GNU Linux-libre 5.16.19-gnu
[releases.git] / drivers / usb / misc / ftdi-elan.c
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * USB FTDI client driver for Elan Digital Systems's Uxxx adapters
4  *
5  * Copyright(C) 2006 Elan Digital Systems Limited
6  * http://www.elandigitalsystems.com
7  *
8  * Author and Maintainer - Tony Olech - Elan Digital Systems
9  * tony.olech@elandigitalsystems.com
10  *
11  * This driver was written by Tony Olech(tony.olech@elandigitalsystems.com)
12  * based on various USB client drivers in the 2.6.15 linux kernel
13  * with constant reference to the 3rd Edition of Linux Device Drivers
14  * published by O'Reilly
15  *
16  * The U132 adapter is a USB to CardBus adapter specifically designed
17  * for PC cards that contain an OHCI host controller. Typical PC cards
18  * are the Orange Mobile 3G Option GlobeTrotter Fusion card.
19  *
20  * The U132 adapter will *NOT *work with PC cards that do not contain
21  * an OHCI controller. A simple way to test whether a PC card has an
22  * OHCI controller as an interface is to insert the PC card directly
23  * into a laptop(or desktop) with a CardBus slot and if "lspci" shows
24  * a new USB controller and "lsusb -v" shows a new OHCI Host Controller
25  * then there is a good chance that the U132 adapter will support the
26  * PC card.(you also need the specific client driver for the PC card)
27  *
28  * Please inform the Author and Maintainer about any PC cards that
29  * contain OHCI Host Controller and work when directly connected to
30  * an embedded CardBus slot but do not work when they are connected
31  * via an ELAN U132 adapter.
32  *
33  */
34
35 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
36
37 #include <linux/kernel.h>
38 #include <linux/errno.h>
39 #include <linux/init.h>
40 #include <linux/list.h>
41 #include <linux/ioctl.h>
42 #include <linux/pci_ids.h>
43 #include <linux/slab.h>
44 #include <linux/module.h>
45 #include <linux/kref.h>
46 #include <linux/mutex.h>
47 #include <linux/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 bool distrust_firmware = 1;
56 module_param(distrust_firmware, bool, 0);
57 MODULE_PARM_DESC(distrust_firmware,
58                  "true to distrust firmware power/overcurrent setup");
59 extern struct platform_driver u132_platform_driver;
60 /*
61  * ftdi_module_lock exists to protect access to global variables
62  *
63  */
64 static struct mutex ftdi_module_lock;
65 static int ftdi_instances = 0;
66 static struct list_head ftdi_static_list;
67 /*
68  * end of the global variables protected by ftdi_module_lock
69  */
70 #include "usb_u132.h"
71 #include <asm/io.h>
72 #include <linux/usb/hcd.h>
73
74 /* FIXME ohci.h is ONLY for internal use by the OHCI driver.
75  * If you're going to try stuff like this, you need to split
76  * out shareable stuff (register declarations?) into its own
77  * file, maybe name <linux/usb/ohci.h>
78  */
79
80 #include "../host/ohci.h"
81 /* Define these values to match your devices*/
82 #define USB_FTDI_ELAN_VENDOR_ID 0x0403
83 #define USB_FTDI_ELAN_PRODUCT_ID 0xd6ea
84 /* table of devices that work with this driver*/
85 static const struct usb_device_id ftdi_elan_table[] = {
86         {USB_DEVICE(USB_FTDI_ELAN_VENDOR_ID, USB_FTDI_ELAN_PRODUCT_ID)},
87         { /* Terminating entry */ }
88 };
89
90 MODULE_DEVICE_TABLE(usb, ftdi_elan_table);
91 /* only the jtag(firmware upgrade device) interface requires
92  * a device file and corresponding minor number, but the
93  * interface is created unconditionally - I suppose it could
94  * be configured or not according to a module parameter.
95  * But since we(now) require one interface per device,
96  * and since it unlikely that a normal installation would
97  * require more than a couple of elan-ftdi devices, 8 seems
98  * like a reasonable limit to have here, and if someone
99  * really requires more than 8 devices, then they can frig the
100  * code and recompile
101  */
102 #define USB_FTDI_ELAN_MINOR_BASE 192
103 #define COMMAND_BITS 5
104 #define COMMAND_SIZE (1<<COMMAND_BITS)
105 #define COMMAND_MASK (COMMAND_SIZE-1)
106 struct u132_command {
107         u8 header;
108         u16 length;
109         u8 address;
110         u8 width;
111         u32 value;
112         int follows;
113         void *buffer;
114 };
115 #define RESPOND_BITS 5
116 #define RESPOND_SIZE (1<<RESPOND_BITS)
117 #define RESPOND_MASK (RESPOND_SIZE-1)
118 struct u132_respond {
119         u8 header;
120         u8 address;
121         u32 *value;
122         int *result;
123         struct completion wait_completion;
124 };
125 struct u132_target {
126         void *endp;
127         struct urb *urb;
128         int toggle_bits;
129         int error_count;
130         int condition_code;
131         int repeat_number;
132         int halted;
133         int skipped;
134         int actual;
135         int non_null;
136         int active;
137         int abandoning;
138         void (*callback)(void *endp, struct urb *urb, u8 *buf, int len,
139                          int toggle_bits, int error_count, int condition_code,
140                          int repeat_number, int halted, int skipped, int actual,
141                          int non_null);
142 };
143 /* Structure to hold all of our device specific stuff*/
144 struct usb_ftdi {
145         struct list_head ftdi_list;
146         struct mutex u132_lock;
147         int command_next;
148         int command_head;
149         struct u132_command command[COMMAND_SIZE];
150         int respond_next;
151         int respond_head;
152         struct u132_respond respond[RESPOND_SIZE];
153         struct u132_target target[4];
154         char device_name[16];
155         unsigned synchronized:1;
156         unsigned enumerated:1;
157         unsigned registered:1;
158         unsigned initialized:1;
159         unsigned card_ejected:1;
160         int function;
161         int sequence_num;
162         int disconnected;
163         int gone_away;
164         int stuck_status;
165         int status_queue_delay;
166         struct semaphore sw_lock;
167         struct usb_device *udev;
168         struct usb_interface *interface;
169         struct usb_class_driver *class;
170         struct delayed_work status_work;
171         struct delayed_work command_work;
172         struct delayed_work respond_work;
173         struct u132_platform_data platform_data;
174         struct resource resources[0];
175         struct platform_device platform_dev;
176         unsigned char *bulk_in_buffer;
177         size_t bulk_in_size;
178         size_t bulk_in_last;
179         size_t bulk_in_left;
180         __u8 bulk_in_endpointAddr;
181         __u8 bulk_out_endpointAddr;
182         struct kref kref;
183         u32 controlreg;
184         u8 response[4 + 1024];
185         int expected;
186         int received;
187         int ed_found;
188 };
189 #define kref_to_usb_ftdi(d) container_of(d, struct usb_ftdi, kref)
190 #define platform_device_to_usb_ftdi(d) container_of(d, struct usb_ftdi, \
191                                                     platform_dev)
192 static struct usb_driver ftdi_elan_driver;
193 static void ftdi_elan_delete(struct kref *kref)
194 {
195         struct usb_ftdi *ftdi = kref_to_usb_ftdi(kref);
196         dev_warn(&ftdi->udev->dev, "FREEING ftdi=%p\n", ftdi);
197         usb_put_dev(ftdi->udev);
198         ftdi->disconnected += 1;
199         mutex_lock(&ftdi_module_lock);
200         list_del_init(&ftdi->ftdi_list);
201         ftdi_instances -= 1;
202         mutex_unlock(&ftdi_module_lock);
203         kfree(ftdi->bulk_in_buffer);
204         ftdi->bulk_in_buffer = NULL;
205         kfree(ftdi);
206 }
207
208 static void ftdi_elan_put_kref(struct usb_ftdi *ftdi)
209 {
210         kref_put(&ftdi->kref, ftdi_elan_delete);
211 }
212
213 static void ftdi_elan_get_kref(struct usb_ftdi *ftdi)
214 {
215         kref_get(&ftdi->kref);
216 }
217
218 static void ftdi_elan_init_kref(struct usb_ftdi *ftdi)
219 {
220         kref_init(&ftdi->kref);
221 }
222
223 static void ftdi_status_requeue_work(struct usb_ftdi *ftdi, unsigned int delta)
224 {
225         if (!schedule_delayed_work(&ftdi->status_work, delta))
226                 kref_put(&ftdi->kref, ftdi_elan_delete);
227 }
228
229 static void ftdi_status_queue_work(struct usb_ftdi *ftdi, unsigned int delta)
230 {
231         if (schedule_delayed_work(&ftdi->status_work, delta))
232                 kref_get(&ftdi->kref);
233 }
234
235 static void ftdi_status_cancel_work(struct usb_ftdi *ftdi)
236 {
237         if (cancel_delayed_work_sync(&ftdi->status_work))
238                 kref_put(&ftdi->kref, ftdi_elan_delete);
239 }
240
241 static void ftdi_command_requeue_work(struct usb_ftdi *ftdi, unsigned int delta)
242 {
243         if (!schedule_delayed_work(&ftdi->command_work, delta))
244                 kref_put(&ftdi->kref, ftdi_elan_delete);
245 }
246
247 static void ftdi_command_queue_work(struct usb_ftdi *ftdi, unsigned int delta)
248 {
249         if (schedule_delayed_work(&ftdi->command_work, delta))
250                 kref_get(&ftdi->kref);
251 }
252
253 static void ftdi_command_cancel_work(struct usb_ftdi *ftdi)
254 {
255         if (cancel_delayed_work_sync(&ftdi->command_work))
256                 kref_put(&ftdi->kref, ftdi_elan_delete);
257 }
258
259 static void ftdi_response_requeue_work(struct usb_ftdi *ftdi,
260                                        unsigned int delta)
261 {
262         if (!schedule_delayed_work(&ftdi->respond_work, delta))
263                 kref_put(&ftdi->kref, ftdi_elan_delete);
264 }
265
266 static void ftdi_respond_queue_work(struct usb_ftdi *ftdi, unsigned int delta)
267 {
268         if (schedule_delayed_work(&ftdi->respond_work, delta))
269                 kref_get(&ftdi->kref);
270 }
271
272 static void ftdi_response_cancel_work(struct usb_ftdi *ftdi)
273 {
274         if (cancel_delayed_work_sync(&ftdi->respond_work))
275                 kref_put(&ftdi->kref, ftdi_elan_delete);
276 }
277
278 void ftdi_elan_gone_away(struct platform_device *pdev)
279 {
280         struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
281         ftdi->gone_away += 1;
282         ftdi_elan_put_kref(ftdi);
283 }
284
285
286 EXPORT_SYMBOL_GPL(ftdi_elan_gone_away);
287 static void ftdi_release_platform_dev(struct device *dev)
288 {
289         dev->parent = NULL;
290 }
291
292 static void ftdi_elan_do_callback(struct usb_ftdi *ftdi,
293                                   struct u132_target *target, u8 *buffer, int length);
294 static void ftdi_elan_kick_command_queue(struct usb_ftdi *ftdi);
295 static void ftdi_elan_kick_respond_queue(struct usb_ftdi *ftdi);
296 static int ftdi_elan_setupOHCI(struct usb_ftdi *ftdi);
297 static int ftdi_elan_checkingPCI(struct usb_ftdi *ftdi);
298 static int ftdi_elan_enumeratePCI(struct usb_ftdi *ftdi);
299 static int ftdi_elan_synchronize(struct usb_ftdi *ftdi);
300 static int ftdi_elan_stuck_waiting(struct usb_ftdi *ftdi);
301 static int ftdi_elan_command_engine(struct usb_ftdi *ftdi);
302 static int ftdi_elan_respond_engine(struct usb_ftdi *ftdi);
303 static int ftdi_elan_hcd_init(struct usb_ftdi *ftdi)
304 {
305         if (ftdi->platform_dev.dev.parent)
306                 return -EBUSY;
307
308         ftdi_elan_get_kref(ftdi);
309         ftdi->platform_data.potpg = 100;
