * Also gives a method to use a script to obtain optimum timings (TODO)
132 static inline int ppa_write_info(struct Scsi_Host
*host
, char *buffer
, int length
)
134 ppa_struct
*dev
= ppa_dev(host
);
137 if ((length
> 5) && (strncmp(buffer
, "mode=", 5) == 0)) {
138 x
= simple_strtoul(buffer
+ 5, NULL
, 0);
142 if ((length
> 10) && (strncmp(buffer
, "recon_tmo=", 10) == 0)) {
143 x
= simple_strtoul(buffer
+ 10, NULL
, 0);
145 printk(KERN_INFO
"ppa: recon_tmo set to %ld\n", x
);
148 printk(KERN_WARNING
"ppa /proc: invalid variable\n");
152 static int ppa_show_info(struct seq_file
*m
, struct Scsi_Host
*host
)
154 ppa_struct
*dev
= ppa_dev(host
);
156 seq_printf(m
, "Version : %s\n", PPA_VERSION
);
157 seq_printf(m
, "Parport : %s\n", dev
->dev
->port
->name
);
158 seq_printf(m
, "Mode : %s\n", PPA_MODE_STRING
[dev
->mode
]);
160 seq_printf(m
, "recon_tmo : %lu\n", dev
->recon_tmo
);
165 static int device_check(ppa_struct
*dev
, bool autodetect
);
168 #define ppa_fail(x,y) printk("ppa: ppa_fail(%i) from %s at line %d\n",\
169 y, __func__, __LINE__); ppa_fail_func(x,y);
170 static inline void ppa_fail_func(ppa_struct
*dev
, int error_code
)
172 static inline void ppa_fail(ppa_struct
*dev
, int error_code
)
175 /* If we fail a device then we trash status / message bytes */
177 dev
->cur_cmd
->result
= error_code
<< 16;
183 * Wait for the high bit to be set.
185 * In principle, this could be tied to an interrupt, but the adapter
186 * doesn't appear to be designed to support interrupts. We spin on
187 * the 0x80 ready bit.
189 static unsigned char ppa_wait(ppa_struct
*dev
)
192 unsigned short ppb
= dev
->base
;
196 /* Wait for bit 6 and 7 - PJC */
197 for (r
= r_str(ppb
); ((r
& 0xc0) != 0xc0) && (k
); k
--) {
203 * return some status information.
204 * Semantics: 0xc0 = ZIP wants more data
205 * 0xd0 = ZIP wants to send more data
206 * 0xe0 = ZIP is expecting SCSI command data
207 * 0xf0 = end of transfer, ZIP is sending status
212 /* Counter expired - Time out occurred */
213 ppa_fail(dev
, DID_TIME_OUT
);
214 printk(KERN_WARNING
"ppa timeout in ppa_wait\n");
215 return 0; /* command timed out */
219 * Clear EPP Timeout Bit
221 static inline void epp_reset(unsigned short ppb
)
227 w_str(ppb
, i
& 0xfe);
231 * Wait for empty ECP fifo (if we are in ECP fifo mode only)
233 static inline void ecp_sync(ppa_struct
*dev
)
235 int i
, ppb_hi
= dev
->dev
->port
->base_hi
;
240 if ((r_ecr(ppb_hi
) & 0xe0) == 0x60) { /* mode 011 == ECP fifo mode */
241 for (i
= 0; i
< 100; i
++) {
242 if (r_ecr(ppb_hi
) & 0x01)
246 printk(KERN_WARNING
"ppa: ECP sync failed as data still present in FIFO.\n");
250 static int ppa_byte_out(unsigned short base
, const char *buffer
, int len
)
254 for (i
= len
; i
; i
--) {
255 w_dtr(base
, *buffer
