2 * USB FTDI client driver for Elan Digital Systems's Uxxx adapters
4 * Copyright(C) 2006 Elan Digital Systems Limited
5 * http://www.elandigitalsystems.com
7 * Author and Maintainer - Tony Olech - Elan Digital Systems
8 * tony.olech@elandigitalsystems.com
10 * This program is free software;you can redistribute it and/or
11 * modify it under the terms of the GNU General Public License as
12 * published by the Free Software Foundation, version 2.
15 * This driver was written by Tony Olech(tony.olech@elandigitalsystems.com)
16 * based on various USB client drivers in the 2.6.15 linux kernel
17 * with constant reference to the 3rd Edition of Linux Device Drivers
18 * published by O'Reilly
20 * The U132 adapter is a USB to CardBus adapter specifically designed
21 * for PC cards that contain an OHCI host controller. Typical PC cards
22 * are the Orange Mobile 3G Option GlobeTrotter Fusion card.
24 * The U132 adapter will *NOT *work with PC cards that do not contain
25 * an OHCI controller. A simple way to test whether a PC card has an
26 * OHCI controller as an interface is to insert the PC card directly
27 * into a laptop(or desktop) with a CardBus slot and if "lspci" shows
28 * a new USB controller and "lsusb -v" shows a new OHCI Host Controller
29 * then there is a good chance that the U132 adapter will support the
30 * PC card.(you also need the specific client driver for the PC card)
32 * Please inform the Author and Maintainer about any PC cards that
33 * contain OHCI Host Controller and work when directly connected to
34 * an embedded CardBus slot but do not work when they are connected
35 * via an ELAN U132 adapter.
38 #include <linux/kernel.h>
39 #include <linux/errno.h>
40 #include <linux/init.h>
41 #include <linux/list.h>
42 #include <linux/ioctl.h>
43 #include <linux/pci_ids.h>
44 #include <linux/slab.h>
45 #include <linux/module.h>
46 #include <linux/kref.h>
47 #include <asm/uaccess.h>
48 #include <linux/usb.h>
49 #include <linux/workqueue.h>
50 #include <linux/platform_device.h>
51 MODULE_AUTHOR("Tony Olech");
52 MODULE_DESCRIPTION("FTDI ELAN driver");
53 MODULE_LICENSE("GPL");
54 #define INT_MODULE_PARM(n, v) static int n = v;module_param(n, int, 0444)
55 static int distrust_firmware
= 1;
56 module_param(distrust_firmware
, bool, 0);
57 MODULE_PARM_DESC(distrust_firmware
, "true to distrust firmware power/overcurren"
59 extern struct platform_driver u132_platform_driver
;
60 static struct workqueue_struct
*status_queue
;
61 static struct workqueue_struct
*command_queue
;
62 static struct workqueue_struct
*respond_queue
;
64 * ftdi_module_lock exists to protect access to global variables
67 static struct semaphore ftdi_module_lock
;
68 static int ftdi_instances
= 0;
69 static struct list_head ftdi_static_list
;
71 * end of the global variables protected by ftdi_module_lock
75 #include "../core/hcd.h"
76 #include "../host/ohci.h"
77 /* Define these values to match your devices*/
78 #define USB_FTDI_ELAN_VENDOR_ID 0x0403
79 #define USB_FTDI_ELAN_PRODUCT_ID 0xd6ea
80 /* table of devices that work with this driver*/
81 static struct usb_device_id ftdi_elan_table
[] = {
82 {USB_DEVICE(USB_FTDI_ELAN_VENDOR_ID
, USB_FTDI_ELAN_PRODUCT_ID
)},
83 { /* Terminating entry */ }
86 MODULE_DEVICE_TABLE(usb
, ftdi_elan_table
);
87 /* only the jtag(firmware upgrade device) interface requires
88 * a device file and corresponding minor number, but the
89 * interface is created unconditionally - I suppose it could
90 * be configured or not according to a module parameter.
91 * But since we(now) require one interface per device,
92 * and since it unlikely that a normal installation would
93 * require more than a couple of elan-ftdi devices, 8 seems
94 * like a reasonable limit to have here, and if someone
95 * really requires more than 8 devices, then they can frig the
98 #define USB_FTDI_ELAN_MINOR_BASE 192
99 #define COMMAND_BITS 5
100 #define COMMAND_SIZE (1<<COMMAND_BITS)
101 #define COMMAND_MASK (COMMAND_SIZE-1)
102 struct u132_command
{
111 #define RESPOND_BITS 5
112 #define RESPOND_SIZE (1<<RESPOND_BITS)
113 #define RESPOND_MASK (RESPOND_SIZE-1)
114 struct u132_respond
{
119 struct completion wait_completion
;
134 void (*callback
) (void *endp
, struct urb
*urb
, u8
*buf
, int len
,
135 int toggle_bits
, int error_count
, int condition_code
,
136 int repeat_number
, int halted
, int skipped
, int actual
,
139 /* Structure to hold all of our device specific stuff*/
141 struct list_head ftdi_list
;
142 struct semaphore u132_lock
;
145 struct u132_command command
[COMMAND_SIZE
];
148 struct u132_respond respond
[RESPOND_SIZE
];
149 struct u132_target target
[4];
150 char device_name
[16];
151 unsigned synchronized
:1;
152 unsigned enumerated
:1;
153 unsigned registered
:1;
154 unsigned initialized
:1;
155 unsigned card_ejected
:1;
161 int status_queue_delay
;
162 struct semaphore sw_lock
;
163 struct usb_device
*udev
;
164 struct usb_interface
*interface
;
165 struct usb_class_driver
*class;
166 struct delayed_work status_work
;
167 struct delayed_work command_work
;
168 struct delayed_work respond_work
;
169 struct u132_platform_data platform_data
;
170 struct resource resources
[0];
171 struct platform_device platform_dev
;
172 unsigned char *bulk_in_buffer
;
176 __u8 bulk_in_endpointAddr
;
177 __u8 bulk_out_endpointAddr
;
180 u8 response
[4 + 1024];
185 #define kref_to_usb_ftdi(d) container_of(d, struct usb_ftdi, kref)
186 #define platform_device_to_usb_ftdi(d) container_of(d, struct usb_ftdi, \
188 static struct usb_driver ftdi_elan_driver
;
189 static void ftdi_elan_delete(struct kref
*kref
)
191 struct usb_ftdi
*ftdi
= kref_to_usb_ftdi(kref
);
192 dev_warn(&ftdi
->udev
->dev
, "FREEING ftdi=%p\n", ftdi
);
193 usb_put_dev(ftdi
->udev
);
194 ftdi
->disconnected
+= 1;
195 down(&ftdi_module_lock
);
196 list_del_init(&ftdi
->ftdi_list
);
198 up(&ftdi_module_lock
);
199 kfree(ftdi
->bulk_in_buffer
);
200 ftdi
->bulk_in_buffer
= NULL
;
203 static void ftdi_elan_put_kref(struct usb_ftdi
*ftdi
)
205 kref_put(&ftdi
->kref
, ftdi_elan_delete
);
208 static void ftdi_elan_get_kref(struct usb_ftdi
*ftdi
)
210 kref_get(&ftdi
->kref
);
213 static void ftdi_elan_init_kref(struct usb_ftdi
*ftdi
)
215 kref_init(&ftdi
->kref
);
218 static void ftdi_status_requeue_work(struct usb_ftdi
*ftdi
, unsigned int delta
)
220 if (!queue_delayed_work(status_queue
, &ftdi
->status_work
, delta
))
221 kref_put(&ftdi
->kref
, ftdi_elan_delete
);
224 static void ftdi_status_queue_work(struct usb_ftdi
*ftdi
, unsigned int delta
)
226 if (queue_delayed_work(status_queue
, &ftdi
->status_work
, delta
))
227 kref_get(&ftdi
->kref
);
230 static void ftdi_status_cancel_work(struct usb_ftdi
*ftdi
)
232 if (cancel_delayed_work(&ftdi
->status_work
))
233 kref_put(&ftdi
->kref
, ftdi_elan_delete
);
236 static void ftdi_command_requeue_work(struct usb_ftdi
*ftdi
, unsigned int delta
)
238 if (!queue_delayed_work(command_queue
, &ftdi
->command_work
, delta
))
239 kref_put(&ftdi
->kref
, ftdi_elan_delete
);
242 static void ftdi_command_queue_work(struct usb_ftdi
*ftdi
, unsigned int delta
)
244 if (queue_delayed_work(command_queue
, &ftdi
->command_work
, delta
))
245 kref_get(&ftdi
->kref
);
248 static void ftdi_command_cancel_work(struct usb_ftdi
*ftdi
)
250 if (cancel_delayed_work(&ftdi
->command_work
))
251 kref_put(&ftdi
->kref
, ftdi_elan_delete
);
254 static void ftdi_response_requeue_work(struct usb_ftdi
*ftdi
,
257 if (!queue_delayed_work(respond_queue
, &ftdi
->respond_work
, delta
))
258 kref_put(&ftdi
->kref
, ftdi_elan_delete
);
261 static void ftdi_respond_queue_work(struct usb_ftdi
*ftdi
, unsigned int delta
)
263 if (queue_delayed_work(respond_queue
, &ftdi
->respond_work
, delta
))
264 kref_get(&ftdi
->kref
);
267 static void ftdi_response_cancel_work(struct usb_ftdi
*ftdi
)
269 if (cancel_delayed_work(&ftdi
->respond_work
))
270 kref_put(&ftdi
->kref
, ftdi_elan_delete
);
273 void ftdi_elan_gone_away(struct platform_device
*pdev
)
275 struct usb_ftdi
*ftdi
= platform_device_to_usb_ftdi(pdev
);
276 ftdi
->gone_away
+= 1;
277 ftdi_elan_put_kref(ftdi
);
281 EXPORT_SYMBOL_GPL(ftdi_elan_gone_away
);
282 static void ftdi_release_platform_dev(struct device
*dev
)
287 static void ftdi_elan_do_callback(struct usb_ftdi
*ftdi
,
288 struct u132_target
*target
, u8
*buffer
, int length
);
289 static void ftdi_elan_kick_command_queue(struct usb_ftdi
*ftdi
);
290 static void ftdi_elan_kick_respond_queue(struct usb_ftdi
*ftdi
);
291 static int ftdi_elan_setupOHCI(struct usb_ftdi
*ftdi
);
292 static int ftdi_elan_checkingPCI(struct usb_ftdi
*ftdi
);
293 static int ftdi_elan_enumeratePCI(struct usb_ftdi
*ftdi
);
294 static int ftdi_elan_synchronize(struct usb_ftdi
*ftdi
);
295 static int ftdi_elan_stuck_waiting(struct usb_ftdi
*ftdi
);
296 static int ftdi_elan_command_engine(struct usb_ftdi
*ftdi
);
297 static int ftdi_elan_respond_engine(struct usb_ftdi
*ftdi
);
298 static int ftdi_elan_hcd_init(struct usb_ftdi
*ftdi
)
301 if (ftdi
->platform_dev
.dev
.parent
)
303 ftdi_elan_get_kref(ftdi
);
304 ftdi
->platform_data
.potpg
= 100;
305 ftdi
->platform_data
.reset
= NULL
;
306 ftdi
->platform_dev
.id
= ftdi