310         ftdi->platform_data.reset = NULL;
311         ftdi->platform_dev.id = ftdi->sequence_num;
312         ftdi->platform_dev.resource = ftdi->resources;
313         ftdi->platform_dev.num_resources = ARRAY_SIZE(ftdi->resources);
314         ftdi->platform_dev.dev.platform_data = &ftdi->platform_data;
315         ftdi->platform_dev.dev.parent = NULL;
316         ftdi->platform_dev.dev.release = ftdi_release_platform_dev;
317         ftdi->platform_dev.dev.dma_mask = NULL;
318         snprintf(ftdi->device_name, sizeof(ftdi->device_name), "u132_hcd");
319         ftdi->platform_dev.name = ftdi->device_name;
320         dev_info(&ftdi->udev->dev, "requesting module '%s'\n", "u132_hcd");
321         request_module("u132_hcd");
322         dev_info(&ftdi->udev->dev, "registering '%s'\n",
323                  ftdi->platform_dev.name);
324
325         return platform_device_register(&ftdi->platform_dev);
326 }
327
328 static void ftdi_elan_abandon_completions(struct usb_ftdi *ftdi)
329 {
330         mutex_lock(&ftdi->u132_lock);
331         while (ftdi->respond_next > ftdi->respond_head) {
332                 struct u132_respond *respond = &ftdi->respond[RESPOND_MASK &
333                                                               ftdi->respond_head++];
334                 *respond->result = -ESHUTDOWN;
335                 *respond->value = 0;
336                 complete(&respond->wait_completion);
337         }
338         mutex_unlock(&ftdi->u132_lock);
339 }
340
341 static void ftdi_elan_abandon_targets(struct usb_ftdi *ftdi)
342 {
343         int ed_number = 4;
344         mutex_lock(&ftdi->u132_lock);
345         while (ed_number-- > 0) {
346                 struct u132_target *target = &ftdi->target[ed_number];
347                 if (target->active == 1) {
348                         target->condition_code = TD_DEVNOTRESP;
349                         mutex_unlock(&ftdi->u132_lock);
350                         ftdi_elan_do_callback(ftdi, target, NULL, 0);
351                         mutex_lock(&ftdi->u132_lock);
352                 }
353         }
354         ftdi->received = 0;
355         ftdi->expected = 4;
356         ftdi->ed_found = 0;
357         mutex_unlock(&ftdi->u132_lock);
358 }
359
360 static void ftdi_elan_flush_targets(struct usb_ftdi *ftdi)
361 {
362         int ed_number = 4;
363         mutex_lock(&ftdi->u132_lock);
364         while (ed_number-- > 0) {
365                 struct u132_target *target = &ftdi->target[ed_number];
366                 target->abandoning = 1;
367         wait_1:if (target->active == 1) {
368                         int command_size = ftdi->command_next -
369                                 ftdi->command_head;
370                         if (command_size < COMMAND_SIZE) {
371                                 struct u132_command *command = &ftdi->command[
372                                         COMMAND_MASK & ftdi->command_next];
373                                 command->header = 0x80 | (ed_number << 5) | 0x4;
374                                 command->length = 0x00;
375                                 command->address = 0x00;
376                                 command->width = 0x00;
377                                 command->follows = 0;
378                                 command->value = 0;
379                                 command->buffer = &command->value;
380                                 ftdi->command_next += 1;
381                                 ftdi_elan_kick_command_queue(ftdi);
382                         } else {
383                                 mutex_unlock(&ftdi->u132_lock);
384                                 msleep(100);
385                                 mutex_lock(&ftdi->u132_lock);
386                                 goto wait_1;
387                         }
388                 }
389         wait_2:if (target->active == 1) {
390                         int command_size = ftdi->command_next -
391                                 ftdi->command_head;
392                         if (command_size < COMMAND_SIZE) {
393                                 struct u132_command *command = &ftdi->command[
394                                         COMMAND_MASK & ftdi->command_next];
395                                 command->header = 0x90 | (ed_number << 5);
396                                 command->length = 0x00;
397                                 command->address = 0x00;
398                                 command->width = 0x00;
399                                 command->follows = 0;
400                                 command->value = 0;
401                                 command->buffer = &command->value;
402                                 ftdi->command_next += 1;
403                                 ftdi_elan_kick_command_queue(ftdi);
404                         } else {
405                                 mutex_unlock(&ftdi->u132_lock);
406                                 msleep(100);
407                                 mutex_lock(&ftdi->u132_lock);
408                                 goto wait_2;
409                         }
410                 }
411         }
412         ftdi->received = 0;
413         ftdi->expected = 4;
414         ftdi->ed_found = 0;
415         mutex_unlock(&ftdi->u132_lock);
416 }
417
418 static void ftdi_elan_cancel_targets(struct usb_ftdi *ftdi)
419 {
420         int ed_number = 4;
421         mutex_lock(&ftdi->u132_lock);
422         while (ed_number-- > 0) {
423                 struct u132_target *target = &ftdi->target[ed_number];
424                 target->abandoning = 1;
425         wait:if (target->active == 1) {
426                         int command_size = ftdi->command_next -
427                                 ftdi->command_head;
428                         if (command_size < COMMAND_SIZE) {
429                                 struct u132_command *command = &ftdi->command[
430                                         COMMAND_MASK & ftdi->command_next];
431                                 command->header = 0x80 | (ed_number << 5) | 0x4;
432                                 command->length = 0x00;
433                                 command->address = 0x00;
434                                 command->width = 0x00;
435                                 command->follows = 0;
436                                 command->value = 0;
437                                 command->buffer = &command->value;
438                                 ftdi->command_next += 1;
439                                 ftdi_elan_kick_command_queue(ftdi);
440                         } else {
441                                 mutex_unlock(&ftdi->u132_lock);
442                                 msleep(100);
443                                 mutex_lock(&ftdi->u132_lock);
444                                 goto wait;
445                         }
446                 }
447         }
448         ftdi->received = 0;
449         ftdi->expected = 4;
450         ftdi->ed_found = 0;
451         mutex_unlock(&ftdi->u132_lock);
452 }
453
454 static void ftdi_elan_kick_command_queue(struct usb_ftdi *ftdi)
455 {
456         ftdi_command_queue_work(ftdi, 0);
457 }
458
459 static void ftdi_elan_command_work(struct work_struct *work)
460 {
461         struct usb_ftdi *ftdi =
462                 container_of(work, struct usb_ftdi, command_work.work);
463
464         if (ftdi->disconnected > 0) {
465                 ftdi_elan_put_kref(ftdi);
466                 return;
467         } else {
468                 int retval = ftdi_elan_command_engine(ftdi);
469                 if (retval == -ESHUTDOWN) {
470                         ftdi->disconnected += 1;
471                 } else if (retval == -ENODEV) {
472                         ftdi->disconnected += 1;
473                 } else if (retval)
474                         dev_err(&ftdi->udev->dev, "command error %d\n", retval);
475                 ftdi_command_requeue_work(ftdi, msecs_to_jiffies(10));
476                 return;
477         }
478 }
479
480 static void ftdi_elan_kick_respond_queue(struct usb_ftdi *ftdi)
481 {
482         ftdi_respond_queue_work(ftdi, 0);
483 }
484
485 static void ftdi_elan_respond_work(struct work_struct *work)
486 {
487         struct usb_ftdi *ftdi =
488                 container_of(work, struct usb_ftdi, respond_work.work);
489         if (ftdi->disconnected > 0) {
490                 ftdi_elan_put_kref(ftdi);
491                 return;
492         } else {
493                 int retval = ftdi_elan_respond_engine(ftdi);
494                 if (retval == 0) {
495                 } else if (retval == -ESHUTDOWN) {
496                         ftdi->disconnected += 1;
497                 } else if (retval == -ENODEV) {
498                         ftdi->disconnected += 1;
499                 } else if (retval == -EILSEQ) {
500                         ftdi->disconnected += 1;
501                 } else {
502                         ftdi->disconnected += 1;
503                         dev_err(&ftdi->udev->dev, "respond error %d\n", retval);
504                 }
505                 if (ftdi->disconnected > 0) {
506                         ftdi_elan_abandon_completions(ftdi);
507                         ftdi_elan_abandon_targets(ftdi);
508                 }
509                 ftdi_response_requeue_work(ftdi, msecs_to_jiffies(10));
510                 return;
511         }
512 }
513
514
515 /*
516  * the sw_lock is initially held and will be freed
517  * after the FTDI has been synchronized
518  *
519  */
520 static void ftdi_elan_status_work(struct work_struct *work)
521 {
522         struct usb_ftdi *ftdi =
523                 container_of(work, struct usb_ftdi, status_work.work);
524         int work_delay_in_msec = 0;
525         if (ftdi->disconnected > 0) {
526                 ftdi_elan_put_kref(ftdi);
527                 return;
528         } else if (ftdi->synchronized == 0) {
529                 down(&ftdi->sw_lock);
530                 if (ftdi_elan_synchronize(ftdi) == 0) {
531                         ftdi->synchronized = 1;
532                         ftdi_command_queue_work(ftdi, 1);
533                         ftdi_respond_queue_work(ftdi, 1);
534                         up(&ftdi->sw_lock);
535                         work_delay_in_msec = 100;
536                 } else {
537                         dev_err(&ftdi->udev->dev, "synchronize failed\n");
538                         up(&ftdi->sw_lock);
539                         work_delay_in_msec = 10 *1000;
540                 }
541         } else if (ftdi->stuck_status > 0) {
542                 if (ftdi_elan_stuck_waiting(ftdi) == 0) {
543                         ftdi->stuck_status = 0;
544                         ftdi->synchronized = 0;
545                 } else if ((ftdi->stuck_status++ % 60) == 1) {
546                         dev_err(&ftdi->udev->dev, "WRONG type of card inserted - please remove\n");
547                 } else
548                         dev_err(&ftdi->udev->dev, "WRONG type of card inserted - checked %d times\n",
549                                 ftdi->stuck_status);
550                 work_delay_in_msec = 100;
551         } else if (ftdi->enumerated == 0) {
552                 if (ftdi_elan_enumeratePCI(ftdi) == 0) {
553                         ftdi->enumerated = 1;