++);
259 return 1; /* All went well - we hope! */
262 static int ppa_byte_in(unsigned short base
, char *buffer
, int len
)
266 for (i
= len
; i
; i
--) {
267 *buffer
++ = r_dtr(base
);
271 return 1; /* All went well - we hope! */
274 static int ppa_nibble_in(unsigned short base
, char *buffer
, int len
)
280 h
= r_str(base
) & 0xf0;
282 *buffer
++ = h
| ((r_str(base
) & 0xf0) >> 4);
284 return 1; /* All went well - we hope! */
287 static int ppa_out(ppa_struct
*dev
, char *buffer
, int len
)
290 unsigned short ppb
= dev
->base
;
294 if ((r
& 0x50) != 0x40) {
295 ppa_fail(dev
, DID_ERROR
);
301 /* 8 bit output, with a loop */
302 r
= ppa_byte_out(ppb
, buffer
, len
);
310 if (dev
->mode
== PPA_EPP_32
&& !(((long) buffer
| len
) & 0x03))
311 outsl(ppb
+ 4, buffer
, len
>> 2);
312 else if (dev
->mode
== PPA_EPP_16
&& !(((long) buffer
| len
) & 0x01))
313 outsw(ppb
+ 4, buffer
, len
>> 1);
315 outsb(ppb
+ 4, buffer
, len
);
317 r
= !(r_str(ppb
) & 0x01);
323 printk(KERN_ERR
"PPA: bug in ppa_out()\n");
329 static int ppa_in(ppa_struct
*dev
, char *buffer
, int len
)
332 unsigned short ppb
= dev
->base
;
336 if ((r
& 0x50) != 0x50) {
337 ppa_fail(dev
, DID_ERROR
);
342 /* 4 bit input, with a loop */
343 r
= ppa_nibble_in(ppb
, buffer
, len
);
348 /* 8 bit input, with a loop */
350 r
= ppa_byte_in(ppb
, buffer
, len
);
360 if (dev
->mode
== PPA_EPP_32
&& !(((long) buffer
| len
) & 0x03))
361 insl(ppb
+ 4, buffer
, len
>> 2);
362 else if (dev
->mode
== PPA_EPP_16
&& !(((long) buffer
| len
) & 0x01))
363 insw(ppb
+ 4, buffer
, len
>> 1);
365 insb(ppb
+ 4, buffer
, len
);
367 r
= !(r_str(ppb
) & 0x01);
373 printk(KERN_ERR
"PPA: bug in ppa_ins()\n");
380 /* end of ppa_io.h */
381 static inline void ppa_d_pulse(unsigned short ppb
, unsigned char b
)
391 static void ppa_disconnect(ppa_struct
*dev
)
393 unsigned short ppb
= dev
->base
;
396 ppa_d_pulse(ppb
, 0x3c);
397 ppa_d_pulse(ppb
, 0x20);
398 ppa_d_pulse(ppb
, 0xf);
401 static inline void ppa_c_pulse(unsigned short ppb
, unsigned char b
)
410 static inline void ppa_connect(ppa_struct
*dev
, int flag
)
412 unsigned short ppb
= dev
->base
;
415 ppa_c_pulse(ppb
, 0x3c);
416 ppa_c_pulse(ppb
, 0x20);
417 if ((flag
== CONNECT_EPP_MAYBE
) && IN_EPP_MODE(dev
->mode
))
418 ppa_c_pulse(ppb
, 0xcf);
420 ppa_c_pulse(ppb
, 0x8f);
423 static int ppa_select(ppa_struct
*dev
, int target
)
426 unsigned short ppb
= dev
->base
;
429 * Bit 6 (0x40) is the device selected bit.
430 * First we must wait till the current device goes off line...
436 } while ((r_str(ppb
) & 0x40) && (k
));
440 w_dtr(ppb
, (1 << target
));
443 w_dtr(ppb
, 0x80); /* This is NOT the initator */
451 while (!(r_str(ppb
) & 0x40) && (k
));
459 * This is based on a trace of what the Iomega DOS 'guest' driver does.