->sequence_num
;
307 ftdi
->platform_dev
.resource
= ftdi
->resources
;
308 ftdi
->platform_dev
.num_resources
= ARRAY_SIZE(ftdi
->resources
);
309 ftdi
->platform_dev
.dev
.platform_data
= &ftdi
->platform_data
;
310 ftdi
->platform_dev
.dev
.parent
= NULL
;
311 ftdi
->platform_dev
.dev
.release
= ftdi_release_platform_dev
;
312 ftdi
->platform_dev
.dev
.dma_mask
= NULL
;
313 snprintf(ftdi
->device_name
, sizeof(ftdi
->device_name
), "u132_hcd");
314 ftdi
->platform_dev
.name
= ftdi
->device_name
;
315 dev_info(&ftdi
->udev
->dev
, "requesting module '%s'\n", "u132_hcd");
316 request_module("u132_hcd");
317 dev_info(&ftdi
->udev
->dev
, "registering '%s'\n",
318 ftdi
->platform_dev
.name
);
319 result
= platform_device_register(&ftdi
->platform_dev
);
323 static void ftdi_elan_abandon_completions(struct usb_ftdi
*ftdi
)
325 down(&ftdi
->u132_lock
);
326 while (ftdi
->respond_next
> ftdi
->respond_head
) {
327 struct u132_respond
*respond
= &ftdi
->respond
[RESPOND_MASK
&
328 ftdi
->respond_head
++];
329 *respond
->result
= -ESHUTDOWN
;
331 complete(&respond
->wait_completion
);
332 } up(&ftdi
->u132_lock
);
335 static void ftdi_elan_abandon_targets(struct usb_ftdi
*ftdi
)
338 down(&ftdi
->u132_lock
);
339 while (ed_number
-- > 0) {
340 struct u132_target
*target
= &ftdi
->target
[ed_number
];
341 if (target
->active
== 1) {
342 target
->condition_code
= TD_DEVNOTRESP
;
343 up(&ftdi
->u132_lock
);
344 ftdi_elan_do_callback(ftdi
, target
, NULL
, 0);
345 down(&ftdi
->u132_lock
);
351 up(&ftdi
->u132_lock
);
354 static void ftdi_elan_flush_targets(struct usb_ftdi
*ftdi
)
357 down(&ftdi
->u132_lock
);
358 while (ed_number
-- > 0) {
359 struct u132_target
*target
= &ftdi
->target
[ed_number
];
360 target
->abandoning
= 1;
361 wait_1
:if (target
->active
== 1) {
362 int command_size
= ftdi
->command_next
-
364 if (command_size
< COMMAND_SIZE
) {
365 struct u132_command
*command
= &ftdi
->command
[
366 COMMAND_MASK
& ftdi
->command_next
];
367 command
->header
= 0x80 | (ed_number
<< 5) | 0x4;
368 command
->length
= 0x00;
369 command
->address
= 0x00;
370 command
->width
= 0x00;
371 command
->follows
= 0;
373 command
->buffer
= &command
->value
;
374 ftdi
->command_next
+= 1;
375 ftdi_elan_kick_command_queue(ftdi
);
377 up(&ftdi
->u132_lock
);
379 down(&ftdi
->u132_lock
);
383 wait_2
:if (target
->active
== 1) {
384 int command_size
= ftdi
->command_next
-
386 if (command_size
< COMMAND_SIZE
) {
387 struct u132_command
*command
= &ftdi
->command
[
388 COMMAND_MASK
& ftdi
->command_next
];
389 command
->header
= 0x90 | (ed_number
<< 5);
390 command
->length
= 0x00;
391 command
->address
= 0x00;
392 command
->width
= 0x00;
393 command
->follows
= 0;
395 command
->buffer
= &command
->value
;
396 ftdi
->command_next
+= 1;
397 ftdi_elan_kick_command_queue(ftdi
);
399 up(&ftdi
->u132_lock
);
401 down(&ftdi
->u132_lock
);
409 up(&ftdi
->u132_lock
);
412 static void ftdi_elan_cancel_targets(struct usb_ftdi
*ftdi
)
415 down(&ftdi
->u132_lock
);
416 while (ed_number
-- > 0) {
417 struct u132_target
*target
= &ftdi
->target
[ed_number
];
418 target
->abandoning
= 1;
419 wait
:if (target
->active
== 1) {
420 int command_size
= ftdi
->command_next
-
422 if (command_size
< COMMAND_SIZE
) {
423 struct u132_command
*command
= &ftdi
->command
[
424 COMMAND_MASK
& ftdi
->command_next
];
425 command
->header
= 0x80 | (ed_number
<< 5) | 0x4;
426 command
->length
= 0x00;
427 command
->address
= 0x00;
428 command
->width
= 0x00;
429 command
->follows
= 0;
431 command
->buffer
= &command
->value
;
432 ftdi
->command_next
+= 1;
433 ftdi_elan_kick_command_queue(ftdi
);
435 up(&ftdi
->u132_lock
);
437 down(&ftdi
->u132_lock
);
445 up(&ftdi
->u132_lock
);
448 static void ftdi_elan_kick_command_queue(struct usb_ftdi
*ftdi
)
450 ftdi_command_queue_work(ftdi
, 0);
454 static void ftdi_elan_command_work(struct work_struct
*work
)
456 struct usb_ftdi
*ftdi
=
457 container_of(work
, struct usb_ftdi
, command_work
.work
);
459 if (ftdi
->disconnected
> 0) {
460 ftdi_elan_put_kref(ftdi
);
463 int retval
= ftdi_elan_command_engine(ftdi
);
464 if (retval
== -ESHUTDOWN
) {
465 ftdi
->disconnected
+= 1;
466 } else if (retval
== -ENODEV
) {
467 ftdi
->disconnected
+= 1;
469 dev_err(&ftdi
->udev
->dev
, "command error %d\n", retval
);
470 ftdi_command_requeue_work(ftdi
, msecs_to_jiffies(10));
475 static void ftdi_elan_kick_respond_queue(struct usb_ftdi
*ftdi
)
477 ftdi_respond_queue_work(ftdi
, 0);
481 static void ftdi_elan_respond_work(struct work_struct
*work
)
483 struct usb_ftdi
*ftdi
=
484 container_of(work
, struct usb_ftdi
, respond_work
.work
);
485 if (ftdi
->disconnected
> 0) {
486 ftdi_elan_put_kref(ftdi
);
489 int retval
= ftdi_elan_respond_engine(ftdi
);
491 } else if (retval
== -ESHUTDOWN
) {
492 ftdi
->disconnected
+= 1;
493 } else if (retval
== -ENODEV
) {
494 ftdi
->disconnected
+= 1;
495 } else if (retval
== -EILSEQ
) {
496 ftdi
->disconnected
+= 1;
498 ftdi
->disconnected
+= 1;
499 dev_err(&ftdi
->udev
->dev
, "respond error %d\n", retval
);
501 if (ftdi
->disconnected
> 0) {
502 ftdi_elan_abandon_completions(ftdi
);
503 ftdi_elan_abandon_targets(ftdi
);
505 ftdi_response_requeue_work(ftdi
, msecs_to_jiffies(10));
512 * the sw_lock is initially held and will be freed
513 * after the FTDI has been synchronized
516 static void ftdi_elan_status_work(struct work_struct
*work
)
518 struct usb_ftdi
*ftdi
=
519 container_of(work
, struct usb_ftdi
, status_work
.work
);
520 int work_delay_in_msec
= 0;
521 if (ftdi
->disconnected
> 0) {
522 ftdi_elan_put_kref(ftdi
);
524 } else if (ftdi
->synchronized
== 0) {
525 down(&ftdi
->sw_lock
);
526 if (ftdi_elan_synchronize(ftdi
) == 0) {
527 ftdi
->synchronized
= 1;
528 ftdi_command_queue_work(ftdi
, 1);
529 ftdi_respond_queue_work(ftdi
, 1);
531 work_delay_in_msec
= 100;
533 dev_err(&ftdi
->udev
->dev
, "synchronize failed\n");
535 work_delay_in_msec
= 10 *1000;
537 } else if (ftdi
->stuck_status
> 0) {
538 if (ftdi_elan_stuck_waiting(ftdi
) == 0) {
539 ftdi
->stuck_status
= 0;
540 ftdi
->synchronized
= 0;
541 } else if ((ftdi
->stuck_status
++ % 60) == 1) {
542 dev_err(&ftdi
->udev
->dev
, "WRONG type of card inserted "
543 "- please remove\n");
545 dev_err(&ftdi
->udev
->dev
, "WRONG type of card inserted "
546 "- checked %d times\n", ftdi
->stuck_status
);
547 work_delay_in_msec
= 100;
548 } else if (ftdi
->enumerated
== 0) {
549 if (ftdi_elan_enumeratePCI(ftdi
) == 0) {
550 ftdi
->enumerated
= 1;
551 work_delay_in_msec
= 250;
553 work_delay_in_msec
= 1000;
554 } else if (ftdi
->initialized
== 0) {
555 if (ftdi_elan_setupOHCI(ftdi
) == 0) {
556 ftdi
->initialized
= 1;
557 work_delay_in_msec
= 500;
559 dev_err(&ftdi
->udev
->dev
, "initialized failed - trying "
560 "again in 10 seconds\n");
561 work_delay_in_msec
= 1 *1000;
563 } else if (ftdi
->registered
== 0) {
564 work_delay_in_msec
= 10;
565 if (ftdi_elan_hcd_init(ftdi
) == 0) {
566 ftdi
->registered
= 1;
568 dev_err(&ftdi
->udev
->dev
, "register failed\n");
569 work_delay_in_msec
= 250;
571 if (ftdi_elan_checkingPCI(ftdi
) == 0) {
572 work_delay_in_msec
= 250;
573 } else if (ftdi
->controlreg
& 0x00400000) {
574 if (ftdi
->gone_away
> 0) {
575 dev_err(&ftdi
->udev
->dev
, "PCI device eject con"
576 "firmed platform_dev.dev.parent=%p plat"
578 ftdi
->platform_dev
.dev
.parent
,
579 &ftdi
->platform_dev
.dev
);
580 platform_device_unregister(&ftdi
->platform_dev
);
581 ftdi
->platform_dev
.dev
.parent
= NULL
;
582 ftdi
->registered
= 0;
583 ftdi
->enumerated
= 0;
584 ftdi
->card_ejected
= 0;
585 ftdi
->initialized
= 0;
588 ftdi_elan_flush_targets(ftdi
);
589 work_delay_in_msec
= 250;
591 dev_err(&ftdi
->udev
->dev
, "PCI device has disappeared\n"
593 ftdi_elan_cancel_targets(ftdi
);
594 work_delay_in_msec
= 500;
595 ftdi
->enumerated
= 0;
596 ftdi
->initialized
= 0;
599 if (ftdi
->disconnected
> 0) {
600 ftdi_elan_put_kref(ftdi
);
603 ftdi_status_requeue_work(ftdi
,
604 msecs_to_jiffies(work_delay_in_msec
));
611 * file_operations for the jtag interface
613 * the usage count for the device is incremented on open()
614 * and decremented on release()
616 static int ftdi_elan_open(struct inode
*inode
, struct file
*file
)
618 int subminor
= iminor(inode
);
619 struct usb_interface
*interface
= usb_find_interface(&ftdi_elan_driver
,
622 printk(KERN_ERR
"can't find device for minor %d\n", subminor
);
625 struct usb_ftdi
*ftdi
= usb_get_intfdata(interface
);
629 if (down_interruptible(&ftdi
->sw_lock
)) {
632 ftdi_elan_get_kref(ftdi
);
633 file
->private_data
= ftdi
;
640 static int ftdi_elan_release(struct inode
*inode
, struct file
*file
)
642 struct usb_ftdi
*ftdi
= (struct usb_ftdi
*)file
->private_data
;
645 up(&ftdi
->sw_lock
); /* decrement the count on our device */
646 ftdi_elan_put_kref(ftdi
);
651 #define FTDI_ELAN_IOC_MAGIC 0xA1
652 #define FTDI_ELAN_IOCDEBUG _IOC(_IOC_WRITE, FTDI_ELAN_IOC_MAGIC, 1, 132)
653 static int ftdi_elan_ioctl(struct inode
*inode
, struct file
*file
,
654 unsigned int cmd
, unsigned long arg
)
657 case FTDI_ELAN_IOCDEBUG
:{
659 int size
= strncpy_from_user(line
,
660 (const char __user
*)arg
, sizeof(line
));
664 printk(KERN_ERR
"TODO: ioctl %s\n", line