554                         work_delay_in_msec = 250;
555                 } else
556                         work_delay_in_msec = 1000;
557         } else if (ftdi->initialized == 0) {
558                 if (ftdi_elan_setupOHCI(ftdi) == 0) {
559                         ftdi->initialized = 1;
560                         work_delay_in_msec = 500;
561                 } else {
562                         dev_err(&ftdi->udev->dev, "initialized failed - trying again in 10 seconds\n");
563                         work_delay_in_msec = 1 *1000;
564                 }
565         } else if (ftdi->registered == 0) {
566                 work_delay_in_msec = 10;
567                 if (ftdi_elan_hcd_init(ftdi) == 0) {
568                         ftdi->registered = 1;
569                 } else
570                         dev_err(&ftdi->udev->dev, "register failed\n");
571                 work_delay_in_msec = 250;
572         } else {
573                 if (ftdi_elan_checkingPCI(ftdi) == 0) {
574                         work_delay_in_msec = 250;
575                 } else if (ftdi->controlreg & 0x00400000) {
576                         if (ftdi->gone_away > 0) {
577                                 dev_err(&ftdi->udev->dev, "PCI device eject confirmed platform_dev.dev.parent=%p platform_dev.dev=%p\n",
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;
586                                 ftdi->gone_away = 0;
587                         } else
588                                 ftdi_elan_flush_targets(ftdi);
589                         work_delay_in_msec = 250;
590                 } else {
591                         dev_err(&ftdi->udev->dev, "PCI device has disappeared\n");
592                         ftdi_elan_cancel_targets(ftdi);
593                         work_delay_in_msec = 500;
594                         ftdi->enumerated = 0;
595                         ftdi->initialized = 0;
596                 }
597         }
598         if (ftdi->disconnected > 0) {
599                 ftdi_elan_put_kref(ftdi);
600                 return;
601         } else {
602                 ftdi_status_requeue_work(ftdi,
603                                          msecs_to_jiffies(work_delay_in_msec));
604                 return;
605         }
606 }
607
608
609 /*
610  * file_operations for the jtag interface
611  *
612  * the usage count for the device is incremented on open()
613  * and decremented on release()
614  */
615 static int ftdi_elan_open(struct inode *inode, struct file *file)
616 {
617         int subminor;
618         struct usb_interface *interface;
619
620         subminor = iminor(inode);
621         interface = usb_find_interface(&ftdi_elan_driver, subminor);
622
623         if (!interface) {
624                 pr_err("can't find device for minor %d\n", subminor);
625                 return -ENODEV;
626         } else {
627                 struct usb_ftdi *ftdi = usb_get_intfdata(interface);
628                 if (!ftdi) {
629                         return -ENODEV;
630                 } else {
631                         if (down_interruptible(&ftdi->sw_lock)) {
632                                 return -EINTR;
633                         } else {
634                                 ftdi_elan_get_kref(ftdi);
635                                 file->private_data = ftdi;
636                                 return 0;
637                         }
638                 }
639         }
640 }
641
642 static int ftdi_elan_release(struct inode *inode, struct file *file)
643 {
644         struct usb_ftdi *ftdi = file->private_data;
645         if (ftdi == NULL)
646                 return -ENODEV;
647         up(&ftdi->sw_lock);        /* decrement the count on our device */
648         ftdi_elan_put_kref(ftdi);
649         return 0;
650 }
651
652
653 /*
654  *
655  * blocking bulk reads are used to get data from the device
656  *
657  */
658 static ssize_t ftdi_elan_read(struct file *file, char __user *buffer,
659                               size_t count, loff_t *ppos)
660 {
661         char data[30 *3 + 4];
662         char *d = data;
663         int m = (sizeof(data) - 1) / 3 - 1;
664         int bytes_read = 0;
665         int retry_on_empty = 10;
666         int retry_on_timeout = 5;
667         struct usb_ftdi *ftdi = file->private_data;
668         if (ftdi->disconnected > 0) {
669                 return -ENODEV;
670         }
671         data[0] = 0;
672 have:if (ftdi->bulk_in_left > 0) {
673                 if (count-- > 0) {
674                         char *p = ++ftdi->bulk_in_last + ftdi->bulk_in_buffer;
675                         ftdi->bulk_in_left -= 1;
676                         if (bytes_read < m) {
677                                 d += sprintf(d, " %02X", 0x000000FF & *p);
678                         } else if (bytes_read > m) {
679                         } else
680                                 d += sprintf(d, " ..");
681                         if (copy_to_user(buffer++, p, 1)) {
682                                 return -EFAULT;
683                         } else {
684                                 bytes_read += 1;
685                                 goto have;
686                         }
687                 } else
688                         return bytes_read;
689         }
690 more:if (count > 0) {
691                 int packet_bytes = 0;
692                 int retval = usb_bulk_msg(ftdi->udev,
693                                           usb_rcvbulkpipe(ftdi->udev, ftdi->bulk_in_endpointAddr),
694                                           ftdi->bulk_in_buffer, ftdi->bulk_in_size,
695                                           &packet_bytes, 50);
696                 if (packet_bytes > 2) {
697                         ftdi->bulk_in_left = packet_bytes - 2;
698                         ftdi->bulk_in_last = 1;
699                         goto have;
700                 } else if (retval == -ETIMEDOUT) {
701                         if (retry_on_timeout-- > 0) {
702                                 goto more;
703                         } else if (bytes_read > 0) {
704                                 return bytes_read;
705                         } else
706                                 return retval;
707                 } else if (retval == 0) {
708                         if (retry_on_empty-- > 0) {
709                                 goto more;
710                         } else
711                                 return bytes_read;
712                 } else
713                         return retval;
714         } else
715                 return bytes_read;
716 }
717
718 static void ftdi_elan_write_bulk_callback(struct urb *urb)
719 {
720         struct usb_ftdi *ftdi = urb->context;
721         int status = urb->status;
722
723         if (status && !(status == -ENOENT || status == -ECONNRESET ||
724                         status == -ESHUTDOWN)) {
725                 dev_err(&ftdi->udev->dev,
726                         "urb=%p write bulk status received: %d\n", urb, status);
727         }
728         usb_free_coherent(urb->dev, urb->transfer_buffer_length,
729                           urb->transfer_buffer, urb->transfer_dma);
730 }
731
732 static int fill_buffer_with_all_queued_commands(struct usb_ftdi *ftdi,
733                                                 char *buf, int command_size, int total_size)
734 {
735         int ed_commands = 0;
736         int b = 0;
737         int I = command_size;
738         int i = ftdi->command_head;
739         while (I-- > 0) {
740                 struct u132_command *command = &ftdi->command[COMMAND_MASK &
741                                                               i++];
742                 int F = command->follows;
743                 u8 *f = command->buffer;
744                 if (command->header & 0x80) {
745                         ed_commands |= 1 << (0x3 & (command->header >> 5));
746                 }
747                 buf[b++] = command->header;
748                 buf[b++] = (command->length >> 0) & 0x00FF;
749                 buf[b++] = (command->length >> 8) & 0x00FF;
750                 buf[b++] = command->address;
751                 buf[b++] = command->width;
752                 while (F-- > 0) {
753                         buf[b++] = *f++;
754                 }
755         }
756         return ed_commands;
757 }
758
759 static int ftdi_elan_total_command_size(struct usb_ftdi *ftdi, int command_size)
760 {
761         int total_size = 0;
762         int I = command_size;
763         int i = ftdi->command_head;
764         while (I-- > 0) {
765                 struct u132_command *command = &ftdi->command[COMMAND_MASK &
766                                                               i++];
767                 total_size += 5 + command->follows;
768         }
769         return total_size;
770 }
771
772 static int ftdi_elan_command_engine(struct usb_ftdi *ftdi)
773 {
774         int retval;
775         char *buf;
776         int ed_commands;
777         int total_size;
778         struct urb *urb;
779         int command_size = ftdi->command_next - ftdi->command_head;
780         if (command_size == 0)
781                 return 0;
782         total_size = ftdi_elan_total_command_size(ftdi, command_size);
783         urb = usb_alloc_urb(0, GFP_KERNEL);
784         if (!urb)
785                 return -ENOMEM;
786         buf = usb_alloc_coherent(ftdi->udev, total_size, GFP_KERNEL,
787                                  &urb->transfer_dma);
788         if (!buf) {
789                 dev_err(&ftdi->udev->dev, "could not get a buffer to write %d commands totaling %d bytes to the Uxxx\n",
790                         command_size, total_size);
791                 usb_free_urb(urb);
792                 return -ENOMEM;
793         }
794         ed_commands = fill_buffer_with_all_queued_commands(ftdi, buf,
795                                                            command_size, total_size);
796         usb_fill_bulk_urb(urb, ftdi->udev, usb_sndbulkpipe(ftdi->udev,
797                                                            ftdi->bulk_out_endpointAddr), buf, total_size,
798                           ftdi_elan_write_bulk_callback, ftdi);
799         urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
800         if (ed_commands) {
801                 char diag[40 *3 + 4];
802                 char *d = diag;
803                 int m = total_size;
804                 u8 *c = buf;
805                 int s = (sizeof(diag) - 1) / 3;
806                 diag[0] = 0;
807                 while (s-- > 0 && m-- > 0) {
808                         if (s > 0 || m == 0) {
809                                 d += sprintf(d, " %02X", *c++);
810                         } else
811                                 d += sprintf(d, " ..");
812                 }
813         }
814         retval = usb_submit_urb(urb, GFP_KERNEL);
815         if (retval) {
816                 dev_err(&ftdi->udev->dev, "failed %d to submit urb %p to write %d commands totaling %d bytes to the Uxxx\n",
817                         retval, urb, command_size, total_size);
818                 usb_free_coherent(ftdi->udev, total_size, buf, urb->transfer_dma);
819                 usb_free_urb(urb);
820                 return retval;
821         }
822         usb_free_urb(urb);        /* release our reference to this urb,