460 * I've tried several different kinds of parallel ports with guest and
461 * coded this to react in the same ways that it does.
463 * The return value from this function is just a hint about where the
464 * handshaking failed.
467 static int ppa_init(ppa_struct
*dev
)
470 unsigned short ppb
= dev
->base
;
471 bool autodetect
= dev
->mode
== PPA_AUTODETECT
;
474 int modes
= dev
->dev
->port
->modes
;
475 int ppb_hi
= dev
->dev
->port
->base_hi
;
477 /* Mode detection works up the chain of speed
478 * This avoids a nasty if-then-else-if-... tree
480 dev
->mode
= PPA_NIBBLE
;
482 if (modes
& PARPORT_MODE_TRISTATE
)
485 if (modes
& PARPORT_MODE_ECP
) {
489 if ((modes
& PARPORT_MODE_EPP
) && (modes
& PARPORT_MODE_ECP
))
494 ppa_connect(dev
, CONNECT_NORMAL
);
496 retv
= 2; /* Failed */
499 if ((r_str(ppb
) & 0x08) == 0x08)
503 if ((r_str(ppb
) & 0x08) == 0x00)
507 ppa_reset_pulse(ppb
);
508 udelay(1000); /* Allow devices to settle down */
510 udelay(1000); /* Another delay to allow devices to settle */
515 return device_check(dev
, autodetect
);
518 static inline int ppa_send_command(struct scsi_cmnd
*cmd
)
520 ppa_struct
*dev
= ppa_dev(cmd
->device
->host
);
523 w_ctr(dev
->base
, 0x0c);
525 for (k
= 0; k
< cmd
->cmd_len
; k
++)
526 if (!ppa_out(dev
, &cmd
->cmnd
[k
], 1))
532 * The bulk flag enables some optimisations in the data transfer loops,
533 * it should be true for any command that transfers data in integral
534 * numbers of sectors.
536 * The driver appears to remain stable if we speed up the parallel port
537 * i/o in this function, but not elsewhere.
539 static int ppa_completion(struct scsi_cmnd
*const cmd
)
544 * 1 Finished data transfer
546 struct scsi_pointer
*scsi_pointer
= ppa_scsi_pointer(cmd
);
547 ppa_struct
*dev
= ppa_dev(cmd
->device
->host
);
548 unsigned short ppb
= dev
->base
;
549 unsigned long start_jiffies
= jiffies
;
552 int fast
, bulk
, status
;
555 bulk
= ((v
== READ_6
) ||
556 (v
== READ_10
) || (v
== WRITE_6
) || (v
== WRITE_10
));
559 * We only get here if the drive is ready to comunicate,
560 * hence no need for a full ppa_wait.
562 r
= (r_str(ppb
) & 0xf0);
564 while (r
!= (unsigned char) 0xf0) {
566 * If we have been running for more than a full timer tick
569 if (time_after(jiffies
, start_jiffies
+ 1))
572 if (scsi_pointer
->this_residual
<= 0) {
573 ppa_fail(dev
, DID_ERROR
);
574 return -1; /* ERROR_RETURN */
577 /* On some hardware we have SCSI disconnected (6th bit low)
578 * for about 100usecs. It is too expensive to wait a
579 * tick on every loop so we busy wait for no more than
580 * 500usecs to give the drive a chance first. We do not
581 * change things for "normal" hardware since generally
582 * the 6th bit is always high.
583 * This makes the CPU load higher on some hardware
584 * but otherwise we can not get more than 50K/secs
585 * on this problem hardware.
587 if ((r
& 0xc0) != 0xc0) {
588 /* Wait for reconnection should be no more than
589 * jiffy/2 = 5ms = 5000 loops
591 unsigned long k
= dev
->recon_tmo
;
592 for (; k
&& ((r
= (r_str(ppb
) & 0xf0)) & 0xc0) != 0xc0;
600 /* determine if we should use burst I/O */
601 fast
= bulk
&& scsi_pointer
->this_residual
>= PPA_BURST_SIZE
?