);
676 * blocking bulk reads are used to get data from the device
679 static ssize_t
ftdi_elan_read(struct file
*file
, char __user
*buffer
,
680 size_t count
, loff_t
*ppos
)
682 char data
[30 *3 + 4];
684 int m
= (sizeof(data
) - 1) / 3;
686 int retry_on_empty
= 10;
687 int retry_on_timeout
= 5;
688 struct usb_ftdi
*ftdi
= (struct usb_ftdi
*)file
->private_data
;
689 if (ftdi
->disconnected
> 0) {
693 have
:if (ftdi
->bulk_in_left
> 0) {
695 char *p
= ++ftdi
->bulk_in_last
+ ftdi
->bulk_in_buffer
;
696 ftdi
->bulk_in_left
-= 1;
697 if (bytes_read
< m
) {
698 d
+= sprintf(d
, " %02X", 0x000000FF & *p
);
699 } else if (bytes_read
> m
) {
701 d
+= sprintf(d
, " ..");
702 if (copy_to_user(buffer
++, p
, 1)) {
711 more
:if (count
> 0) {
712 int packet_bytes
= 0;
713 int retval
= usb_bulk_msg(ftdi
->udev
,
714 usb_rcvbulkpipe(ftdi
->udev
, ftdi
->bulk_in_endpointAddr
),
715 ftdi
->bulk_in_buffer
, ftdi
->bulk_in_size
,
716 &packet_bytes
, msecs_to_jiffies(50));
717 if (packet_bytes
> 2) {
718 ftdi
->bulk_in_left
= packet_bytes
- 2;
719 ftdi
->bulk_in_last
= 1;
721 } else if (retval
== -ETIMEDOUT
) {
722 if (retry_on_timeout
-- > 0) {
724 } else if (bytes_read
> 0) {
728 } else if (retval
== 0) {
729 if (retry_on_empty
-- > 0) {
739 static void ftdi_elan_write_bulk_callback(struct urb
*urb
)
741 struct usb_ftdi
*ftdi
= (struct usb_ftdi
*)urb
->context
;
742 if (urb
->status
&& !(urb
->status
== -ENOENT
|| urb
->status
==
743 -ECONNRESET
|| urb
->status
== -ESHUTDOWN
)) {
744 dev_err(&ftdi
->udev
->dev
, "urb=%p write bulk status received: %"
745 "d\n", urb
, urb
->status
);
747 usb_buffer_free(urb
->dev
, urb
->transfer_buffer_length
,
748 urb
->transfer_buffer
, urb
->transfer_dma
);
751 static int fill_buffer_with_all_queued_commands(struct usb_ftdi
*ftdi
,
752 char *buf
, int command_size
, int total_size
)
756 int I
= command_size
;
757 int i
= ftdi
->command_head
;
759 struct u132_command
*command
= &ftdi
->command
[COMMAND_MASK
&
761 int F
= command
->follows
;
762 u8
*f
= command
->buffer
;
763 if (command
->header
& 0x80) {
764 ed_commands
|= 1 << (0x3 & (command
->header
>> 5));
766 buf
[b
++] = command
->header
;
767 buf
[b
++] = (command
->length
>> 0) & 0x00FF;
768 buf
[b
++] = (command
->length
>> 8) & 0x00FF;
769 buf
[b
++] = command
->address
;
770 buf
[b
++] = command
->width
;
778 static int ftdi_elan_total_command_size(struct usb_ftdi
*ftdi
, int command_size
)
781 int I
= command_size
;
782 int i
= ftdi
->command_head
;
784 struct u132_command
*command
= &ftdi
->command
[COMMAND_MASK
&
786 total_size
+= 5 + command
->follows
;
790 static int ftdi_elan_command_engine(struct usb_ftdi
*ftdi
)
797 int command_size
= ftdi
->command_next
- ftdi
->command_head
;
798 if (command_size
== 0)
800 total_size
= ftdi_elan_total_command_size(ftdi
, command_size
);
801 urb
= usb_alloc_urb(0, GFP_KERNEL
);
803 dev_err(&ftdi
->udev
->dev
, "could not get a urb to write %d comm"
804 "ands totaling %d bytes to the Uxxx\n", command_size
,
808 buf
= usb_buffer_alloc(ftdi
->udev
, total_size
, GFP_KERNEL
,
811 dev_err(&ftdi
->udev
->dev
, "could not get a buffer to write %d c"
812 "ommands totaling %d bytes to the Uxxx\n", command_size
,
817 ed_commands
= fill_buffer_with_all_queued_commands(ftdi
, buf
,
818 command_size
, total_size
);
819 usb_fill_bulk_urb(urb
, ftdi
->udev
, usb_sndbulkpipe(ftdi
->udev
,
820 ftdi
->bulk_out_endpointAddr
), buf
, total_size
,
821 ftdi_elan_write_bulk_callback
, ftdi
);
822 urb
->transfer_flags
|= URB_NO_TRANSFER_DMA_MAP
;
824 char diag
[40 *3 + 4];
828 int s
= (sizeof(diag
) - 1) / 3;
830 while (s
-- > 0 && m
-- > 0) {
831 if (s
> 0 || m
== 0) {
832 d
+= sprintf(d
, " %02X", *c
++);
834 d
+= sprintf(d
, " ..");
837 retval
= usb_submit_urb(urb
, GFP_KERNEL
);
839 dev_err(&ftdi
->udev
->dev
, "failed %d to submit urb %p to write "
840 "%d commands totaling %d bytes to the Uxxx\n", retval
,
841 urb
, command_size
, total_size
);
842 usb_buffer_free(ftdi
->udev
, total_size
, buf
, urb
->transfer_dma
);
846 usb_free_urb(urb
); /* release our reference to this urb,
847 the USB core will eventually free it entirely */
848 ftdi
->command_head
+= command_size
;
849 ftdi_elan_kick_respond_queue(ftdi
);
853 static void ftdi_elan_do_callback(struct usb_ftdi
*ftdi
,
854 struct u132_target
*target
, u8
*buffer
, int length
)
856 struct urb
*urb
= target
->urb
;
857 int halted
= target
->halted
;
858 int skipped
= target
->skipped
;
859 int actual
= target
->actual
;
860 int non_null
= target
->non_null
;
861 int toggle_bits
= target
->toggle_bits
;
862 int error_count
= target
->error_count
;
863 int condition_code
= target
->condition_code
;
864 int repeat_number
= target
->repeat_number
;
865 void (*callback
) (void *, struct urb
*, u8
*, int, int, int, int, int,
866 int, int, int, int) = target
->callback
;
868 target
->callback
= NULL
;
869 (*callback
) (target
->endp
, urb
, buffer
, length
, toggle_bits
,
870 error_count
, condition_code
, repeat_number
, halted
, skipped
,
874 static char *have_ed_set_response(struct usb_ftdi
*ftdi
,
875 struct u132_target
*target
, u16 ed_length
, int ed_number
, int ed_type
,
878 int payload
= (ed_length
>> 0) & 0x07FF;
879 down(&ftdi
->u132_lock
);
881 target
->non_null
= (ed_length
>> 15) & 0x0001;
882 target
->repeat_number
= (ed_length
>> 11) & 0x000F;
883 if (ed_type
== 0x02) {
884 if (payload
== 0 || target
->abandoning
> 0) {
885 target
->abandoning
= 0;
886 up(&ftdi
->u132_lock
);
887 ftdi_elan_do_callback(ftdi
, target
, 4 + ftdi
->response
,
892 return ftdi
->response
;
894 ftdi
->expected
= 4 + payload
;
896 up(&ftdi
->u132_lock
);
899 } else if (ed_type
== 0x03) {
900 if (payload
== 0 || target
->abandoning
> 0) {
901 target
->abandoning
= 0;
902 up(&ftdi
->u132_lock
);
903 ftdi_elan_do_callback(ftdi
, target
, 4 + ftdi
->response
,
908 return ftdi
->response
;
910 ftdi
->expected
= 4 + payload
;
912 up(&ftdi
->u132_lock
);
915 } else if (ed_type
== 0x01) {
916 target
->abandoning
= 0;
917 up(&ftdi
->u132_lock
);
918 ftdi_elan_do_callback(ftdi
, target
, 4 + ftdi
->response
,
923 return ftdi
->response
;
925 target
->abandoning
= 0;
926 up(&ftdi
->u132_lock
);
927 ftdi_elan_do_callback(ftdi
, target
, 4 + ftdi
->response
,
932 return ftdi
->response
;
936 static char *have_ed_get_response(struct usb_ftdi
*ftdi
,
937 struct u132_target
*target
, u16 ed_length
, int ed_number
, int ed_type
,
940 down(&ftdi
->u132_lock
);
941 target
->condition_code
= TD_DEVNOTRESP
;
942 target
->actual
= (ed_length
>> 0) & 0x01FF;
943 target
->non_null
= (ed_length
>> 15) & 0x0001;
944 target
->repeat_number
= (ed_length
>> 11) & 0x000F;
945 up(&ftdi
->u132_lock
);
947 ftdi_elan_do_callback(ftdi
, target
, NULL
, 0);
948 target
->abandoning
= 0;
952 return ftdi
->response
;
957 * The engine tries to empty the FTDI fifo
959 * all responses found in the fifo data are dispatched thus
960 * the response buffer can only ever hold a maximum sized
961 * response from the Uxxx.
964 static int ftdi_elan_respond_engine(struct usb_ftdi
*ftdi
)
966 u8
*b
= ftdi
->response
+ ftdi
->recieved
;
968 int retry_on_empty
= 1;
969 int retry_on_timeout
= 3;
970 int empty_packets
= 0;
972 int packet_bytes
= 0;
973 int retval
= usb_bulk_msg(ftdi
->udev
,
974 usb_rcvbulkpipe(ftdi
->udev
, ftdi
->bulk_in_endpointAddr
),
975 ftdi
->bulk_in_buffer
, ftdi
->bulk_in_size
,
976 &packet_bytes
, msecs_to_jiffies(500));
977 char diag
[30 *3 + 4];
979 int m
= packet_bytes
;
980 u8
*c
= ftdi
->bulk_in_buffer
;
981 int s
= (sizeof(diag
) - 1) / 3;
983 while (s
-- > 0 && m
-- > 0) {
984 if (s
> 0 || m
== 0) {
985 d
+= sprintf(d
, " %02X", *c
++);
987 d
+= sprintf(d
, " ..");
989 if (packet_bytes
> 2) {
990 ftdi
->bulk_in_left
= packet_bytes
- 2;
991 ftdi
->bulk_in_last
= 1;
993 } else if (retval
== -ETIMEDOUT
) {
994 if (retry_on_timeout
-- > 0) {
995 dev_err(&ftdi
->udev
->dev
, "TIMED OUT with packe"
996 "t_bytes = %d with total %d bytes%s\n",
997 packet_bytes
, bytes_read
, diag
);
999 } else if (bytes_read
> 0) {
1000 dev_err(&ftdi
->udev
->dev
, "ONLY %d bytes%s\n",
1004 dev_err(&ftdi
->udev
->dev
, "TIMED OUT with packe"
1005 "t_bytes = %d with total %d bytes%s\n",
1006 packet_bytes
, bytes_read
, diag
);
1009 } else if (retval
== -EILSEQ
) {
1010 dev_err(&ftdi
->udev
->dev
, "error = %d with packet_bytes"
1011 " = %d with total %d bytes%s\n", retval
,
1012 packet_bytes
, bytes_read
, diag
);
1014 } else if (retval
) {
1015 dev_err(&ftdi
->udev
->dev
, "error = %d with packet_bytes"
1016 " = %d with total %d bytes%s\n", retval
,
1017 packet_bytes
, bytes_read
, diag
);
1019 } else if (packet_bytes
== 2) {
1020 unsigned char s0
= ftdi
->bulk_in_buffer
[0];
1021 unsigned char s1
= ftdi
->bulk_in_buffer
[1];
1023 if (s0
== 0x31 && s1
== 0x60) {
1024 if (retry_on_empty
-- > 0) {
1028 } else if (s0
== 0x31 && s1
== 0x00) {
1029 if (retry_on_empty
-- > 0) {
1034 if (retry_on_empty
-- > 0) {
1039 } else if (packet_bytes
== 1) {
1040 if (retry_on_empty
-- > 0) {
1045 if (retry_on_empty
-- > 0) {
1054 have
:if (ftdi
->bulk_in_left
> 0) {
1055 u8 c
= ftdi
->bulk_in_buffer
[++ftdi
->bulk_in_last
];
1057 ftdi
->bulk_in_left
-= 1;
1058 if (ftdi