823                                      the USB core will eventually free it entirely */
824         ftdi->command_head += command_size;
825         ftdi_elan_kick_respond_queue(ftdi);
826         return 0;
827 }
828
829 static void ftdi_elan_do_callback(struct usb_ftdi *ftdi,
830                                   struct u132_target *target, u8 *buffer, int length)
831 {
832         struct urb *urb = target->urb;
833         int halted = target->halted;
834         int skipped = target->skipped;
835         int actual = target->actual;
836         int non_null = target->non_null;
837         int toggle_bits = target->toggle_bits;
838         int error_count = target->error_count;
839         int condition_code = target->condition_code;
840         int repeat_number = target->repeat_number;
841         void (*callback) (void *, struct urb *, u8 *, int, int, int, int, int,
842                           int, int, int, int) = target->callback;
843         target->active -= 1;
844         target->callback = NULL;
845         (*callback) (target->endp, urb, buffer, length, toggle_bits,
846                      error_count, condition_code, repeat_number, halted, skipped,
847                      actual, non_null);
848 }
849
850 static char *have_ed_set_response(struct usb_ftdi *ftdi,
851                                   struct u132_target *target, u16 ed_length, int ed_number, int ed_type,
852                                   char *b)
853 {
854         int payload = (ed_length >> 0) & 0x07FF;
855         mutex_lock(&ftdi->u132_lock);
856         target->actual = 0;
857         target->non_null = (ed_length >> 15) & 0x0001;
858         target->repeat_number = (ed_length >> 11) & 0x000F;
859         if (ed_type == 0x02 || ed_type == 0x03) {
860                 if (payload == 0 || target->abandoning > 0) {
861                         target->abandoning = 0;
862                         mutex_unlock(&ftdi->u132_lock);
863                         ftdi_elan_do_callback(ftdi, target, 4 + ftdi->response,
864                                               payload);
865                         ftdi->received = 0;
866                         ftdi->expected = 4;
867                         ftdi->ed_found = 0;
868                         return ftdi->response;
869                 } else {
870                         ftdi->expected = 4 + payload;
871                         ftdi->ed_found = 1;
872                         mutex_unlock(&ftdi->u132_lock);
873                         return b;
874                 }
875         } else {
876                 target->abandoning = 0;
877                 mutex_unlock(&ftdi->u132_lock);
878                 ftdi_elan_do_callback(ftdi, target, 4 + ftdi->response,
879                                       payload);
880                 ftdi->received = 0;
881                 ftdi->expected = 4;
882                 ftdi->ed_found = 0;
883                 return ftdi->response;
884         }
885 }
886
887 static char *have_ed_get_response(struct usb_ftdi *ftdi,
888                                   struct u132_target *target, u16 ed_length, int ed_number, int ed_type,
889                                   char *b)
890 {
891         mutex_lock(&ftdi->u132_lock);
892         target->condition_code = TD_DEVNOTRESP;
893         target->actual = (ed_length >> 0) & 0x01FF;
894         target->non_null = (ed_length >> 15) & 0x0001;
895         target->repeat_number = (ed_length >> 11) & 0x000F;
896         mutex_unlock(&ftdi->u132_lock);
897         if (target->active)
898                 ftdi_elan_do_callback(ftdi, target, NULL, 0);
899         target->abandoning = 0;
900         ftdi->received = 0;
901         ftdi->expected = 4;
902         ftdi->ed_found = 0;
903         return ftdi->response;
904 }
905
906
907 /*
908  * The engine tries to empty the FTDI fifo
909  *
910  * all responses found in the fifo data are dispatched thus
911  * the response buffer can only ever hold a maximum sized
912  * response from the Uxxx.
913  *
914  */
915 static int ftdi_elan_respond_engine(struct usb_ftdi *ftdi)
916 {
917         u8 *b = ftdi->response + ftdi->received;
918         int bytes_read = 0;
919         int retry_on_empty = 1;
920         int retry_on_timeout = 3;
921 read:{
922                 int packet_bytes = 0;
923                 int retval = usb_bulk_msg(ftdi->udev,
924                                           usb_rcvbulkpipe(ftdi->udev, ftdi->bulk_in_endpointAddr),
925                                           ftdi->bulk_in_buffer, ftdi->bulk_in_size,
926                                           &packet_bytes, 500);
927                 char diag[30 *3 + 4];
928                 char *d = diag;
929                 int m = packet_bytes;
930                 u8 *c = ftdi->bulk_in_buffer;
931                 int s = (sizeof(diag) - 1) / 3;
932                 diag[0] = 0;
933                 while (s-- > 0 && m-- > 0) {
934                         if (s > 0 || m == 0) {
935                                 d += sprintf(d, " %02X", *c++);
936                         } else
937                                 d += sprintf(d, " ..");
938                 }
939                 if (packet_bytes > 2) {
940                         ftdi->bulk_in_left = packet_bytes - 2;
941                         ftdi->bulk_in_last = 1;
942                         goto have;
943                 } else if (retval == -ETIMEDOUT) {
944                         if (retry_on_timeout-- > 0) {
945                                 dev_err(&ftdi->udev->dev, "TIMED OUT with packet_bytes = %d with total %d bytes%s\n",
946                                         packet_bytes, bytes_read, diag);
947                                 goto more;
948                         } else if (bytes_read > 0) {
949                                 dev_err(&ftdi->udev->dev, "ONLY %d bytes%s\n",
950                                         bytes_read, diag);
951                                 return -ENOMEM;
952                         } else {
953                                 dev_err(&ftdi->udev->dev, "TIMED OUT with packet_bytes = %d with total %d bytes%s\n",
954                                         packet_bytes, bytes_read, diag);
955                                 return -ENOMEM;
956                         }
957                 } else if (retval == -EILSEQ) {
958                         dev_err(&ftdi->udev->dev, "error = %d with packet_bytes = %d with total %d bytes%s\n",
959                                 retval, packet_bytes, bytes_read, diag);
960                         return retval;
961                 } else if (retval) {
962                         dev_err(&ftdi->udev->dev, "error = %d with packet_bytes = %d with total %d bytes%s\n",
963                                 retval, packet_bytes, bytes_read, diag);
964                         return retval;
965                 } else {
966                         if (retry_on_empty-- > 0) {
967                                 goto more;
968                         } else
969                                 return 0;
970                 }
971         }
972 more:{
973                 goto read;
974         }
975 have:if (ftdi->bulk_in_left > 0) {
976                 u8 c = ftdi->bulk_in_buffer[++ftdi->bulk_in_last];
977                 bytes_read += 1;
978                 ftdi->bulk_in_left -= 1;
979                 if (ftdi->received == 0 && c == 0xFF) {
980                         goto have;
981                 } else
982                         *b++ = c;
983                 if (++ftdi->received < ftdi->expected) {
984                         goto have;
985                 } else if (ftdi->ed_found) {
986                         int ed_number = (ftdi->response[0] >> 5) & 0x03;
987                         u16 ed_length = (ftdi->response[2] << 8) |
988                                 ftdi->response[1];
989                         struct u132_target *target = &ftdi->target[ed_number];
990                         int payload = (ed_length >> 0) & 0x07FF;
991                         char diag[30 *3 + 4];
992                         char *d = diag;
993                         int m = payload;
994                         u8 *c = 4 + ftdi->response;
995                         int s = (sizeof(diag) - 1) / 3;
996                         diag[0] = 0;
997                         while (s-- > 0 && m-- > 0) {
998                                 if (s > 0 || m == 0) {
999                                         d += sprintf(d, " %02X", *c++);
1000                                 } else
1001                                         d += sprintf(d, " ..");
1002                         }
1003                         ftdi_elan_do_callback(ftdi, target, 4 + ftdi->response,
1004                                               payload);
1005                         ftdi->received = 0;
1006                         ftdi->expected = 4;
1007                         ftdi->ed_found = 0;
1008                         b = ftdi->response;
1009                         goto have;
1010                 } else if (ftdi->expected == 8) {
1011                         u8 buscmd;
1012                         int respond_head = ftdi->respond_head++;
1013                         struct u132_respond *respond = &ftdi->respond[
1014                                 RESPOND_MASK & respond_head];
1015                         u32 data = ftdi->response[7];
1016                         data <<= 8;
1017                         data |= ftdi->response[6];
1018                         data <<= 8;
1019                         data |= ftdi->response[5];
1020                         data <<= 8;
1021                         data |= ftdi->response[4];
1022                         *respond->value = data;
1023                         *respond->result = 0;
1024                         complete(&respond->wait_completion);
1025                         ftdi->received = 0;
1026                         ftdi->expected = 4;
1027                         ftdi->ed_found = 0;
1028                         b = ftdi->response;
1029                         buscmd = (ftdi->response[0] >> 0) & 0x0F;
1030                         if (buscmd == 0x00) {
1031                         } else if (buscmd == 0x02) {
1032                         } else if (buscmd == 0x06) {
1033                         } else if (buscmd == 0x0A) {
1034                         } else
1035                                 dev_err(&ftdi->udev->dev, "Uxxx unknown(%0X) value = %08X\n",
1036                                         buscmd, data);
1037                         goto have;
1038                 } else {
1039                         if ((ftdi->response[0] & 0x80) == 0x00) {
1040                                 ftdi->expected = 8;
1041                                 goto have;
1042                         } else {
1043                                 int ed_number = (ftdi->response[0] >> 5) & 0x03;
1044                                 int ed_type = (ftdi->response[0] >> 0) & 0x03;
1045                                 u16 ed_length = (ftdi->response[2] << 8) |
1046                                         ftdi->response[1];
1047                                 struct u132_target *target = &ftdi->target[
1048                                         ed_number];
1049                                 target->halted = (ftdi->response[0] >> 3) &