604 if (r
== (unsigned char) 0xc0)
605 status
= ppa_out(dev
, scsi_pointer
->ptr
, fast
);
607 status
= ppa_in(dev
, scsi_pointer
->ptr
, fast
);
609 scsi_pointer
->ptr
+= fast
;
610 scsi_pointer
->this_residual
-= fast
;
613 ppa_fail(dev
, DID_BUS_BUSY
);
614 return -1; /* ERROR_RETURN */
616 if (scsi_pointer
->buffer
&& !scsi_pointer
->this_residual
) {
617 /* if scatter/gather, advance to the next segment */
618 if (scsi_pointer
->buffers_residual
--) {
619 scsi_pointer
->buffer
=
620 sg_next(scsi_pointer
->buffer
);
621 scsi_pointer
->this_residual
=
622 scsi_pointer
->buffer
->length
;
624 sg_virt(scsi_pointer
->buffer
);
627 /* Now check to see if the drive is ready to comunicate */
628 r
= (r_str(ppb
) & 0xf0);
629 /* If not, drop back down to the scheduler and wait a timer tick */
633 return 1; /* FINISH_RETURN */
637 * Since the PPA itself doesn't generate interrupts, we use
638 * the scheduler's task queue to generate a stream of call-backs and
639 * complete the request when the drive is ready.
641 static void ppa_interrupt(struct work_struct
*work
)
643 ppa_struct
*dev
= container_of(work
, ppa_struct
, ppa_tq
.work
);
644 struct scsi_cmnd
*cmd
= dev
->cur_cmd
;
647 printk(KERN_ERR
"PPA: bug in ppa_interrupt\n");
650 if (ppa_engine(dev
, cmd
)) {
651 schedule_delayed_work(&dev
->ppa_tq
, 1);
654 /* Command must of completed hence it is safe to let go... */
656 switch ((cmd
->result
>> 16) & 0xff) {
660 printk(KERN_DEBUG
"ppa: no device at SCSI ID %i\n", scmd_id(cmd
));
663 printk(KERN_DEBUG
"ppa: BUS BUSY - EPP timeout detected\n");
666 printk(KERN_DEBUG
"ppa: unknown timeout\n");
669 printk(KERN_DEBUG
"ppa: told to abort\n");
672 printk(KERN_DEBUG
"ppa: parity error (???)\n");
675 printk(KERN_DEBUG
"ppa: internal driver error\n");
678 printk(KERN_DEBUG
"ppa: told to reset device\n");
681 printk(KERN_WARNING
"ppa: bad interrupt (???)\n");
684 printk(KERN_WARNING
"ppa: bad return code (%02x)\n",
685 (cmd
->result
>> 16) & 0xff);
689 if (ppa_scsi_pointer(cmd
)->phase
> 1)
699 static int ppa_engine(ppa_struct
*dev
, struct scsi_cmnd
*cmd
)
701 struct scsi_pointer
*scsi_pointer
= ppa_scsi_pointer(cmd
);
702 unsigned short ppb
= dev
->base
;
703 unsigned char l
= 0, h
= 0;
706 /* First check for any errors that may of occurred
707 * Here we check for internal errors
712 switch (scsi_pointer
->phase
) {
713 case 0: /* Phase 0 - Waiting for parport */
714 if (time_after(jiffies
, dev
->jstart
+ HZ
)) {
716 * We waited more than a second
717 * for parport to call us
719 ppa_fail(dev
, DID_BUS_BUSY
);
722 return 1; /* wait until ppa_wakeup claims parport */
723 case 1: /* Phase 1 - Connected */
724 { /* Perform a sanity check for cable unplugged */
725 int retv
= 2; /* Failed */
727 ppa_connect(dev
, CONNECT_EPP_MAYBE
);
730 if ((r_str(ppb
) & 0x08) == 0x08)