->recieved
== 0 && c
== 0xFF) {
1062 if (++ftdi
->recieved
< ftdi
->expected
) {
1064 } else if (ftdi
->ed_found
) {
1065 int ed_number
= (ftdi
->response
[0] >> 5) & 0x03;
1066 u16 ed_length
= (ftdi
->response
[2] << 8) |
1068 struct u132_target
*target
= &ftdi
->target
[ed_number
];
1069 int payload
= (ed_length
>> 0) & 0x07FF;
1070 char diag
[30 *3 + 4];
1073 u8
*c
= 4 + ftdi
->response
;
1074 int s
= (sizeof(diag
) - 1) / 3;
1076 while (s
-- > 0 && m
-- > 0) {
1077 if (s
> 0 || m
== 0) {
1078 d
+= sprintf(d
, " %02X", *c
++);
1080 d
+= sprintf(d
, " ..");
1082 ftdi_elan_do_callback(ftdi
, target
, 4 + ftdi
->response
,
1089 } else if (ftdi
->expected
== 8) {
1091 int respond_head
= ftdi
->respond_head
++;
1092 struct u132_respond
*respond
= &ftdi
->respond
[
1093 RESPOND_MASK
& respond_head
];
1094 u32 data
= ftdi
->response
[7];
1096 data
|= ftdi
->response
[6];
1098 data
|= ftdi
->response
[5];
1100 data
|= ftdi
->response
[4];
1101 *respond
->value
= data
;
1102 *respond
->result
= 0;
1103 complete(&respond
->wait_completion
);
1108 buscmd
= (ftdi
->response
[0] >> 0) & 0x0F;
1109 if (buscmd
== 0x00) {
1110 } else if (buscmd
== 0x02) {
1111 } else if (buscmd
== 0x06) {
1112 } else if (buscmd
== 0x0A) {
1114 dev_err(&ftdi
->udev
->dev
, "Uxxx unknown(%0X) va"
1115 "lue = %08X\n", buscmd
, data
);
1118 if ((ftdi
->response
[0] & 0x80) == 0x00) {
1122 int ed_number
= (ftdi
->response
[0] >> 5) & 0x03;
1123 int ed_type
= (ftdi
->response
[0] >> 0) & 0x03;
1124 u16 ed_length
= (ftdi
->response
[2] << 8) |
1126 struct u132_target
*target
= &ftdi
->target
[
1128 target
->halted
= (ftdi
->response
[0] >> 3) &
1130 target
->skipped
= (ftdi
->response
[0] >> 2) &
1132 target
->toggle_bits
= (ftdi
->response
[3] >> 6)
1134 target
->error_count
= (ftdi
->response
[3] >> 4)
1136 target
->condition_code
= (ftdi
->response
[
1138 if ((ftdi
->response
[0] & 0x10) == 0x00) {
1139 b
= have_ed_set_response(ftdi
, target
,
1140 ed_length
, ed_number
, ed_type
,
1144 b
= have_ed_get_response(ftdi
, target
,
1145 ed_length
, ed_number
, ed_type
,
1157 * create a urb, and a buffer for it, and copy the data to the urb
1160 static ssize_t
ftdi_elan_write(struct file
*file
,
1161 const char __user
*user_buffer
, size_t count
,
1167 struct usb_ftdi
*ftdi
= file
->private_data
;
1169 if (ftdi
->disconnected
> 0) {
1175 urb
= usb_alloc_urb(0, GFP_KERNEL
);
1180 buf
= usb_buffer_alloc(ftdi
->udev
, count
, GFP_KERNEL
,
1181 &urb
->transfer_dma
);
1186 if (copy_from_user(buf
, user_buffer
, count
)) {
1190 usb_fill_bulk_urb(urb
, ftdi
->udev
, usb_sndbulkpipe(ftdi
->udev
,
1191 ftdi
->bulk_out_endpointAddr
), buf
, count
,
1192 ftdi_elan_write_bulk_callback
, ftdi
);
1193 urb
->transfer_flags
|= URB_NO_TRANSFER_DMA_MAP
;
1194 retval
= usb_submit_urb(urb
, GFP_KERNEL
);
1196 dev_err(&ftdi
->udev
->dev
, "failed submitting write urb, error %"
1205 usb_buffer_free(ftdi
->udev
, count
, buf
, urb
->transfer_dma
);
1212 static const struct file_operations ftdi_elan_fops
= {
1213 .owner
= THIS_MODULE
,
1214 .llseek
= no_llseek
,
1215 .ioctl
= ftdi_elan_ioctl
,
1216 .read
= ftdi_elan_read
,
1217 .write
= ftdi_elan_write
,
1218 .open
= ftdi_elan_open
,
1219 .release
= ftdi_elan_release
,
1223 * usb class driver info in order to get a minor number from the usb core,
1224 * and to have the device registered with the driver core
1226 static struct usb_class_driver ftdi_elan_jtag_class
= {
1227 .name
= "ftdi-%d-jtag",
1228 .fops
= &ftdi_elan_fops
,
1229 .minor_base
= USB_FTDI_ELAN_MINOR_BASE
,
1233 * the following definitions are for the
1234 * ELAN FPGA state machgine processor that
1235 * lies on the other side of the FTDI chip
1237 #define cPCIu132rd 0x0
1238 #define cPCIu132wr 0x1
1239 #define cPCIiord 0x2
1240 #define cPCIiowr 0x3
1241 #define cPCImemrd 0x6
1242 #define cPCImemwr 0x7
1243 #define cPCIcfgrd 0xA
1244 #define cPCIcfgwr 0xB
1245 #define cPCInull 0xF
1246 #define cU132cmd_status 0x0
1247 #define cU132flash 0x1
1248 #define cPIDsetup 0x0
1251 #define cPIDinonce 0x3
1252 #define cCCnoerror 0x0
1254 #define cCCbitstuff 0x2
1255 #define cCCtoggle 0x3
1256 #define cCCstall 0x4
1257 #define cCCnoresp 0x5
1258 #define cCCbadpid1 0x6
1259 #define cCCbadpid2 0x7
1260 #define cCCdataoverrun 0x8
1261 #define cCCdataunderrun 0x9
1262 #define cCCbuffoverrun 0xC
1263 #define cCCbuffunderrun 0xD
1264 #define cCCnotaccessed 0xF
1265 static int ftdi_elan_write_reg(struct usb_ftdi
*ftdi
, u32 data
)
1267 wait
:if (ftdi
->disconnected
> 0) {
1271 down(&ftdi
->u132_lock
);
1272 command_size
= ftdi
->command_next
- ftdi
->command_head
;
1273 if (command_size
< COMMAND_SIZE
) {
1274 struct u132_command
*command
= &ftdi
->command
[
1275 COMMAND_MASK
& ftdi
->command_next
];
1276 command
->header
= 0x00 | cPCIu132wr
;
1277 command
->length
= 0x04;
1278 command
->address
= 0x00;
1279 command
->width
= 0x00;
1280 command
->follows
= 4;
1281 command
->value
= data
;
1282 command
->buffer
= &command
->value
;
1283 ftdi
->command_next
+= 1;
1284 ftdi_elan_kick_command_queue(ftdi
);
1285 up(&ftdi
->u132_lock
);
1288 up(&ftdi
->u132_lock
);
1295 static int ftdi_elan_write_config(struct usb_ftdi
*ftdi
, int config_offset
,
1298 u8 addressofs
= config_offset
/ 4;
1299 wait
:if (ftdi
->disconnected
> 0) {
1303 down(&ftdi
->u132_lock
);
1304 command_size
= ftdi
->command_next
- ftdi
->command_head
;
1305 if (command_size
< COMMAND_SIZE
) {
1306 struct u132_command
*command
= &ftdi
->command
[
1307 COMMAND_MASK
& ftdi
->command_next
];
1308 command
->header
= 0x00 | (cPCIcfgwr
& 0x0F);
1309 command
->length
= 0x04;
1310 command
->address
= addressofs
;
1311 command
->width
= 0x00 | (width
& 0x0F);
1312 command
->follows
= 4;
1313 command
->value
= data
;
1314 command
->buffer
= &command
->value
;
1315 ftdi
->command_next
+= 1;
1316 ftdi_elan_kick_command_queue(ftdi
);
1317 up(&ftdi
->u132_lock
);
1320 up(&ftdi
->u132_lock
);
1327 static int ftdi_elan_write_pcimem(struct usb_ftdi
*ftdi
, int mem_offset
,
1330 u8 addressofs
= mem_offset
/ 4;
1331 wait
:if (ftdi
->disconnected
> 0) {
1335 down(&ftdi
->u132_lock
);
1336 command_size
= ftdi
->command_next
- ftdi
->command_head
;
1337 if (command_size
< COMMAND_SIZE
) {
1338 struct u132_command
*command
= &ftdi
->command
[
1339 COMMAND_MASK
& ftdi
->command_next
];
1340 command
->header
= 0x00 | (cPCImemwr
& 0x0F);
1341 command
->length
= 0x04;
1342 command
->address
= addressofs
;
1343 command
->width
= 0x00 | (width
& 0x0F);
1344 command
->follows
= 4;
1345 command
->value
= data
;
1346 command
->buffer
= &command
->value
;
1347 ftdi
->command_next
+= 1;
1348 ftdi_elan_kick_command_queue(ftdi
);
1349 up(&ftdi
->u132_lock
);
1352 up(&ftdi
->u132_lock
);
1359 int usb_ftdi_elan_write_pcimem(struct platform_device
*pdev
, int mem_offset
,
1362 struct usb_ftdi
*ftdi
= platform_device_to_usb_ftdi(pdev
);
1363 return ftdi_elan_write_pcimem(ftdi
, mem_offset
, width
, data
);
1367 EXPORT_SYMBOL_GPL(usb_ftdi_elan_write_pcimem
);
1368 static int ftdi_elan_read_reg(struct usb_ftdi
*ftdi
, u32
*data
)
1370 wait
:if (ftdi
->disconnected
> 0) {
1375 down(&ftdi
->u132_lock
);
1376 command_size
= ftdi
->command_next
- ftdi
->command_head
;
1377 respond_size
= ftdi
->respond_next
- ftdi
->respond_head
;
1378 if (command_size
< COMMAND_SIZE
&& respond_size
< RESPOND_SIZE
)
1380 struct u132_command
*command
= &ftdi
->command
[
1381 COMMAND_MASK
& ftdi
->command_next
];
1382 struct u132_respond
*respond
= &ftdi
->respond
[
1383 RESPOND_MASK
& ftdi
->respond_next
];
1384 int result
= -ENODEV
;
1385 respond
->result
= &result
;
1386 respond
->header
= command
->header
= 0x00 | cPCIu132rd
;
1387 command
->length
= 0x04;
1388 respond
->address
= command
->address
= cU132cmd_status
;
1389 command
->width
= 0x00;
1390 command
->follows
= 0;
1392 command
->buffer
= NULL
;
1393 respond
->value
= data
;
1394 init_completion(&respond
->wait_completion
);
1395 ftdi
->command_next
+= 1;
1396 ftdi
->respond_next
+= 1;
1397 ftdi_elan_kick_command_queue(ftdi
);
1398 up(&ftdi
->u132_lock
);
1399 wait_for_completion(&respond
->wait_completion
);
1402 up(&ftdi
->u132_lock
);
1409 static int ftdi_elan_read_config(struct usb_ftdi
*ftdi
, int config_offset
,
1410 u8 width
, u32
*data
)
1412 u8 addressofs
= config_offset
/ 4;
1413 wait
:if (ftdi
->disconnected
> 0) {
1418 down(&ftdi
->u132_lock
);
1419 command_size
= ftdi
->command_next
- ftdi
->command_head
;
1420 respond_size
= ftdi
->respond_next
- ftdi
->respond_head
;
1421 if (command_size
< COMMAND_SIZE
&& respond_size
< RESPOND_SIZE
)
1423 struct u132_command
*command
= &ftdi
->command
[
1424 COMMAND_MASK
& ftdi
->command_next
];
1425 struct u132_respond
*respond
= &ftdi
->respond
[
1426 RESPOND_MASK
& ftdi
->respond_next
];
1427 int result
= -ENODEV
;
1428 respond
->result
= &result
;
1429 respond
->header
= command
->header
= 0x00 | (cPCIcfgrd
&
1431 command
->length
= 0x04;
1432 respond
->address
= command
->address
= addressofs
;
1433 command
->width
= 0x00 | (width
& 0x0F);
1434 command
->follows
= 0;
1436 command
->buffer
= NULL
;
1437 respond
->value
= data
;
1438 init_completion(&respond
->wait_completion
);
1439 ftdi
->command_next
+= 1;