1050                                         0x01;
1051                                 target->skipped = (ftdi->response[0] >> 2) &
1052                                         0x01;
1053                                 target->toggle_bits = (ftdi->response[3] >> 6)
1054                                         & 0x03;
1055                                 target->error_count = (ftdi->response[3] >> 4)
1056                                         & 0x03;
1057                                 target->condition_code = (ftdi->response[
1058                                                                   3] >> 0) & 0x0F;
1059                                 if ((ftdi->response[0] & 0x10) == 0x00) {
1060                                         b = have_ed_set_response(ftdi, target,
1061                                                                  ed_length, ed_number, ed_type,
1062                                                                  b);
1063                                         goto have;
1064                                 } else {
1065                                         b = have_ed_get_response(ftdi, target,
1066                                                                  ed_length, ed_number, ed_type,
1067                                                                  b);
1068                                         goto have;
1069                                 }
1070                         }
1071                 }
1072         } else
1073                 goto more;
1074 }
1075
1076
1077 /*
1078  * create a urb, and a buffer for it, and copy the data to the urb
1079  *
1080  */
1081 static ssize_t ftdi_elan_write(struct file *file,
1082                                const char __user *user_buffer, size_t count,
1083                                loff_t *ppos)
1084 {
1085         int retval = 0;
1086         struct urb *urb;
1087         char *buf;
1088         struct usb_ftdi *ftdi = file->private_data;
1089
1090         if (ftdi->disconnected > 0) {
1091                 return -ENODEV;
1092         }
1093         if (count == 0) {
1094                 goto exit;
1095         }
1096         urb = usb_alloc_urb(0, GFP_KERNEL);
1097         if (!urb) {
1098                 retval = -ENOMEM;
1099                 goto error_1;
1100         }
1101         buf = usb_alloc_coherent(ftdi->udev, count, GFP_KERNEL,
1102                                  &urb->transfer_dma);
1103         if (!buf) {
1104                 retval = -ENOMEM;
1105                 goto error_2;
1106         }
1107         if (copy_from_user(buf, user_buffer, count)) {
1108                 retval = -EFAULT;
1109                 goto error_3;
1110         }
1111         usb_fill_bulk_urb(urb, ftdi->udev, usb_sndbulkpipe(ftdi->udev,
1112                                                            ftdi->bulk_out_endpointAddr), buf, count,
1113                           ftdi_elan_write_bulk_callback, ftdi);
1114         urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
1115         retval = usb_submit_urb(urb, GFP_KERNEL);
1116         if (retval) {
1117                 dev_err(&ftdi->udev->dev,
1118                         "failed submitting write urb, error %d\n", retval);
1119                 goto error_3;
1120         }
1121         usb_free_urb(urb);
1122
1123 exit:
1124         return count;
1125 error_3:
1126         usb_free_coherent(ftdi->udev, count, buf, urb->transfer_dma);
1127 error_2:
1128         usb_free_urb(urb);
1129 error_1:
1130         return retval;
1131 }
1132
1133 static const struct file_operations ftdi_elan_fops = {
1134         .owner = THIS_MODULE,
1135         .llseek = no_llseek,
1136         .read = ftdi_elan_read,
1137         .write = ftdi_elan_write,
1138         .open = ftdi_elan_open,
1139         .release = ftdi_elan_release,
1140 };
1141
1142 /*
1143  * usb class driver info in order to get a minor number from the usb core,
1144  * and to have the device registered with the driver core
1145  */
1146 static struct usb_class_driver ftdi_elan_jtag_class = {
1147         .name = "ftdi-%d-jtag",
1148         .fops = &ftdi_elan_fops,
1149         .minor_base = USB_FTDI_ELAN_MINOR_BASE,
1150 };
1151
1152 /*
1153  * the following definitions are for the
1154  * ELAN FPGA state machgine processor that
1155  * lies on the other side of the FTDI chip
1156  */
1157 #define cPCIu132rd 0x0
1158 #define cPCIu132wr 0x1
1159 #define cPCIiord 0x2
1160 #define cPCIiowr 0x3
1161 #define cPCImemrd 0x6
1162 #define cPCImemwr 0x7
1163 #define cPCIcfgrd 0xA
1164 #define cPCIcfgwr 0xB
1165 #define cPCInull 0xF
1166 #define cU132cmd_status 0x0
1167 #define cU132flash 0x1
1168 #define cPIDsetup 0x0
1169 #define cPIDout 0x1
1170 #define cPIDin 0x2
1171 #define cPIDinonce 0x3
1172 #define cCCnoerror 0x0
1173 #define cCCcrc 0x1
1174 #define cCCbitstuff 0x2
1175 #define cCCtoggle 0x3
1176 #define cCCstall 0x4
1177 #define cCCnoresp 0x5
1178 #define cCCbadpid1 0x6
1179 #define cCCbadpid2 0x7
1180 #define cCCdataoverrun 0x8
1181 #define cCCdataunderrun 0x9
1182 #define cCCbuffoverrun 0xC
1183 #define cCCbuffunderrun 0xD
1184 #define cCCnotaccessed 0xF
1185 static int ftdi_elan_write_reg(struct usb_ftdi *ftdi, u32 data)
1186 {
1187 wait:if (ftdi->disconnected > 0) {
1188                 return -ENODEV;
1189         } else {
1190                 int command_size;
1191                 mutex_lock(&ftdi->u132_lock);
1192                 command_size = ftdi->command_next - ftdi->command_head;
1193                 if (command_size < COMMAND_SIZE) {
1194                         struct u132_command *command = &ftdi->command[
1195                                 COMMAND_MASK & ftdi->command_next];
1196                         command->header = 0x00 | cPCIu132wr;
1197                         command->length = 0x04;
1198                         command->address = 0x00;
1199                         command->width = 0x00;
1200                         command->follows = 4;
1201                         command->value = data;
1202                         command->buffer = &command->value;
1203                         ftdi->command_next += 1;
1204                         ftdi_elan_kick_command_queue(ftdi);
1205                         mutex_unlock(&ftdi->u132_lock);
1206                         return 0;
1207                 } else {
1208                         mutex_unlock(&ftdi->u132_lock);
1209                         msleep(100);
1210                         goto wait;
1211                 }
1212         }
1213 }
1214
1215 static int ftdi_elan_write_config(struct usb_ftdi *ftdi, int config_offset,
1216                                   u8 width, u32 data)
1217 {
1218         u8 addressofs = config_offset / 4;
1219 wait:if (ftdi->disconnected > 0) {
1220                 return -ENODEV;
1221         } else {
1222                 int command_size;
1223                 mutex_lock(&ftdi->u132_lock);
1224                 command_size = ftdi->command_next - ftdi->command_head;
1225                 if (command_size < COMMAND_SIZE) {
1226                         struct u132_command *command = &ftdi->command[
1227                                 COMMAND_MASK & ftdi->command_next];
1228                         command->header = 0x00 | (cPCIcfgwr & 0x0F);
1229                         command->length = 0x04;
1230                         command->address = addressofs;
1231                         command->width = 0x00 | (width & 0x0F);
1232                         command->follows = 4;
1233                         command->value = data;
1234                         command->buffer = &command->value;
1235                         ftdi->command_next += 1;
1236                         ftdi_elan_kick_command_queue(ftdi);
1237                         mutex_unlock(&ftdi->u132_lock);
1238                         return 0;
1239                 } else {
1240                         mutex_unlock(&ftdi->u132_lock);
1241                         msleep(100);
1242                         goto wait;
1243                 }
1244         }
1245 }
1246
1247 static int ftdi_elan_write_pcimem(struct usb_ftdi *ftdi, int mem_offset,
1248                                   u8 width, u32 data)
1249 {
1250         u8 addressofs = mem_offset / 4;
1251 wait:if (ftdi->disconnected > 0) {
1252                 return -ENODEV;
1253         } else {
1254                 int command_size;
1255                 mutex_lock(&ftdi->u132_lock);
1256                 command_size = ftdi->command_next - ftdi->command_head;
1257                 if (command_size < COMMAND_SIZE) {
1258                         struct u132_command *command = &ftdi->command[
1259                                 COMMAND_MASK & ftdi->command_next];
1260                         command->header = 0x00 | (cPCImemwr & 0x0F);
1261                         command->length = 0x04;
1262                         command->address = addressofs;
1263                         command->width = 0x00 | (width & 0x0F);
1264                         command->follows = 4;
1265                         command->value = data;
1266                         command->buffer = &command->value;
1267                         ftdi->command_next += 1;
1268                         ftdi_elan_kick_command_queue(ftdi);
1269                         mutex_unlock(&ftdi->u132_lock);
1270                         return 0;
1271                 } else {
1272                         mutex_unlock(&ftdi->u132_lock);
1273                         msleep(100);
1274                         goto wait;
1275                 }
1276         }
1277 }
1278
1279 int usb_ftdi_elan_write_pcimem(struct platform_device *pdev, int mem_offset,
1280                                u8 width, u32 data)
1281 {
1282         struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1283         return ftdi_elan_write_pcimem(ftdi, mem_offset, width, data);
1284 }
1285
1286
1287 EXPORT_SYMBOL_GPL(usb_ftdi_elan_write_pcimem);
1288 static int ftdi_elan_read_reg(struct usb_ftdi *ftdi, u32 *data)
1289 {
1290 wait:if (ftdi->disconnected > 0) {
1291                 return -ENODEV;
1292         } else {
1293                 int command_size;
1294                 int respond_size;
1295                 mutex_lock(&ftdi->u132_lock);
1296                 command_size = ftdi->command_next - ftdi->command_head;
1297                 respond_size = ftdi->respond_next - ftdi->respond_head;
1298                 if (command_size < COMMAND_SIZE && respond_size < RESPOND_SIZE)
1299                 {
1300                         struct u132_command *command = &ftdi->command[
1301                                 COMMAND_MASK & ftdi->command_next];
1302                         struct u132_respond *respond = &ftdi->respond[
1303                                 RESPOND_MASK & ftdi->respond_next];
1304                         int result = -ENODEV;
1305                         respond->result = &result;
1306                         respond->header = command->header = 0x00 | cPCIu132rd;
1307                         command->length = 0x04;
1308                         respond->address = command->address = cU132cmd_status;
1309                         command->width = 0x00;
1310                         command->follows = 0;
1311                         command->value = 0;
1312                         command->buffer = NULL;