734 if ((r_str(ppb
) & 0x08) == 0x00)
738 if (time_after(jiffies
, dev
->jstart
+ (1 * HZ
))) {
739 printk(KERN_ERR
"ppa: Parallel port cable is unplugged.\n");
740 ppa_fail(dev
, DID_BUS_BUSY
);
744 return 1; /* Try again in a jiffy */
747 scsi_pointer
->phase
++;
751 case 2: /* Phase 2 - We are now talking to the scsi bus */
752 if (!ppa_select(dev
, scmd_id(cmd
))) {
753 ppa_fail(dev
, DID_NO_CONNECT
);
756 scsi_pointer
->phase
++;
759 case 3: /* Phase 3 - Ready to accept a command */
761 if (!(r_str(ppb
) & 0x80))
764 if (!ppa_send_command(cmd
))
766 scsi_pointer
->phase
++;
769 case 4: /* Phase 4 - Setup scatter/gather buffers */
770 if (scsi_bufflen(cmd
)) {
771 scsi_pointer
->buffer
= scsi_sglist(cmd
);
772 scsi_pointer
->this_residual
=
773 scsi_pointer
->buffer
->length
;
774 scsi_pointer
->ptr
= sg_virt(scsi_pointer
->buffer
);
776 scsi_pointer
->buffer
= NULL
;
777 scsi_pointer
->this_residual
= 0;
778 scsi_pointer
->ptr
= NULL
;
780 scsi_pointer
->buffers_residual
= scsi_sg_count(cmd
) - 1;
781 scsi_pointer
->phase
++;
784 case 5: /* Phase 5 - Data transfer stage */
786 if (!(r_str(ppb
) & 0x80))
789 retv
= ppa_completion(cmd
);
794 scsi_pointer
->phase
++;
797 case 6: /* Phase 6 - Read status/message */
798 cmd
->result
= DID_OK
<< 16;
799 /* Check for data overrun */
800 if (ppa_wait(dev
) != (unsigned char) 0xf0) {
801 ppa_fail(dev
, DID_ERROR
);
804 if (ppa_in(dev
, &l
, 1)) { /* read status byte */
805 /* Check for optional message byte */
806 if (ppa_wait(dev
) == (unsigned char) 0xf0)
809 (DID_OK
<< 16) + (h
<< 8) + (l
& STATUS_MASK
);
811 return 0; /* Finished */
814 printk(KERN_ERR
"ppa: Invalid scsi phase\n");
819 static int ppa_queuecommand_lck(struct scsi_cmnd
*cmd
)
821 ppa_struct
*dev
= ppa_dev(cmd
->device
->host
);
824 printk(KERN_ERR
"PPA: bug in ppa_queuecommand\n");
828 dev
->jstart
= jiffies
;
830 cmd
->result
= DID_ERROR
<< 16; /* default return code */
831 ppa_scsi_pointer(cmd
)->phase
= 0; /* bus free */
833 schedule_delayed_work(&dev
->ppa_tq
, 0);
840 static DEF_SCSI_QCMD(ppa_queuecommand
)
843 * Apparently the disk->capacity attribute is off by 1 sector
844 * for all disk drives. We add the one here, but it should really
845 * be done in sd.c. Even if it gets fixed there, this will still
848 static int ppa_biosparam(struct scsi_device
*sdev
, struct block_device
*dev
,
849 sector_t capacity
, int ip
[])
853 ip
[2] = ((unsigned long) capacity
+ 1) / (ip
[0] * ip
[1]);
857 ip
[2] = ((unsigned long) capacity
+ 1) / (ip
[0] * ip
[1]);
864 static int ppa_abort(struct scsi_cmnd
*cmd
)
866 ppa_struct
*dev
= ppa_dev(cmd
->device
->host
);
868 * There is no method for aborting commands since Iomega
869 * have tied the SCSI_MESSAGE line high in the interface
872 switch (ppa_scsi_pointer(cmd
)->phase
) {
873 case 0: /* Do not have access to parport */