1440 ftdi
->respond_next
+= 1;
1441 ftdi_elan_kick_command_queue(ftdi
);
1442 up(&ftdi
->u132_lock
);
1443 wait_for_completion(&respond
->wait_completion
);
1446 up(&ftdi
->u132_lock
);
1453 static int ftdi_elan_read_pcimem(struct usb_ftdi
*ftdi
, int mem_offset
,
1454 u8 width
, u32
*data
)
1456 u8 addressofs
= mem_offset
/ 4;
1457 wait
:if (ftdi
->disconnected
> 0) {
1462 down(&ftdi
->u132_lock
);
1463 command_size
= ftdi
->command_next
- ftdi
->command_head
;
1464 respond_size
= ftdi
->respond_next
- ftdi
->respond_head
;
1465 if (command_size
< COMMAND_SIZE
&& respond_size
< RESPOND_SIZE
)
1467 struct u132_command
*command
= &ftdi
->command
[
1468 COMMAND_MASK
& ftdi
->command_next
];
1469 struct u132_respond
*respond
= &ftdi
->respond
[
1470 RESPOND_MASK
& ftdi
->respond_next
];
1471 int result
= -ENODEV
;
1472 respond
->result
= &result
;
1473 respond
->header
= command
->header
= 0x00 | (cPCImemrd
&
1475 command
->length
= 0x04;
1476 respond
->address
= command
->address
= addressofs
;
1477 command
->width
= 0x00 | (width
& 0x0F);
1478 command
->follows
= 0;
1480 command
->buffer
= NULL
;
1481 respond
->value
= data
;
1482 init_completion(&respond
->wait_completion
);
1483 ftdi
->command_next
+= 1;
1484 ftdi
->respond_next
+= 1;
1485 ftdi_elan_kick_command_queue(ftdi
);
1486 up(&ftdi
->u132_lock
);
1487 wait_for_completion(&respond
->wait_completion
);
1490 up(&ftdi
->u132_lock
);
1497 int usb_ftdi_elan_read_pcimem(struct platform_device
*pdev
, int mem_offset
,
1498 u8 width
, u32
*data
)
1500 struct usb_ftdi
*ftdi
= platform_device_to_usb_ftdi(pdev
);
1501 if (ftdi
->initialized
== 0) {
1504 return ftdi_elan_read_pcimem(ftdi
, mem_offset
, width
, data
);
1508 EXPORT_SYMBOL_GPL(usb_ftdi_elan_read_pcimem
);
1509 static int ftdi_elan_edset_setup(struct usb_ftdi
*ftdi
, u8 ed_number
,
1510 void *endp
, struct urb
*urb
, u8 address
, u8 ep_number
, u8 toggle_bits
,
1511 void (*callback
) (void *endp
, struct urb
*urb
, u8
*buf
, int len
,
1512 int toggle_bits
, int error_count
, int condition_code
, int repeat_number
,
1513 int halted
, int skipped
, int actual
, int non_null
))
1515 u8 ed
= ed_number
- 1;
1516 wait
:if (ftdi
->disconnected
> 0) {
1518 } else if (ftdi
->initialized
== 0) {
1522 down(&ftdi
->u132_lock
);
1523 command_size
= ftdi
->command_next
- ftdi
->command_head
;
1524 if (command_size
< COMMAND_SIZE
) {
1525 struct u132_target
*target
= &ftdi
->target
[ed
];
1526 struct u132_command
*command
= &ftdi
->command
[
1527 COMMAND_MASK
& ftdi
->command_next
];
1528 command
->header
= 0x80 | (ed
<< 5);
1529 command
->length
= 0x8007;
1530 command
->address
= (toggle_bits
<< 6) | (ep_number
<< 2)
1532 command
->width
= usb_maxpacket(urb
->dev
, urb
->pipe
,
1533 usb_pipeout(urb
->pipe
));
1534 command
->follows
= 8;
1536 command
->buffer
= urb
->setup_packet
;
1537 target
->callback
= callback
;
1538 target
->endp
= endp
;
1541 ftdi
->command_next
+= 1;
1542 ftdi_elan_kick_command_queue(ftdi
);
1543 up(&ftdi
->u132_lock
);
1546 up(&ftdi
->u132_lock
);
1553 int usb_ftdi_elan_edset_setup(struct platform_device
*pdev
, u8 ed_number
,
1554 void *endp
, struct urb
*urb
, u8 address
, u8 ep_number
, u8 toggle_bits
,
1555 void (*callback
) (void *endp
, struct urb
*urb
, u8
*buf
, int len
,
1556 int toggle_bits
, int error_count
, int condition_code
, int repeat_number
,
1557 int halted
, int skipped
, int actual
, int non_null
))
1559 struct usb_ftdi
*ftdi
= platform_device_to_usb_ftdi(pdev
);
1560 return ftdi_elan_edset_setup(ftdi
, ed_number
, endp
, urb
, address
,
1561 ep_number
, toggle_bits
, callback
);
1565 EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_setup
);
1566 static int ftdi_elan_edset_input(struct usb_ftdi
*ftdi
, u8 ed_number
,
1567 void *endp
, struct urb
*urb
, u8 address
, u8 ep_number
, u8 toggle_bits
,
1568 void (*callback
) (void *endp
, struct urb
*urb
, u8
*buf
, int len
,
1569 int toggle_bits
, int error_count
, int condition_code
, int repeat_number
,
1570 int halted
, int skipped
, int actual
, int non_null
))
1572 u8 ed
= ed_number
- 1;
1573 wait
:if (ftdi
->disconnected
> 0) {
1575 } else if (ftdi
->initialized
== 0) {
1579 down(&ftdi
->u132_lock
);
1580 command_size
= ftdi
->command_next
- ftdi
->command_head
;
1581 if (command_size
< COMMAND_SIZE
) {
1582 struct u132_target
*target
= &ftdi
->target
[ed
];
1583 struct u132_command
*command
= &ftdi
->command
[
1584 COMMAND_MASK
& ftdi
->command_next
];
1585 int remaining_length
= urb
->transfer_buffer_length
-
1587 command
->header
= 0x82 | (ed
<< 5);
1588 if (remaining_length
== 0) {
1589 command
->length
= 0x0000;
1590 } else if (remaining_length
> 1024) {
1591 command
->length
= 0x8000 | 1023;
1593 command
->length
= 0x8000 | (remaining_length
-
1595 command
->address
= (toggle_bits
<< 6) | (ep_number
<< 2)
1597 command
->width
= usb_maxpacket(urb
->dev
, urb
->pipe
,
1598 usb_pipeout(urb
->pipe
));
1599 command
->follows
= 0;
1601 command
->buffer
= NULL
;
1602 target
->callback
= callback
;
1603 target
->endp
= endp
;
1606 ftdi
->command_next
+= 1;
1607 ftdi_elan_kick_command_queue(ftdi
);
1608 up(&ftdi
->u132_lock
);
1611 up(&ftdi
->u132_lock
);
1618 int usb_ftdi_elan_edset_input(struct platform_device
*pdev
, u8 ed_number
,
1619 void *endp
, struct urb
*urb
, u8 address
, u8 ep_number
, u8 toggle_bits
,
1620 void (*callback
) (void *endp
, struct urb
*urb
, u8
*buf
, int len
,
1621 int toggle_bits
, int error_count
, int condition_code
, int repeat_number
,
1622 int halted
, int skipped
, int actual
, int non_null
))
1624 struct usb_ftdi
*ftdi
= platform_device_to_usb_ftdi(pdev
);
1625 return ftdi_elan_edset_input(ftdi
, ed_number
, endp
, urb
, address
,
1626 ep_number
, toggle_bits
, callback
);
1630 EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_input
);
1631 static int ftdi_elan_edset_empty(struct usb_ftdi
*ftdi
, u8 ed_number
,
1632 void *endp
, struct urb
*urb
, u8 address
, u8 ep_number
, u8 toggle_bits
,
1633 void (*callback
) (void *endp
, struct urb
*urb
, u8
*buf
, int len
,
1634 int toggle_bits
, int error_count
, int condition_code
, int repeat_number
,
1635 int halted
, int skipped
, int actual
, int non_null
))
1637 u8 ed
= ed_number
- 1;
1638 wait
:if (ftdi
->disconnected
> 0) {
1640 } else if (ftdi
->initialized
== 0) {
1644 down(&ftdi
->u132_lock
);
1645 command_size
= ftdi
->command_next
- ftdi
->command_head
;
1646 if (command_size
< COMMAND_SIZE
) {
1647 struct u132_target
*target
= &ftdi
->target
[ed
];
1648 struct u132_command
*command
= &ftdi
->command
[
1649 COMMAND_MASK
& ftdi
->command_next
];
1650 command
->header
= 0x81 | (ed
<< 5);
1651 command
->length
= 0x0000;
1652 command
->address
= (toggle_bits
<< 6) | (ep_number
<< 2)
1654 command
->width
= usb_maxpacket(urb
->dev
, urb
->pipe
,
1655 usb_pipeout(urb
->pipe
));
1656 command
->follows
= 0;
1658 command
->buffer
= NULL
;
1659 target
->callback
= callback
;
1660 target
->endp
= endp
;
1663 ftdi
->command_next
+= 1;
1664 ftdi_elan_kick_command_queue(ftdi
);
1665 up(&ftdi
->u132_lock
);
1668 up(&ftdi
->u132_lock
);
1675 int usb_ftdi_elan_edset_empty(struct platform_device
*pdev
, u8 ed_number
,
1676 void *endp
, struct urb
*urb
, u8 address
, u8 ep_number
, u8 toggle_bits
,
1677 void (*callback
) (void *endp
, struct urb
*urb
, u8
*buf
, int len
,
1678 int toggle_bits
, int error_count
, int condition_code
, int repeat_number
,
1679 int halted
, int skipped
, int actual
, int non_null
))
1681 struct usb_ftdi
*ftdi
= platform_device_to_usb_ftdi(pdev
);
1682 return ftdi_elan_edset_empty(ftdi
, ed_number
, endp
, urb
, address
,
1683 ep_number
, toggle_bits
, callback
);
1687 EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_empty
);
1688 static int ftdi_elan_edset_output(struct usb_ftdi
*ftdi
, u8 ed_number
,
1689 void *endp
, struct urb
*urb
, u8 address
, u8 ep_number
, u8 toggle_bits
,
1690 void (*callback
) (void *endp
, struct urb
*urb
, u8
*buf
, int len
,
1691 int toggle_bits
, int error_count
, int condition_code
, int repeat_number
,
1692 int halted
, int skipped
, int actual
, int non_null
))
1694 u8 ed
= ed_number
- 1;
1695 wait
:if (ftdi
->disconnected
> 0) {
1697 } else if (ftdi
->initialized
== 0) {
1701 down(&ftdi
->u132_lock
);
1702 command_size
= ftdi
->command_next
- ftdi
->command_head
;
1703 if (command_size
< COMMAND_SIZE
) {
1707 char data
[30 *3 + 4];
1709 int m
= (sizeof(data
) - 1) / 3;
1711 struct u132_target
*target
= &ftdi
->target
[ed
];
1712 struct u132_command
*command
= &ftdi
->command
[
1713 COMMAND_MASK
& ftdi
->command_next
];
1714 command
->header
= 0x81 | (ed
<< 5);
1715 command
->address
= (toggle_bits
<< 6) | (ep_number
<< 2)
1717 command
->width
= usb_maxpacket(urb
->dev
, urb
->pipe
,
1718 usb_pipeout(urb
->pipe
));
1719 command
->follows
= min(1024,
1720 urb
->transfer_buffer_length
-
1721 urb
->actual_length
);
1723 command
->buffer
= urb
->transfer_buffer
+
1725 command
->length
= 0x8000 | (command
->follows
- 1);
1726 b
= command
->buffer
;
1727 urb_size
= command
->follows
;
1729 while (urb_size
-- > 0) {
1731 } else if (i
++ < m
) {
1732 int w
= sprintf(d
, " %02X", *b
++);
1736 d
+= sprintf(d
, " ..");
1738 target