1313                         respond->value = data;
1314                         init_completion(&respond->wait_completion);
1315                         ftdi->command_next += 1;
1316                         ftdi->respond_next += 1;
1317                         ftdi_elan_kick_command_queue(ftdi);
1318                         mutex_unlock(&ftdi->u132_lock);
1319                         wait_for_completion(&respond->wait_completion);
1320                         return result;
1321                 } else {
1322                         mutex_unlock(&ftdi->u132_lock);
1323                         msleep(100);
1324                         goto wait;
1325                 }
1326         }
1327 }
1328
1329 static int ftdi_elan_read_config(struct usb_ftdi *ftdi, int config_offset,
1330                                  u8 width, u32 *data)
1331 {
1332         u8 addressofs = config_offset / 4;
1333 wait:if (ftdi->disconnected > 0) {
1334                 return -ENODEV;
1335         } else {
1336                 int command_size;
1337                 int respond_size;
1338                 mutex_lock(&ftdi->u132_lock);
1339                 command_size = ftdi->command_next - ftdi->command_head;
1340                 respond_size = ftdi->respond_next - ftdi->respond_head;
1341                 if (command_size < COMMAND_SIZE && respond_size < RESPOND_SIZE)
1342                 {
1343                         struct u132_command *command = &ftdi->command[
1344                                 COMMAND_MASK & ftdi->command_next];
1345                         struct u132_respond *respond = &ftdi->respond[
1346                                 RESPOND_MASK & ftdi->respond_next];
1347                         int result = -ENODEV;
1348                         respond->result = &result;
1349                         respond->header = command->header = 0x00 | (cPCIcfgrd &
1350                                                                     0x0F);
1351                         command->length = 0x04;
1352                         respond->address = command->address = addressofs;
1353                         command->width = 0x00 | (width & 0x0F);
1354                         command->follows = 0;
1355                         command->value = 0;
1356                         command->buffer = NULL;
1357                         respond->value = data;
1358                         init_completion(&respond->wait_completion);
1359                         ftdi->command_next += 1;
1360                         ftdi->respond_next += 1;
1361                         ftdi_elan_kick_command_queue(ftdi);
1362                         mutex_unlock(&ftdi->u132_lock);
1363                         wait_for_completion(&respond->wait_completion);
1364                         return result;
1365                 } else {
1366                         mutex_unlock(&ftdi->u132_lock);
1367                         msleep(100);
1368                         goto wait;
1369                 }
1370         }
1371 }
1372
1373 static int ftdi_elan_read_pcimem(struct usb_ftdi *ftdi, int mem_offset,
1374                                  u8 width, u32 *data)
1375 {
1376         u8 addressofs = mem_offset / 4;
1377 wait:if (ftdi->disconnected > 0) {
1378                 return -ENODEV;
1379         } else {
1380                 int command_size;
1381                 int respond_size;
1382                 mutex_lock(&ftdi->u132_lock);
1383                 command_size = ftdi->command_next - ftdi->command_head;
1384                 respond_size = ftdi->respond_next - ftdi->respond_head;
1385                 if (command_size < COMMAND_SIZE && respond_size < RESPOND_SIZE)
1386                 {
1387                         struct u132_command *command = &ftdi->command[
1388                                 COMMAND_MASK & ftdi->command_next];
1389                         struct u132_respond *respond = &ftdi->respond[
1390                                 RESPOND_MASK & ftdi->respond_next];
1391                         int result = -ENODEV;
1392                         respond->result = &result;
1393                         respond->header = command->header = 0x00 | (cPCImemrd &
1394                                                                     0x0F);
1395                         command->length = 0x04;
1396                         respond->address = command->address = addressofs;
1397                         command->width = 0x00 | (width & 0x0F);
1398                         command->follows = 0;
1399                         command->value = 0;
1400                         command->buffer = NULL;
1401                         respond->value = data;
1402                         init_completion(&respond->wait_completion);
1403                         ftdi->command_next += 1;
1404                         ftdi->respond_next += 1;
1405                         ftdi_elan_kick_command_queue(ftdi);
1406                         mutex_unlock(&ftdi->u132_lock);
1407                         wait_for_completion(&respond->wait_completion);
1408                         return result;
1409                 } else {
1410                         mutex_unlock(&ftdi->u132_lock);
1411                         msleep(100);
1412                         goto wait;
1413                 }
1414         }
1415 }
1416
1417 int usb_ftdi_elan_read_pcimem(struct platform_device *pdev, int mem_offset,
1418                               u8 width, u32 *data)
1419 {
1420         struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1421         if (ftdi->initialized == 0) {
1422                 return -ENODEV;
1423         } else
1424                 return ftdi_elan_read_pcimem(ftdi, mem_offset, width, data);
1425 }
1426
1427
1428 EXPORT_SYMBOL_GPL(usb_ftdi_elan_read_pcimem);
1429 static int ftdi_elan_edset_setup(struct usb_ftdi *ftdi, u8 ed_number,
1430                                  void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1431                                  void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1432                                                    int toggle_bits, int error_count, int condition_code, int repeat_number,
1433                                                    int halted, int skipped, int actual, int non_null))
1434 {
1435         u8 ed = ed_number - 1;
1436 wait:if (ftdi->disconnected > 0) {
1437                 return -ENODEV;
1438         } else if (ftdi->initialized == 0) {
1439                 return -ENODEV;
1440         } else {
1441                 int command_size;
1442                 mutex_lock(&ftdi->u132_lock);
1443                 command_size = ftdi->command_next - ftdi->command_head;
1444                 if (command_size < COMMAND_SIZE) {
1445                         struct u132_target *target = &ftdi->target[ed];
1446                         struct u132_command *command = &ftdi->command[
1447                                 COMMAND_MASK & ftdi->command_next];
1448                         command->header = 0x80 | (ed << 5);
1449                         command->length = 0x8007;
1450                         command->address = (toggle_bits << 6) | (ep_number << 2)
1451                                 | (address << 0);
1452                         command->width = usb_maxpacket(urb->dev, urb->pipe,
1453                                                        usb_pipeout(urb->pipe));
1454                         command->follows = 8;
1455                         command->value = 0;
1456                         command->buffer = urb->setup_packet;
1457                         target->callback = callback;
1458                         target->endp = endp;
1459                         target->urb = urb;
1460                         target->active = 1;
1461                         ftdi->command_next += 1;
1462                         ftdi_elan_kick_command_queue(ftdi);
1463                         mutex_unlock(&ftdi->u132_lock);
1464                         return 0;
1465                 } else {
1466                         mutex_unlock(&ftdi->u132_lock);
1467                         msleep(100);
1468                         goto wait;
1469                 }
1470         }
1471 }
1472
1473 int usb_ftdi_elan_edset_setup(struct platform_device *pdev, u8 ed_number,
1474                               void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1475                               void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1476                                                 int toggle_bits, int error_count, int condition_code, int repeat_number,
1477                                                 int halted, int skipped, int actual, int non_null))
1478 {
1479         struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1480         return ftdi_elan_edset_setup(ftdi, ed_number, endp, urb, address,
1481                                      ep_number, toggle_bits, callback);
1482 }
1483
1484
1485 EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_setup);
1486 static int ftdi_elan_edset_input(struct usb_ftdi *ftdi, u8 ed_number,
1487                                  void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1488                                  void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1489                                                    int toggle_bits, int error_count, int condition_code, int repeat_number,
1490                                                    int halted, int skipped, int actual, int non_null))
1491 {
1492         u8 ed = ed_number - 1;
1493 wait:if (ftdi->disconnected > 0) {
1494                 return -ENODEV;
1495         } else if (ftdi->initialized == 0) {
1496                 return -ENODEV;
1497         } else {
1498                 int command_size;
1499                 mutex_lock(&ftdi->u132_lock);
1500                 command_size = ftdi->command_next - ftdi->command_head;
1501                 if (command_size < COMMAND_SIZE) {
1502                         struct u132_target *target = &ftdi->target[ed];
1503                         struct u132_command *command = &ftdi->command[
1504                                 COMMAND_MASK & ftdi->command_next];
1505                         u32 remaining_length = urb->transfer_buffer_length -
1506                                 urb->actual_length;
1507                         command->header = 0x82 | (ed << 5);
1508                         if (remaining_length == 0) {
1509                                 command->length = 0x0000;
1510                         } else if (remaining_length > 1024) {
1511                                 command->length = 0x8000 | 1023;
1512                         } else
1513                                 command->length = 0x8000 | (remaining_length -
1514                                                             1);
1515                         command->address = (toggle_bits << 6) | (ep_number << 2)
1516                                 | (address << 0);
1517                         command->width = usb_maxpacket(urb->dev, urb->pipe,
1518                                                        usb_pipeout(urb->pipe));
1519                         command->follows = 0;
1520                         command->value = 0;
1521                         command->buffer = NULL;
1522                         target->callback = callback;