874 case 1: /* Have not connected to interface */
875 dev
->cur_cmd
= NULL
; /* Forget the problem */
877 default: /* SCSI command sent, can not abort */
882 static void ppa_reset_pulse(unsigned int base
)
890 static int ppa_reset(struct scsi_cmnd
*cmd
)
892 ppa_struct
*dev
= ppa_dev(cmd
->device
->host
);
894 if (ppa_scsi_pointer(cmd
)->phase
)
896 dev
->cur_cmd
= NULL
; /* Forget the problem */
898 ppa_connect(dev
, CONNECT_NORMAL
);
899 ppa_reset_pulse(dev
->base
);
900 mdelay(1); /* device settle delay */
902 mdelay(1); /* device settle delay */
906 static int device_check(ppa_struct
*dev
, bool autodetect
)
908 /* This routine looks for a device and then attempts to use EPP
909 to send a command. If all goes as planned then EPP is available. */
911 static u8 cmd
[6] = { 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 };
912 int loop
, old_mode
, status
, k
, ppb
= dev
->base
;
915 old_mode
= dev
->mode
;
916 for (loop
= 0; loop
< 8; loop
++) {
917 /* Attempt to use EPP for Test Unit Ready */
918 if (autodetect
&& (ppb
& 0x0007) == 0x0000)
919 dev
->mode
= PPA_EPP_8
;
922 ppa_connect(dev
, CONNECT_EPP_MAYBE
);
923 /* Select SCSI device */
924 if (!ppa_select(dev
, loop
)) {
928 printk(KERN_INFO
"ppa: Found device at ID %i, Attempting to use %s\n",
929 loop
, PPA_MODE_STRING
[dev
->mode
]);
931 /* Send SCSI command */
934 for (l
= 0; (l
< 6) && (status
); l
++)
935 status
= ppa_out(dev
, cmd
, 1);
939 ppa_connect(dev
, CONNECT_EPP_MAYBE
);
947 if (dev
->mode
!= old_mode
) {
948 dev
->mode
= old_mode
;
954 k
= 1000000; /* 1 Second */
959 } while (!(l
& 0x80) && (k
));
965 ppa_connect(dev
, CONNECT_EPP_MAYBE
);
966 ppa_reset_pulse(ppb
);
970 if (dev
->mode
!= old_mode
) {
971 dev
->mode
= old_mode
;
977 printk(KERN_INFO
"ppa: Communication established with ID %i using %s\n",
978 loop
, PPA_MODE_STRING
[dev
->mode
]);
979 ppa_connect(dev
, CONNECT_EPP_MAYBE
);
980 ppa_reset_pulse(ppb
);
989 static const struct scsi_host_template ppa_template
= {
990 .module
= THIS_MODULE
,
992 .show_info
= ppa_show_info
,
993 .write_info
= ppa_write_info
,
994 .name
= "Iomega VPI0 (ppa) interface",
995 .queuecommand
= ppa_queuecommand
,
996 .eh_abort_handler
= ppa_abort
,
997 .eh_host_reset_handler
= ppa_reset
,
998 .bios_param
= ppa_biosparam
,
1000 .sg_tablesize
= SG_ALL
,
1002 .cmd_size
= sizeof(struct scsi_pointer
),
1005 /***************************************************************************
1006 * Parallel port probing routines *
1007 ***************************************************************************/
1009 static LIST_HEAD(ppa_hosts
);
1012 * Finds the first available device number that can be alloted to the
1013 * new ppa device and returns the address of the previous node so that
1014 * we can add to the tail and have a list in the ascending order.