->callback
= callback
;
1739 target
->endp
= endp
;
1742 ftdi
->command_next
+= 1;
1743 ftdi_elan_kick_command_queue(ftdi
);
1744 up(&ftdi
->u132_lock
);
1747 up(&ftdi
->u132_lock
);
1754 int usb_ftdi_elan_edset_output(struct platform_device
*pdev
, u8 ed_number
,
1755 void *endp
, struct urb
*urb
, u8 address
, u8 ep_number
, u8 toggle_bits
,
1756 void (*callback
) (void *endp
, struct urb
*urb
, u8
*buf
, int len
,
1757 int toggle_bits
, int error_count
, int condition_code
, int repeat_number
,
1758 int halted
, int skipped
, int actual
, int non_null
))
1760 struct usb_ftdi
*ftdi
= platform_device_to_usb_ftdi(pdev
);
1761 return ftdi_elan_edset_output(ftdi
, ed_number
, endp
, urb
, address
,
1762 ep_number
, toggle_bits
, callback
);
1766 EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_output
);
1767 static int ftdi_elan_edset_single(struct usb_ftdi
*ftdi
, u8 ed_number
,
1768 void *endp
, struct urb
*urb
, u8 address
, u8 ep_number
, u8 toggle_bits
,
1769 void (*callback
) (void *endp
, struct urb
*urb
, u8
*buf
, int len
,
1770 int toggle_bits
, int error_count
, int condition_code
, int repeat_number
,
1771 int halted
, int skipped
, int actual
, int non_null
))
1773 u8 ed
= ed_number
- 1;
1774 wait
:if (ftdi
->disconnected
> 0) {
1776 } else if (ftdi
->initialized
== 0) {
1780 down(&ftdi
->u132_lock
);
1781 command_size
= ftdi
->command_next
- ftdi
->command_head
;
1782 if (command_size
< COMMAND_SIZE
) {
1783 int remaining_length
= urb
->transfer_buffer_length
-
1785 struct u132_target
*target
= &ftdi
->target
[ed
];
1786 struct u132_command
*command
= &ftdi
->command
[
1787 COMMAND_MASK
& ftdi
->command_next
];
1788 command
->header
= 0x83 | (ed
<< 5);
1789 if (remaining_length
== 0) {
1790 command
->length
= 0x0000;
1791 } else if (remaining_length
> 1024) {
1792 command
->length
= 0x8000 | 1023;
1794 command
->length
= 0x8000 | (remaining_length
-
1796 command
->address
= (toggle_bits
<< 6) | (ep_number
<< 2)
1798 command
->width
= usb_maxpacket(urb
->dev
, urb
->pipe
,
1799 usb_pipeout(urb
->pipe
));
1800 command
->follows
= 0;
1802 command
->buffer
= NULL
;
1803 target
->callback
= callback
;
1804 target
->endp
= endp
;
1807 ftdi
->command_next
+= 1;
1808 ftdi_elan_kick_command_queue(ftdi
);
1809 up(&ftdi
->u132_lock
);
1812 up(&ftdi
->u132_lock
);
1819 int usb_ftdi_elan_edset_single(struct platform_device
*pdev
, u8 ed_number
,
1820 void *endp
, struct urb
*urb
, u8 address
, u8 ep_number
, u8 toggle_bits
,
1821 void (*callback
) (void *endp
, struct urb
*urb
, u8
*buf
, int len
,
1822 int toggle_bits
, int error_count
, int condition_code
, int repeat_number
,
1823 int halted
, int skipped
, int actual
, int non_null
))
1825 struct usb_ftdi
*ftdi
= platform_device_to_usb_ftdi(pdev
);
1826 return ftdi_elan_edset_single(ftdi
, ed_number
, endp
, urb
, address
,
1827 ep_number
, toggle_bits
, callback
);
1831 EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_single
);
1832 static int ftdi_elan_edset_flush(struct usb_ftdi
*ftdi
, u8 ed_number
,
1835 u8 ed
= ed_number
- 1;
1836 if (ftdi
->disconnected
> 0) {
1838 } else if (ftdi
->initialized
== 0) {
1841 struct u132_target
*target
= &ftdi
->target
[ed
];
1842 down(&ftdi
->u132_lock
);
1843 if (target
->abandoning
> 0) {
1844 up(&ftdi
->u132_lock
);
1847 target
->abandoning
= 1;
1848 wait_1
:if (target
->active
== 1) {
1849 int command_size
= ftdi
->command_next
-
1851 if (command_size
< COMMAND_SIZE
) {
1852 struct u132_command
*command
=
1853 &ftdi
->command
[COMMAND_MASK
&
1854 ftdi
->command_next
];
1855 command
->header
= 0x80 | (ed
<< 5) |
1857 command
->length
= 0x00;
1858 command
->address
= 0x00;
1859 command
->width
= 0x00;
1860 command
->follows
= 0;
1862 command
->buffer
= &command
->value
;
1863 ftdi
->command_next
+= 1;
1864 ftdi_elan_kick_command_queue(ftdi
);
1866 up(&ftdi
->u132_lock
);
1868 down(&ftdi
->u132_lock
);
1872 up(&ftdi
->u132_lock
);
1878 int usb_ftdi_elan_edset_flush(struct platform_device
*pdev
, u8 ed_number
,
1881 struct usb_ftdi
*ftdi
= platform_device_to_usb_ftdi(pdev
);
1882 return ftdi_elan_edset_flush(ftdi
, ed_number
, endp
);
1886 EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_flush
);
1887 static int ftdi_elan_flush_input_fifo(struct usb_ftdi
*ftdi
)
1889 int retry_on_empty
= 10;
1890 int retry_on_timeout
= 5;
1891 int retry_on_status
= 20;
1893 int packet_bytes
= 0;
1894 int retval
= usb_bulk_msg(ftdi
->udev
,
1895 usb_rcvbulkpipe(ftdi
->udev
, ftdi
->bulk_in_endpointAddr
),
1896 ftdi
->bulk_in_buffer
, ftdi
->bulk_in_size
,
1897 &packet_bytes
, msecs_to_jiffies(100));
1898 if (packet_bytes
> 2) {
1899 char diag
[30 *3 + 4];
1901 int m
= (sizeof(diag
) - 1) / 3;
1902 char *b
= ftdi
->bulk_in_buffer
;
1905 while (packet_bytes
-- > 0) {
1907 if (bytes_read
< m
) {
1908 d
+= sprintf(d
, " %02X",
1910 } else if (bytes_read
> m
) {
1912 d
+= sprintf(d
, " ..");
1917 } else if (packet_bytes
> 1) {
1918 char s1
= ftdi
->bulk_in_buffer
[0];
1919 char s2
= ftdi
->bulk_in_buffer
[1];
1920 if (s1
== 0x31 && s2
== 0x60) {
1922 } else if (retry_on_status
-- > 0) {
1925 dev_err(&ftdi
->udev
->dev
, "STATUS ERROR retry l"
1929 } else if (packet_bytes
> 0) {
1930 char b1
= ftdi
->bulk_in_buffer
[0];
1931 dev_err(&ftdi
->udev
->dev
, "only one byte flushed from F"
1932 "TDI = %02X\n", b1
);
1933 if (retry_on_status
-- > 0) {
1936 dev_err(&ftdi
->udev
->dev
, "STATUS ERROR retry l"
1940 } else if (retval
== -ETIMEDOUT
) {
1941 if (retry_on_timeout
-- > 0) {
1944 dev_err(&ftdi
->udev
->dev
, "TIMED OUT retry limi"
1948 } else if (retval
== 0) {
1949 if (retry_on_empty
-- > 0) {
1952 dev_err(&ftdi
->udev
->dev
, "empty packet retry l"
1957 dev_err(&ftdi
->udev
->dev
, "error = %d\n", retval
);
1966 * send the long flush sequence
1969 static int ftdi_elan_synchronize_flush(struct usb_ftdi
*ftdi
)
1976 urb
= usb_alloc_urb(0, GFP_KERNEL
);
1978 dev_err(&ftdi
->udev
->dev
, "could not alloc a urb for flush sequ"
1982 buf
= usb_buffer_alloc(ftdi
->udev
, I
, GFP_KERNEL
, &urb
->transfer_dma
);
1984 dev_err(&ftdi
->udev
->dev
, "could not get a buffer for flush seq"
1991 usb_fill_bulk_urb(urb
, ftdi
->udev
, usb_sndbulkpipe(ftdi
->udev
,
1992 ftdi
->bulk_out_endpointAddr
), buf
, i
,
1993 ftdi_elan_write_bulk_callback
, ftdi
);
1994 urb
->transfer_flags
|= URB_NO_TRANSFER_DMA_MAP
;
1995 retval
= usb_submit_urb(urb
, GFP_KERNEL
);
1997 dev_err(&ftdi
->udev
->dev
, "failed to submit urb containing the "
1998 "flush sequence\n");
1999 usb_buffer_free(ftdi
->udev
, i
, buf
, urb
->transfer_dma
);
2009 * send the reset sequence
2012 static int ftdi_elan_synchronize_reset(struct usb_ftdi
*ftdi
)
2019 urb
= usb_alloc_urb(0, GFP_KERNEL
);
2021 dev_err(&ftdi
->udev
->dev
, "could not get a urb for the reset se"
2025 buf
= usb_buffer_alloc(ftdi
->udev
, I
, GFP_KERNEL
, &urb
->transfer_dma
);
2027 dev_err(&ftdi
->udev
->dev
, "could not get a buffer for the reset"
2036 usb_fill_bulk_urb(urb
, ftdi
->udev
, usb_sndbulkpipe(ftdi
->udev
,
2037 ftdi
->bulk_out_endpointAddr
), buf
, i
,
2038 ftdi_elan_write_bulk_callback
, ftdi
);
2039 urb
->transfer_flags
|= URB_NO_TRANSFER_DMA_MAP
;
2040 retval
= usb_submit_urb(urb
, GFP_KERNEL
);
2042 dev_err(&ftdi
->udev
->dev
, "failed to submit urb containing the "
2043 "reset sequence\n");
2044 usb_buffer_free(ftdi
->udev
, i
, buf
, urb
->transfer_dma
);
2052 static int ftdi_elan_synchronize(struct usb_ftdi
*ftdi
)
2056 int retry_on_timeout
= 5;
2057 int retry_on_empty
= 10;
2059 retval
= ftdi_elan_flush_input_fifo(ftdi
);
2062 ftdi
->bulk_in_left
= 0;
2063 ftdi
->bulk_in_last
= -1;
2064 while (long_stop
-- > 0) {
2067 retval
= ftdi_elan_synchronize_flush(ftdi
);
2070 retval
= ftdi_elan_flush_input_fifo(ftdi
);
2073 reset
:retval
= ftdi_elan_synchronize_reset(ftdi
);
2079 int packet_bytes
= 0;
2080 retval
= usb_bulk_msg(ftdi
->udev
,
2081 usb_rcvbulkpipe(ftdi
->udev
,
2082 ftdi
->bulk_in_endpointAddr
),
2083 ftdi
->bulk_in_buffer
, ftdi
->bulk_in_size
,
2084 &packet_bytes
, msecs_to_jiffies(500));
2085 if (packet_bytes
> 2) {
2086 char diag
[30 *3 + 4];
2088 int m
= (sizeof(diag
) - 1) / 3;
2089 char *b
= ftdi
->bulk_in_buffer
;
2091 unsigned char c
= 0;
2093 while (packet_bytes
-- > 0) {
2095 if (bytes_read
< m
) {
2096 d
+= sprintf(d
, " %02X", c
);
2097 } else if (bytes_read
> m
) {
2099 d
+= sprintf(d
, " ..");
2108 } else if (read_stop
-- > 0) {
2111 dev_err(&ftdi
->udev
->dev
, "retr"
2112 "y limit reached\n");
2116 } else if (packet_bytes
> 1) {
2117 unsigned char s1
= ftdi
->bulk_in_buffer
[0];
2118 unsigned char s2
= ftdi
->bulk_in_buffer
[1];
2119 if (s1
== 0x31 && s2
== 0x00) {
2120 if (read_stuck
-- > 0) {
2124 } else if (s1
== 0x31 && s2
== 0x60) {
2125 if (read_stop
-- > 0) {
2128 dev_err(&ftdi
->udev
->dev
, "retr"
2129 "y limit reached\n");
2133 if (read_stop
-- > 0) {
2136 dev_err(&ftdi
->udev
->dev
, "retr"
2137 "y limit reached\n");
2141 } else if (packet_bytes
> 0) {
2142 if (read_stop
-- > 0) {
2145 dev_err(&ftdi
->udev
->dev
, "retry limit "
2149 } else if (retval
== -ETIMEDOUT
) {
2150 if (retry_on_timeout
-- > 0) {
2153 dev_err(&ftdi
->udev
->dev
, "TIMED OUT re"
2154 "try limit reached\n");
2157 } else if (retval