1523                         target->endp = endp;
1524                         target->urb = urb;
1525                         target->active = 1;
1526                         ftdi->command_next += 1;
1527                         ftdi_elan_kick_command_queue(ftdi);
1528                         mutex_unlock(&ftdi->u132_lock);
1529                         return 0;
1530                 } else {
1531                         mutex_unlock(&ftdi->u132_lock);
1532                         msleep(100);
1533                         goto wait;
1534                 }
1535         }
1536 }
1537
1538 int usb_ftdi_elan_edset_input(struct platform_device *pdev, u8 ed_number,
1539                               void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1540                               void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1541                                                 int toggle_bits, int error_count, int condition_code, int repeat_number,
1542                                                 int halted, int skipped, int actual, int non_null))
1543 {
1544         struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1545         return ftdi_elan_edset_input(ftdi, ed_number, endp, urb, address,
1546                                      ep_number, toggle_bits, callback);
1547 }
1548
1549
1550 EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_input);
1551 static int ftdi_elan_edset_empty(struct usb_ftdi *ftdi, u8 ed_number,
1552                                  void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1553                                  void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1554                                                    int toggle_bits, int error_count, int condition_code, int repeat_number,
1555                                                    int halted, int skipped, int actual, int non_null))
1556 {
1557         u8 ed = ed_number - 1;
1558 wait:if (ftdi->disconnected > 0) {
1559                 return -ENODEV;
1560         } else if (ftdi->initialized == 0) {
1561                 return -ENODEV;
1562         } else {
1563                 int command_size;
1564                 mutex_lock(&ftdi->u132_lock);
1565                 command_size = ftdi->command_next - ftdi->command_head;
1566                 if (command_size < COMMAND_SIZE) {
1567                         struct u132_target *target = &ftdi->target[ed];
1568                         struct u132_command *command = &ftdi->command[
1569                                 COMMAND_MASK & ftdi->command_next];
1570                         command->header = 0x81 | (ed << 5);
1571                         command->length = 0x0000;
1572                         command->address = (toggle_bits << 6) | (ep_number << 2)
1573                                 | (address << 0);
1574                         command->width = usb_maxpacket(urb->dev, urb->pipe,
1575                                                        usb_pipeout(urb->pipe));
1576                         command->follows = 0;
1577                         command->value = 0;
1578                         command->buffer = NULL;
1579                         target->callback = callback;
1580                         target->endp = endp;
1581                         target->urb = urb;
1582                         target->active = 1;
1583                         ftdi->command_next += 1;
1584                         ftdi_elan_kick_command_queue(ftdi);
1585                         mutex_unlock(&ftdi->u132_lock);
1586                         return 0;
1587                 } else {
1588                         mutex_unlock(&ftdi->u132_lock);
1589                         msleep(100);
1590                         goto wait;
1591                 }
1592         }
1593 }
1594
1595 int usb_ftdi_elan_edset_empty(struct platform_device *pdev, u8 ed_number,
1596                               void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1597                               void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1598                                                 int toggle_bits, int error_count, int condition_code, int repeat_number,
1599                                                 int halted, int skipped, int actual, int non_null))
1600 {
1601         struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1602         return ftdi_elan_edset_empty(ftdi, ed_number, endp, urb, address,
1603                                      ep_number, toggle_bits, callback);
1604 }
1605
1606
1607 EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_empty);
1608 static int ftdi_elan_edset_output(struct usb_ftdi *ftdi, u8 ed_number,
1609                                   void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1610                                   void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1611                                                     int toggle_bits, int error_count, int condition_code, int repeat_number,
1612                                                     int halted, int skipped, int actual, int non_null))
1613 {
1614         u8 ed = ed_number - 1;
1615 wait:if (ftdi->disconnected > 0) {
1616                 return -ENODEV;
1617         } else if (ftdi->initialized == 0) {
1618                 return -ENODEV;
1619         } else {
1620                 int command_size;
1621                 mutex_lock(&ftdi->u132_lock);
1622                 command_size = ftdi->command_next - ftdi->command_head;
1623                 if (command_size < COMMAND_SIZE) {
1624                         u8 *b;
1625                         u16 urb_size;
1626                         int i = 0;
1627                         char data[30 *3 + 4];
1628                         char *d = data;
1629                         int m = (sizeof(data) - 1) / 3 - 1;
1630                         int l = 0;
1631                         struct u132_target *target = &ftdi->target[ed];
1632                         struct u132_command *command = &ftdi->command[
1633                                 COMMAND_MASK & ftdi->command_next];
1634                         command->header = 0x81 | (ed << 5);
1635                         command->address = (toggle_bits << 6) | (ep_number << 2)
1636                                 | (address << 0);
1637                         command->width = usb_maxpacket(urb->dev, urb->pipe,
1638                                                        usb_pipeout(urb->pipe));
1639                         command->follows = min_t(u32, 1024,
1640                                                  urb->transfer_buffer_length -
1641                                                  urb->actual_length);
1642                         command->value = 0;
1643                         command->buffer = urb->transfer_buffer +
1644                                 urb->actual_length;
1645                         command->length = 0x8000 | (command->follows - 1);
1646                         b = command->buffer;
1647                         urb_size = command->follows;
1648                         data[0] = 0;
1649                         while (urb_size-- > 0) {
1650                                 if (i > m) {
1651                                 } else if (i++ < m) {
1652                                         int w = sprintf(d, " %02X", *b++);
1653                                         d += w;
1654                                         l += w;
1655                                 } else
1656                                         d += sprintf(d, " ..");
1657                         }
1658                         target->callback = callback;
1659                         target->endp = endp;
1660                         target->urb = urb;
1661                         target->active = 1;
1662                         ftdi->command_next += 1;
1663                         ftdi_elan_kick_command_queue(ftdi);
1664                         mutex_unlock(&ftdi->u132_lock);
1665                         return 0;
1666                 } else {
1667                         mutex_unlock(&ftdi->u132_lock);
1668                         msleep(100);
1669                         goto wait;
1670                 }
1671         }
1672 }
1673
1674 int usb_ftdi_elan_edset_output(struct platform_device *pdev, u8 ed_number,
1675                                void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1676                                void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1677                                                  int toggle_bits, int error_count, int condition_code, int repeat_number,
1678                                                  int halted, int skipped, int actual, int non_null))
1679 {
1680         struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1681         return ftdi_elan_edset_output(ftdi, ed_number, endp, urb, address,
1682                                       ep_number, toggle_bits, callback);
1683 }
1684
1685
1686 EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_output);
1687 static int ftdi_elan_edset_single(struct usb_ftdi *ftdi, u8 ed_number,
1688                                   void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1689                                   void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1690                                                     int toggle_bits, int error_count, int condition_code, int repeat_number,
1691                                                     int halted, int skipped, int actual, int non_null))
1692 {
1693         u8 ed = ed_number - 1;
1694 wait:if (ftdi->disconnected > 0) {
1695                 return -ENODEV;
1696         } else if (ftdi->initialized == 0) {
1697                 return -ENODEV;
1698         } else {
1699                 int command_size;
1700                 mutex_lock(&ftdi->u132_lock);
1701                 command_size = ftdi->command_next - ftdi->command_head;
1702                 if (command_size < COMMAND_SIZE) {
1703                         u32 remaining_length = urb->transfer_buffer_length -
1704                                 urb->actual_length;
1705                         struct u132_target *target = &ftdi->target[ed];
1706                         struct u132_command *command = &ftdi->command[
1707                                 COMMAND_MASK & ftdi->command_next];
1708                         command->header = 0x83 | (ed << 5);
1709                         if (remaining_length == 0) {
1710                                 command->length = 0x0000;
1711                         } else if (remaining_length > 1024) {
1712                                 command->length = 0x8000 | 1023;
1713                         } else
1714                                 command->length = 0x8000 | (remaining_length -
1715                                                             1);
1716                         command->address = (toggle_bits << 6) | (ep_number << 2)
1717                                 | (address << 0);
1718                         command->width = usb_maxpacket(urb->dev, urb->pipe,
1719                                                        usb_pipeout(urb->pipe));
1720                         command->follows = 0;
1721                         command->value = 0;