1017 static inline ppa_struct
*find_parent(void)
1019 ppa_struct
*dev
, *par
= NULL
;
1020 unsigned int cnt
= 0;
1022 if (list_empty(&ppa_hosts
))
1025 list_for_each_entry(dev
, &ppa_hosts
, list
) {
1026 if (dev
->dev_no
!= cnt
)
1035 static int __ppa_attach(struct parport
*pb
)
1037 struct Scsi_Host
*host
;
1038 DECLARE_WAIT_QUEUE_HEAD_ONSTACK(waiting
);
1040 ppa_struct
*dev
, *temp
;
1043 struct pardev_cb ppa_cb
;
1045 dev
= kzalloc(sizeof(ppa_struct
), GFP_KERNEL
);
1049 dev
->mode
= mode
< PPA_UNKNOWN
? mode
: PPA_AUTODETECT
;
1050 dev
->recon_tmo
= PPA_RECON_TMO
;
1051 init_waitqueue_head(&waiting
);
1052 temp
= find_parent();
1054 dev
->dev_no
= temp
->dev_no
+ 1;
1056 memset(&ppa_cb
, 0, sizeof(ppa_cb
));
1057 ppa_cb
.private = dev
;
1058 ppa_cb
.wakeup
= ppa_wakeup
;
1060 dev
->dev
= parport_register_dev_model(pb
, "ppa", &ppa_cb
, dev
->dev_no
);
1065 /* Claim the bus so it remembers what we do to the control
1066 * registers. [ CTR and ECP ]
1069 dev
->waiting
= &waiting
;
1070 prepare_to_wait(&waiting
, &wait
, TASK_UNINTERRUPTIBLE
);
1071 if (ppa_pb_claim(dev
))
1072 schedule_timeout(3 * HZ
);
1074 printk(KERN_ERR
"ppa%d: failed to claim parport because "
1075 "a pardevice is owning the port for too long "
1076 "time!\n", pb
->number
);
1077 ppa_pb_dismiss(dev
);
1078 dev
->waiting
= NULL
;
1079 finish_wait(&waiting
, &wait
);
1082 dev
->waiting
= NULL
;
1083 finish_wait(&waiting
, &wait
);
1084 dev
->base
= dev
->dev
->port
->base
;
1085 w_ctr(dev
->base
, 0x0c);
1087 /* Done configuration */
1089 err
= ppa_init(dev
);
1090 ppa_pb_release(dev
);
1095 /* now the glue ... */
1096 if (dev
->mode
== PPA_NIBBLE
|| dev
->mode
== PPA_PS2
)
1101 INIT_DELAYED_WORK(&dev
->ppa_tq
, ppa_interrupt
);
1104 host
= scsi_host_alloc(&ppa_template
, sizeof(ppa_struct
*));
1107 host
->no_highmem
= true;
1108 host
->io_port
= pb
->base
;
1109 host
->n_io_port
= ports
;
1110 host
->dma_channel
= -1;
1111 host
->unique_id
= pb
->number
;
1112 *(ppa_struct
**)&host
->hostdata
= dev
;
1114 list_add_tail(&dev
->list
, &ppa_hosts
);
1115 err
= scsi_add_host(host
, NULL
);
1118 scsi_scan_host(host
);
1121 list_del_init(&dev
->list
);
1122 scsi_host_put(host
);
1124 parport_unregister_device(dev
->dev
);
1130 static void ppa_attach(struct parport
*pb
)
1135 static void ppa_detach(struct parport
*pb
)
1138 list_for_each_entry(dev
, &ppa_hosts
, list
) {
1139 if (dev
->dev
->port
== pb
) {
1140 list_del_init(&dev
->list
);
1141 scsi_remove_host(dev
->host
);
1142 scsi_host_put(dev
->host
);
1143 parport_unregister_device(dev
->dev
);
1150 static struct parport_driver ppa_driver
= {
1152 .match_port
= ppa_attach
,
1153 .detach
= ppa_detach
,
1155 module_parport_driver(ppa_driver
);
1157 MODULE_DESCRIPTION("IOMEGA PPA3 parallel port SCSI host adapter driver");
1158 MODULE_LICENSE("GPL");