== 0) {
2158 if (retry_on_empty
-- > 0) {
2161 dev_err(&ftdi
->udev
->dev
, "empty packet"
2162 " retry limit reached\n");
2167 dev_err(&ftdi
->udev
->dev
, "error = %d\n",
2169 if (read_stop
-- > 0) {
2172 dev_err(&ftdi
->udev
->dev
, "retry limit "
2179 dev_err(&ftdi
->udev
->dev
, "failed to synchronize\n");
2183 static int ftdi_elan_stuck_waiting(struct usb_ftdi
*ftdi
)
2185 int retry_on_empty
= 10;
2186 int retry_on_timeout
= 5;
2187 int retry_on_status
= 50;
2189 int packet_bytes
= 0;
2190 int retval
= usb_bulk_msg(ftdi
->udev
,
2191 usb_rcvbulkpipe(ftdi
->udev
, ftdi
->bulk_in_endpointAddr
),
2192 ftdi
->bulk_in_buffer
, ftdi
->bulk_in_size
,
2193 &packet_bytes
, msecs_to_jiffies(1000));
2194 if (packet_bytes
> 2) {
2195 char diag
[30 *3 + 4];
2197 int m
= (sizeof(diag
) - 1) / 3;
2198 char *b
= ftdi
->bulk_in_buffer
;
2201 while (packet_bytes
-- > 0) {
2203 if (bytes_read
< m
) {
2204 d
+= sprintf(d
, " %02X",
2206 } else if (bytes_read
> m
) {
2208 d
+= sprintf(d
, " ..");
2213 } else if (packet_bytes
> 1) {
2214 char s1
= ftdi
->bulk_in_buffer
[0];
2215 char s2
= ftdi
->bulk_in_buffer
[1];
2216 if (s1
== 0x31 && s2
== 0x60) {
2218 } else if (retry_on_status
-- > 0) {
2223 } else if (packet_bytes
> 0) {
2224 char b1
= ftdi
->bulk_in_buffer
[0];
2225 dev_err(&ftdi
->udev
->dev
, "only one byte flushed from F"
2226 "TDI = %02X\n", b1
);
2227 if (retry_on_status
-- > 0) {
2231 dev_err(&ftdi
->udev
->dev
, "STATUS ERROR retry l"
2235 } else if (retval
== -ETIMEDOUT
) {
2236 if (retry_on_timeout
-- > 0) {
2239 dev_err(&ftdi
->udev
->dev
, "TIMED OUT retry limi"
2243 } else if (retval
== 0) {
2244 if (retry_on_empty
-- > 0) {
2247 dev_err(&ftdi
->udev
->dev
, "empty packet retry l"
2252 dev_err(&ftdi
->udev
->dev
, "error = %d\n", retval
);
2259 static int ftdi_elan_checkingPCI(struct usb_ftdi
*ftdi
)
2261 int UxxxStatus
= ftdi_elan_read_reg(ftdi
, &ftdi
->controlreg
);
2264 if (ftdi
->controlreg
& 0x00400000) {
2265 if (ftdi
->card_ejected
) {
2267 ftdi
->card_ejected
= 1;
2268 dev_err(&ftdi
->udev
->dev
, "CARD EJECTED - controlreg = "
2269 "%08X\n", ftdi
->controlreg
);
2273 u8 fn
= ftdi
->function
- 1;
2274 int activePCIfn
= fn
<< 8;
2279 UxxxStatus
= ftdi_elan_read_config(ftdi
, activePCIfn
| reg
, 0,
2283 pciVID
= pcidata
& 0xFFFF;
2284 pciPID
= (pcidata
>> 16) & 0xFFFF;
2285 if (pciVID
== ftdi
->platform_data
.vendor
&& pciPID
==
2286 ftdi
->platform_data
.device
) {
2289 dev_err(&ftdi
->udev
->dev
, "vendor=%04X pciVID=%04X devi"
2290 "ce=%04X pciPID=%04X\n",
2291 ftdi
->platform_data
.vendor
, pciVID
,
2292 ftdi
->platform_data
.device
, pciPID
);
2299 #define ftdi_read_pcimem(ftdi, member, data) ftdi_elan_read_pcimem(ftdi, \
2300 offsetof(struct ohci_regs, member), 0, data);
2301 #define ftdi_write_pcimem(ftdi, member, data) ftdi_elan_write_pcimem(ftdi, \
2302 offsetof(struct ohci_regs, member), 0, data);
2303 #define OHCI_QUIRK_AMD756 0x01
2304 #define OHCI_QUIRK_SUPERIO 0x02
2305 #define OHCI_QUIRK_INITRESET 0x04
2306 #define OHCI_BIG_ENDIAN 0x08
2307 #define OHCI_CONTROL_INIT OHCI_CTRL_CBSR
2308 #define OHCI_INTR_INIT (OHCI_INTR_MIE | OHCI_INTR_UE | OHCI_INTR_RD | \
2310 static int ftdi_elan_check_controller(struct usb_ftdi
*ftdi
, int quirk
)
2324 int mask
= OHCI_INTR_INIT
;
2326 int reset_timeout
= 30; /* ... allow extra time */
2328 retval
= ftdi_write_pcimem(ftdi
, intrdisable
, OHCI_INTR_MIE
);
2331 retval
= ftdi_read_pcimem(ftdi
, control
, &control
);
2334 retval
= ftdi_read_pcimem(ftdi
, roothub
.a
, &rh_a
);
2337 num_ports
= rh_a
& RH_A_NDP
;
2338 retval
= ftdi_read_pcimem(ftdi
, fminterval
, &hc_fminterval
);
2341 hc_fminterval
&= 0x3fff;
2342 if (hc_fminterval
!= FI
) {
2344 hc_fminterval
|= FSMP(hc_fminterval
) << 16;
2345 retval
= ftdi_read_pcimem(ftdi
, control
, &hc_control
);
2348 switch (hc_control
& OHCI_CTRL_HCFS
) {
2352 case OHCI_USB_SUSPEND
:
2353 case OHCI_USB_RESUME
:
2354 hc_control
&= OHCI_CTRL_RWC
;
2355 hc_control
|= OHCI_USB_RESUME
;
2359 hc_control
&= OHCI_CTRL_RWC
;
2360 hc_control
|= OHCI_USB_RESET
;
2364 retval
= ftdi_write_pcimem(ftdi
, control
, hc_control
);
2367 retval
= ftdi_read_pcimem(ftdi
, control
, &control
);
2371 retval
= ftdi_read_pcimem(ftdi
, roothub
.a
, &roothub_a
);
2374 if (!(roothub_a
& RH_A_NPS
)) { /* power down each port */
2375 for (temp
= 0; temp
< num_ports
; temp
++) {
2376 retval
= ftdi_write_pcimem(ftdi
,
2377 roothub
.portstatus
[temp
], RH_PS_LSDA
);
2382 retval
= ftdi_read_pcimem(ftdi
, control
, &control
);
2385 retry
:retval
= ftdi_read_pcimem(ftdi
, cmdstatus
, &status
);
2388 retval
= ftdi_write_pcimem(ftdi
, cmdstatus
, OHCI_HCR
);
2392 retval
= ftdi_read_pcimem(ftdi
, cmdstatus
, &status
);
2395 if (0 != (status
& OHCI_HCR
)) {
2396 if (--reset_timeout
== 0) {
2397 dev_err(&ftdi
->udev
->dev
, "USB HC reset timed o"
2406 if (quirk
& OHCI_QUIRK_INITRESET
) {
2407 retval
= ftdi_write_pcimem(ftdi
, control
, hc_control
);
2410 retval
= ftdi_read_pcimem(ftdi
, control
, &control
);
2414 retval
= ftdi_write_pcimem(ftdi
, ed_controlhead
, 0x00000000);
2417 retval
= ftdi_write_pcimem(ftdi
, ed_bulkhead
, 0x11000000);
2420 retval
= ftdi_write_pcimem(ftdi
, hcca
, 0x00000000);
2423 retval
= ftdi_read_pcimem(ftdi
, fminterval
, &fminterval
);
2426 retval
= ftdi_write_pcimem(ftdi
, fminterval
,
2427 ((fminterval
& FIT
) ^ FIT
) | hc_fminterval
);
2430 retval
= ftdi_write_pcimem(ftdi
, periodicstart
,
2431 ((9 *hc_fminterval
) / 10) & 0x3fff);
2434 retval
= ftdi_read_pcimem(ftdi
, fminterval
, &fminterval
);
2437 retval
= ftdi_read_pcimem(ftdi
, periodicstart
, &periodicstart
);
2440 if (0 == (fminterval
& 0x3fff0000) || 0 == periodicstart
) {
2441 if (!(quirk
& OHCI_QUIRK_INITRESET
)) {
2442 quirk
|= OHCI_QUIRK_INITRESET
;
2445 dev_err(&ftdi
->udev
->dev
, "init err(%08x %04x)\n",
2446 fminterval
, periodicstart
);
2447 } /* start controller operations */
2448 hc_control
&= OHCI_CTRL_RWC
;
2449 hc_control
|= OHCI_CONTROL_INIT
| OHCI_CTRL_BLE
| OHCI_USB_OPER
;
2450 retval
= ftdi_write_pcimem(ftdi
, control
, hc_control
);
2453 retval
= ftdi_write_pcimem(ftdi
, cmdstatus
, OHCI_BLF
);
2456 retval
= ftdi_read_pcimem(ftdi
, cmdstatus
, &cmdstatus
);
2459 retval
= ftdi_read_pcimem(ftdi
, control
, &control
);
2462 retval
= ftdi_write_pcimem(ftdi
, roothub
.status
, RH_HS_DRWE
);
2465 retval
= ftdi_write_pcimem(ftdi
, intrstatus
, mask
);
2468 retval
= ftdi_write_pcimem(ftdi
, intrdisable
,
2469 OHCI_INTR_MIE
| OHCI_INTR_OC
| OHCI_INTR_RHSC
| OHCI_INTR_FNO
|
2470 OHCI_INTR_UE
| OHCI_INTR_RD
| OHCI_INTR_SF
| OHCI_INTR_WDH
|
2473 return retval
; /* handle root hub init quirks ... */
2474 retval
= ftdi_read_pcimem(ftdi
, roothub
.a
, &roothub_a
);
2477 roothub_a
&= ~(RH_A_PSM
| RH_A_OCPM
);
2478 if (quirk
& OHCI_QUIRK_SUPERIO
) {
2479 roothub_a
|= RH_A_NOCP
;
2480 roothub_a
&= ~(RH_A_POTPGT
| RH_A_NPS
);
2481 retval
= ftdi_write_pcimem(ftdi
, roothub
.a
, roothub_a
);
2484 } else if ((quirk
& OHCI_QUIRK_AMD756
) || distrust_firmware
) {
2485 roothub_a
|= RH_A_NPS
;
2486 retval
= ftdi_write_pcimem(ftdi
, roothub
.a
, roothub_a
);
2490 retval
= ftdi_write_pcimem(ftdi
, roothub
.status
, RH_HS_LPSC
);
2493 retval
= ftdi_write_pcimem(ftdi
, roothub
.b
,
2494 (roothub_a
& RH_A_NPS
) ? 0 : RH_B_PPCM
);
2497 retval
= ftdi_read_pcimem(ftdi
, control
, &control
);
2500 mdelay((roothub_a
>> 23) & 0x1fe);
2501 for (temp
= 0; temp
< num_ports
; temp
++) {
2503 retval
= ftdi_read_pcimem(ftdi
, roothub
.portstatus
[temp
],
2513 static int ftdi_elan_setup_controller(struct usb_ftdi
*ftdi
, int fn
)
2519 int activePCIfn
= fn
<< 8;
2520 UxxxStatus
= ftdi_elan_write_reg(ftdi
, 0x0000025FL
| 0x2800);
2524 UxxxStatus
= ftdi_elan_write_config(ftdi
, activePCIfn
| reg
, 0,
2528 UxxxStatus
= ftdi_elan_read_config(ftdi
, activePCIfn
| reg
, 0,
2532 UxxxStatus
= ftdi_elan_write_config(ftdi
, activePCIfn
| reg
, 0,
2536 UxxxStatus
= ftdi_elan_read_config(ftdi
, activePCIfn
| reg
, 0,
2541 UxxxStatus
= ftdi_elan_read_config(ftdi
, activePCIfn
| reg
, 0,
2545 latence_timer
&= 0xFFFF00FF;
2546 latence_timer
|= 0x00001600;
2547 UxxxStatus
= ftdi_elan_write_config(ftdi
, activePCIfn
| reg
, 0x00,
2551 UxxxStatus
= ftdi_elan_read_config(ftdi
, activePCIfn
| reg
, 0,
2556 UxxxStatus
= ftdi_elan_write_config(ftdi
, activePCIfn
| reg
, 0x00,
2560 UxxxStatus
= ftdi_elan_read_config(ftdi
, activePCIfn
| reg
, 0,
2564 for (reg
= 0; reg
<= 0x54; reg
+= 4) {
2565 UxxxStatus
= ftdi_elan_read_pcimem(ftdi
, reg
, 0, &pcidata
);
2572 static int ftdi_elan_close_controller(struct usb_ftdi
*ftdi
, int fn
)
2578 int activePCIfn
= fn
<< 8;
2579 UxxxStatus
= ftdi_elan_write_reg(ftdi
, 0x0000025FL
| 0x2800);
2583 UxxxStatus
= ftdi_elan_write_config(ftdi
, activePCIfn
| reg
, 0,
2587 UxxxStatus
= ftdi_elan_read_config(ftdi
, activePCIfn
| reg
, 0,
2591 UxxxStatus
= ftdi_elan_write_config(ftdi
, activePCIfn
| reg
, 0,
2595 UxxxStatus
= ftdi_elan_read_config(ftdi
, activePCIfn
| reg
, 0,
2600 UxxxStatus
= ftdi_elan_read_config(ftdi
, activePCIfn
| reg
, 0,
2604 latence_timer
&= 0xFFFF00FF;
2605 latence_timer
|= 0x00001600;
2606 UxxxStatus
= ftdi_elan_write_config(ftdi
, activePCIfn
| reg
, 0x00,
2610 UxxxStatus
= ftdi_elan_read_config(ftdi
, activePCIfn
| reg
, 0,
2615 UxxxStatus
= ftdi_elan_write_config(ftdi
, activePCIfn
| reg
, 0x00,
2619 UxxxStatus
= ftdi_elan_read_config(ftdi
, activePCIfn
| reg
, 0,
2626 static int ftdi_elan_found_controller(struct usb_ftdi
*ftdi
, int fn
, int quirk
)
2630 UxxxStatus
= ftdi_elan_setup_controller(ftdi
, fn
);
2633 result
= ftdi_elan_check_controller(ftdi
, quirk
);
2634 UxxxStatus
= ftdi_elan_close_controller(ftdi
, fn
);
2640 static int ftdi_elan_enumeratePCI(struct usb_ftdi
*ftdi
)
2645 UxxxStatus
= ftdi_elan_read_reg(ftdi
, &controlreg
);
2648 UxxxStatus
= ftdi_elan_write_reg(ftdi
, 0x00000000L
);
2652 UxxxStatus
= ftdi_elan_write_reg(ftdi
, 0x00000200L
| 0x100);
2655 UxxxStatus
= ftdi_elan_write_reg(ftdi
, 0x00000200L
| 0x500);
2658 UxxxStatus
= ftdi_elan_read_reg(ftdi
, &controlreg
);
2661 UxxxStatus
= ftdi_elan_write_reg(ftdi
, 0x0000020CL
| 0x000);
2664 UxxxStatus
= ftdi_elan_write_reg(ftdi
, 0x0000020DL
| 0x000);
2668 UxxxStatus
= ftdi_elan_write_reg(ftdi
, 0x0000020FL
| 0x000);
2671 UxxxStatus
= ftdi_elan_read_reg(ftdi
, &controlreg
);
2674 UxxxStatus
= ftdi_elan_write_reg(ftdi
, 0x0000025FL
| 0x800);
2677 UxxxStatus
= ftdi_elan_read_reg(ftdi
, &controlreg
);
2680 UxxxStatus
= ftdi_elan_read_reg(ftdi
, &controlreg
);
2684 sensebits
= (controlreg
>> 16) & 0x000F;
2685 if (0x0D == sensebits
)
2691 static int ftdi_elan_setupOHCI(struct usb_ftdi
*ftdi
)
2697 int activePCIfn
= 0;
2698 int max_devices
= 0;
2699 int controllers
= 0;
2700 int unrecognized
= 0;
2702 for (fn
= 0; (fn
< 4); fn
++) {
2706 activePCIfn
= fn
<< 8;
2707 UxxxStatus
= ftdi_elan_read_config(ftdi
, activePCIfn
| reg
, 0,
2711 pciVID
= pcidata
& 0xFFFF;
2712 pciPID
= (pcidata
>> 16) & 0xFFFF;
2713 if ((pciVID
== PCI_VENDOR_ID_OPTI
) && (pciPID
== 0xc861)) {
2714 devices
= ftdi_elan_found_controller(ftdi
, fn
, 0);
2716 } else if ((pciVID
== PCI_VENDOR_ID_NEC
) && (pciPID
== 0x0035))
2718 devices
= ftdi_elan_found_controller(ftdi
, fn
, 0);
2720 } else if ((pciVID
== PCI_VENDOR_ID_AL
) && (pciPID
== 0x5237)) {
2721 devices
= ftdi_elan_found_controller(ftdi
, fn
, 0);
2723 } else if ((pciVID
== PCI_VENDOR_ID_ATT
) && (pciPID
== 0x5802))
2725 devices
= ftdi_elan_found_controller(ftdi
, fn
, 0);
2727 } else if (pciVID
== PCI_VENDOR_ID_AMD
&& pciPID
== 0x740c) {
2728 devices
= ftdi_elan_found_controller(ftdi
, fn
,
2731 } else if (pciVID
== PCI_VENDOR_ID_COMPAQ
&& pciPID
== 0xa0f8) {
2732 devices
= ftdi_elan_found_controller(ftdi
, fn
,
2733 OHCI_QUIRK_ZFMICRO
);
2735 } else if (0 == pcidata
) {
2738 if (devices
> max_devices
) {
2739 max_devices
= devices
;
2740 ftdi
->function
= fn
+ 1;
2741 ftdi
->platform_data
.vendor
= pciVID
;
2742 ftdi
->platform_data
.device
= pciPID
;
2745 if (ftdi
->function
> 0) {
2746 UxxxStatus
= ftdi_elan_setup_controller(ftdi
,
2747 ftdi
->function
- 1);
2751 } else if (controllers
> 0) {
2753 } else if (unrecognized
> 0) {
2756 ftdi
->enumerated
= 0;
2763 * we use only the first bulk-in and bulk-out endpoints
2765 static int ftdi_elan_probe(struct usb_interface
*interface
,
2766 const struct usb_device_id
*id
)
2768 struct usb_host_interface
*iface_desc
;
2769 struct usb_endpoint_descriptor
*endpoint
;
2772 int retval
= -ENOMEM
;
2773 struct usb_ftdi
*ftdi
= kmalloc(sizeof(struct usb_ftdi
), GFP_KERNEL
);
2775 printk(KERN_ERR
"Out of memory\n");
2778 memset(ftdi
, 0x00, sizeof(struct usb_ftdi
));
2779 down(&ftdi_module_lock
);
2780 list_add_tail(&ftdi
->ftdi_list
, &ftdi_static_list
);
2781 ftdi
->sequence_num
= ++ftdi_instances
;
2782 up(&ftdi_module_lock
);
2783 ftdi_elan_init_kref(ftdi
);
2784 init_MUTEX(&ftdi
->sw_lock
);
2785 ftdi
->udev
= usb_get_dev(interface_to_usbdev(interface
));
2786 ftdi
->interface
= interface
;
2787 init_MUTEX(&ftdi
->u132_lock
);
2789 iface_desc
= interface
->cur_altsetting
;
2790 for (i
= 0; i
< iface_desc
->desc
.bNumEndpoints
; ++i
) {
2791 endpoint
= &iface_desc
->endpoint
[i
].desc
;
2792 if (!ftdi
->bulk_in_endpointAddr
&&
2793 usb_endpoint_is_bulk_in(endpoint
)) {
2794 buffer_size
= le16_to_cpu(endpoint
->wMaxPacketSize
);
2795 ftdi
->bulk_in_size
= buffer_size
;
2796 ftdi
->bulk_in_endpointAddr
= endpoint
->bEndpointAddress
;
2797 ftdi
->bulk_in_buffer
= kmalloc(buffer_size
, GFP_KERNEL
);
2798 if (!ftdi
->bulk_in_buffer
) {
2799 dev_err(&ftdi
->udev
->dev
, "Could not allocate b"
2805 if (!ftdi
->bulk_out_endpointAddr
&&
2806 usb_endpoint_is_bulk_out(endpoint
)) {
2807 ftdi
->bulk_out_endpointAddr
=
2808 endpoint
->bEndpointAddress
;
2811 if (!(ftdi
->bulk_in_endpointAddr
&& ftdi
->bulk_out_endpointAddr
)) {
2812 dev_err(&ftdi
->udev
->dev
, "Could not find both bulk-in and bulk"
2813 "-out endpoints\n");
2817 dev_info(&ftdi
->udev
->dev
, "interface %d has I=%02X O=%02X\n",
2818 iface_desc
->desc
.bInterfaceNumber
, ftdi
->bulk_in_endpointAddr
,
2819 ftdi
->bulk_out_endpointAddr
);
2820 usb_set_intfdata(interface
, ftdi
);
2821 if (iface_desc
->desc
.bInterfaceNumber
== 0 &&
2822 ftdi
->bulk_in_endpointAddr
== 0x81 &&
2823 ftdi
->bulk_out_endpointAddr
== 0x02) {
2824 retval
= usb_register_dev(interface
, &ftdi_elan_jtag_class
);
2826 dev_err(&ftdi
->udev
->dev
, "Not able to get a minor for "
2828 usb_set_intfdata(interface
, NULL
);
2832 ftdi
->class = &ftdi_elan_jtag_class
;
2833 dev_info(&ftdi
->udev
->dev
, "USB FDTI=%p JTAG interface "
2834 "%d now attached to ftdi%d\n", ftdi
,
2835 iface_desc
->desc
.bInterfaceNumber
,
2839 } else if (iface_desc
->desc
.bInterfaceNumber
== 1 &&
2840 ftdi
->bulk_in_endpointAddr
== 0x83 &&
2841 ftdi
->bulk_out_endpointAddr
== 0x04) {
2843 dev_info(&ftdi
->udev
->dev
, "USB FDTI=%p ELAN interface %d now a"
2844 "ctivated\n", ftdi
, iface_desc
->desc
.bInterfaceNumber
);
2845 INIT_DELAYED_WORK(&ftdi
->status_work
, ftdi_elan_status_work
);
2846 INIT_DELAYED_WORK(&ftdi
->command_work
, ftdi_elan_command_work
);
2847 INIT_DELAYED_WORK(&ftdi
->respond_work
, ftdi_elan_respond_work
);
2848 ftdi_status_queue_work(ftdi
, msecs_to_jiffies(3 *1000));
2851 dev_err(&ftdi
->udev
->dev
,
2852 "Could not find ELAN's U132 device\n");
2857 ftdi_elan_put_kref(ftdi
);
2862 static void ftdi_elan_disconnect(struct usb_interface
*interface
)
2864 struct usb_ftdi
*ftdi
= usb_get_intfdata(interface
);
2865 ftdi
->disconnected
+= 1;
2867 int minor
= interface
->minor
;
2868 struct usb_class_driver
*class = ftdi
->class;
2869 usb_set_intfdata(interface
, NULL
);
2870 usb_deregister_dev(interface
, class);
2871 dev_info(&ftdi
->udev
->dev
, "USB FTDI U132 jtag interface on min"
2872 "or %d now disconnected\n", minor
);
2874 ftdi_status_cancel_work(ftdi
);
2875 ftdi_command_cancel_work(ftdi
);
2876 ftdi_response_cancel_work(ftdi
);
2877 ftdi_elan_abandon_completions(ftdi
);
2878 ftdi_elan_abandon_targets(ftdi
);
2879 if (ftdi
->registered
) {
2880 platform_device_unregister(&ftdi
->platform_dev
);
2881 ftdi
->synchronized
= 0;
2882 ftdi
->enumerated
= 0;
2883 ftdi
->initialized
= 0;
2884 ftdi
->registered
= 0;
2886 flush_workqueue(status_queue
);
2887 flush_workqueue(command_queue
);
2888 flush_workqueue(respond_queue
);
2889 ftdi
->disconnected
+= 1;
2890 usb_set_intfdata(interface
, NULL
);
2891 dev_info(&ftdi
->udev
->dev
, "USB FTDI U132 host controller inter"
2892 "face now disconnected\n");
2894 ftdi_elan_put_kref(ftdi
);
2897 static struct usb_driver ftdi_elan_driver
= {
2898 .name
= "ftdi-elan",
2899 .probe
= ftdi_elan_probe
,
2900 .disconnect
= ftdi_elan_disconnect
,
2901 .id_table
= ftdi_elan_table
,
2903 static int __init
ftdi_elan_init(void)
2906 printk(KERN_INFO
"driver %s built at %s on %s\n", ftdi_elan_driver
.name
,
2907 __TIME__
, __DATE__
);
2908 init_MUTEX(&ftdi_module_lock
);
2909 INIT_LIST_HEAD(&ftdi_static_list
);
2910 status_queue
= create_singlethread_workqueue("ftdi-status-control");
2912 goto err_status_queue
;
2913 command_queue
= create_singlethread_workqueue("ftdi-command-engine");
2915 goto err_command_queue
;
2916 respond_queue
= create_singlethread_workqueue("ftdi-respond-engine");
2918 goto err_respond_queue
;
2919 result
= usb_register(&ftdi_elan_driver
);
2921 destroy_workqueue(status_queue
);
2922 destroy_workqueue(command_queue
);
2923 destroy_workqueue(respond_queue
);
2924 printk(KERN_ERR
"usb_register failed. Error number %d\n",
2930 destroy_workqueue(command_queue
);
2932 destroy_workqueue(status_queue
);
2934 printk(KERN_ERR
"%s couldn't create workqueue\n", ftdi_elan_driver
.name
);
2938 static void __exit
ftdi_elan_exit(void)
2940 struct usb_ftdi
*ftdi
;
2941 struct usb_ftdi
*temp
;
2942 usb_deregister(&ftdi_elan_driver
);
2943 printk(KERN_INFO
"ftdi_u132 driver deregistered\n");
2944 list_for_each_entry_safe(ftdi
, temp
, &ftdi_static_list
, ftdi_list
) {
2945 ftdi_status_cancel_work(ftdi
);
2946 ftdi_command_cancel_work(ftdi
);
2947 ftdi_response_cancel_work(ftdi
);
2948 } flush_workqueue(status_queue
);
2949 destroy_workqueue(status_queue
);
2950 status_queue
= NULL
;
2951 flush_workqueue(command_queue
);
2952 destroy_workqueue(command_queue
);
2953 command_queue
= NULL
;
2954 flush_workqueue(respond_queue
);
2955 destroy_workqueue(respond_queue
);
2956 respond_queue
= NULL
;
2960 module_init(ftdi_elan_init
);
2961 module_exit(ftdi_elan_exit
);