1722                         command->buffer = NULL;
1723                         target->callback = callback;
1724                         target->endp = endp;
1725                         target->urb = urb;
1726                         target->active = 1;
1727                         ftdi->command_next += 1;
1728                         ftdi_elan_kick_command_queue(ftdi);
1729                         mutex_unlock(&ftdi->u132_lock);
1730                         return 0;
1731                 } else {
1732                         mutex_unlock(&ftdi->u132_lock);
1733                         msleep(100);
1734                         goto wait;
1735                 }
1736         }
1737 }
1738
1739 int usb_ftdi_elan_edset_single(struct platform_device *pdev, u8 ed_number,
1740                                void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1741                                void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1742                                                  int toggle_bits, int error_count, int condition_code, int repeat_number,
1743                                                  int halted, int skipped, int actual, int non_null))
1744 {
1745         struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1746         return ftdi_elan_edset_single(ftdi, ed_number, endp, urb, address,
1747                                       ep_number, toggle_bits, callback);
1748 }
1749
1750
1751 EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_single);
1752 static int ftdi_elan_edset_flush(struct usb_ftdi *ftdi, u8 ed_number,
1753                                  void *endp)
1754 {
1755         u8 ed = ed_number - 1;
1756         if (ftdi->disconnected > 0) {
1757                 return -ENODEV;
1758         } else if (ftdi->initialized == 0) {
1759                 return -ENODEV;
1760         } else {
1761                 struct u132_target *target = &ftdi->target[ed];
1762                 mutex_lock(&ftdi->u132_lock);
1763                 if (target->abandoning > 0) {
1764                         mutex_unlock(&ftdi->u132_lock);
1765                         return 0;
1766                 } else {
1767                         target->abandoning = 1;
1768                 wait_1:if (target->active == 1) {
1769                                 int command_size = ftdi->command_next -
1770                                         ftdi->command_head;
1771                                 if (command_size < COMMAND_SIZE) {
1772                                         struct u132_command *command =
1773                                                 &ftdi->command[COMMAND_MASK &
1774                                                                ftdi->command_next];
1775                                         command->header = 0x80 | (ed << 5) |
1776                                                 0x4;
1777                                         command->length = 0x00;
1778                                         command->address = 0x00;
1779                                         command->width = 0x00;
1780                                         command->follows = 0;
1781                                         command->value = 0;
1782                                         command->buffer = &command->value;
1783                                         ftdi->command_next += 1;
1784                                         ftdi_elan_kick_command_queue(ftdi);
1785                                 } else {
1786                                         mutex_unlock(&ftdi->u132_lock);
1787                                         msleep(100);
1788                                         mutex_lock(&ftdi->u132_lock);
1789                                         goto wait_1;
1790                                 }
1791                         }
1792                         mutex_unlock(&ftdi->u132_lock);
1793                         return 0;
1794                 }
1795         }
1796 }
1797
1798 int usb_ftdi_elan_edset_flush(struct platform_device *pdev, u8 ed_number,
1799                               void *endp)
1800 {
1801         struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1802         return ftdi_elan_edset_flush(ftdi, ed_number, endp);
1803 }
1804
1805
1806 EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_flush);
1807 static int ftdi_elan_flush_input_fifo(struct usb_ftdi *ftdi)
1808 {
1809         int retry_on_empty = 10;
1810         int retry_on_timeout = 5;
1811         int retry_on_status = 20;
1812 more:{
1813                 int packet_bytes = 0;
1814                 int retval = usb_bulk_msg(ftdi->udev,
1815                                           usb_rcvbulkpipe(ftdi->udev, ftdi->bulk_in_endpointAddr),
1816                                           ftdi->bulk_in_buffer, ftdi->bulk_in_size,
1817                                           &packet_bytes, 100);
1818                 if (packet_bytes > 2) {
1819                         char diag[30 *3 + 4];
1820                         char *d = diag;
1821                         int m = (sizeof(diag) - 1) / 3 - 1;
1822                         char *b = ftdi->bulk_in_buffer;
1823                         int bytes_read = 0;
1824                         diag[0] = 0;
1825                         while (packet_bytes-- > 0) {
1826                                 char c = *b++;
1827                                 if (bytes_read < m) {
1828                                         d += sprintf(d, " %02X",
1829                                                      0x000000FF & c);
1830                                 } else if (bytes_read > m) {
1831                                 } else
1832                                         d += sprintf(d, " ..");
1833                                 bytes_read += 1;
1834                                 continue;
1835                         }
1836                         goto more;
1837                 } else if (packet_bytes > 1) {
1838                         char s1 = ftdi->bulk_in_buffer[0];
1839                         char s2 = ftdi->bulk_in_buffer[1];
1840                         if (s1 == 0x31 && s2 == 0x60) {
1841                                 return 0;
1842                         } else if (retry_on_status-- > 0) {
1843                                 goto more;
1844                         } else {
1845                                 dev_err(&ftdi->udev->dev, "STATUS ERROR retry limit reached\n");
1846                                 return -EFAULT;
1847                         }
1848                 } else if (packet_bytes > 0) {
1849                         char b1 = ftdi->bulk_in_buffer[0];
1850                         dev_err(&ftdi->udev->dev, "only one byte flushed from FTDI = %02X\n",
1851                                 b1);
1852                         if (retry_on_status-- > 0) {
1853                                 goto more;
1854                         } else {
1855                                 dev_err(&ftdi->udev->dev, "STATUS ERROR retry limit reached\n");
1856                                 return -EFAULT;
1857                         }
1858                 } else if (retval == -ETIMEDOUT) {
1859                         if (retry_on_timeout-- > 0) {
1860                                 goto more;
1861                         } else {
1862                                 dev_err(&ftdi->udev->dev, "TIMED OUT retry limit reached\n");
1863                                 return -ENOMEM;
1864                         }
1865                 } else if (retval == 0) {
1866                         if (retry_on_empty-- > 0) {
1867                                 goto more;
1868                         } else {
1869                                 dev_err(&ftdi->udev->dev, "empty packet retry limit reached\n");
1870                                 return -ENOMEM;
1871                         }
1872                 } else {
1873                         dev_err(&ftdi->udev->dev, "error = %d\n", retval);
1874                         return retval;
1875                 }
1876         }
1877         return -1;
1878 }
1879
1880
1881 /*
1882  * send the long flush sequence
1883  *
1884  */
1885 static int ftdi_elan_synchronize_flush(struct usb_ftdi *ftdi)
1886 {
1887         int retval;
1888         struct urb *urb;
1889         char *buf;
1890         int I = 257;
1891         int i = 0;
1892         urb = usb_alloc_urb(0, GFP_KERNEL);
1893         if (!urb)
1894                 return -ENOMEM;
1895         buf = usb_alloc_coherent(ftdi->udev, I, GFP_KERNEL, &urb->transfer_dma);
1896         if (!buf) {
1897                 dev_err(&ftdi->udev->dev, "could not get a buffer for flush sequence\n");
1898                 usb_free_urb(urb);
1899                 return -ENOMEM;
1900         }
1901         while (I-- > 0)
1902                 buf[i++] = 0x55;
1903         usb_fill_bulk_urb(urb, ftdi->udev, usb_sndbulkpipe(ftdi->udev,
1904                                                            ftdi->bulk_out_endpointAddr), buf, i,
1905                           ftdi_elan_write_bulk_callback, ftdi);
1906         urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
1907         retval = usb_submit_urb(urb, GFP_KERNEL);
1908         if (retval) {
1909                 dev_err(&ftdi->udev->dev, "failed to submit urb containing the flush sequence\n");
1910                 usb_free_coherent(ftdi->udev, i, buf, urb->transfer_dma);
1911                 usb_free_urb(urb);
1912                 return -ENOMEM;
1913         }
1914         usb_free_urb(urb);
1915         return 0;
1916 }
1917
1918
1919 /*
1920  * send the reset sequence
1921  *
1922  */
1923 static int ftdi_elan_synchronize_reset(struct usb_ftdi *ftdi)
1924 {
1925         int retval;
1926         struct urb *urb;
1927         char *buf;
1928         int I = 4;
1929         int i = 0;
1930         urb = usb_alloc_urb(0, GFP_KERNEL);
1931         if (!urb)
1932                 return -ENOMEM;
1933         buf = usb_alloc_coherent(ftdi->udev, I, GFP_KERNEL, &urb->transfer_dma);
1934         if (!buf) {
1935                 dev_err(&ftdi->udev->dev, "could not get a buffer for the reset sequence\n");
1936                 usb_free_urb(urb);
1937                 return -ENOMEM;
1938         }
1939         buf[i++] = 0x55;
1940         buf[i++] = 0xAA;
1941         buf[i++] = 0x5A;
1942         buf[i++] = 0xA5;
1943         usb_fill_bulk_urb(urb, ftdi->udev, usb_sndbulkpipe(ftdi->udev,
1944                                                            ftdi->bulk_out_endpointAddr), buf, i,
1945                           ftdi_elan_write_bulk_callback, ftdi);
1946         urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
1947         retval = usb_submit_urb(urb, GFP_KERNEL);
1948         if (retval) {
1949                 dev_err(&ftdi->udev->dev, "failed to submit urb containing the reset sequence\n");
1950                 usb_free_coherent(ftdi->udev, i, buf, urb->transfer_dma);
1951                 usb_free_urb(urb);
1952                 return -ENOMEM;
1953         }
1954         usb_free_urb(urb);
1955         return 0;
1956 }
1957
1958 static int ftdi_elan_synchronize(struct usb_ftdi *ftdi)
1959 {
1960         int retval;
1961         int long_stop = 10;
1962         int retry_on_timeout = 5;
1963         int retry_on_empty = 10;
1964         int err_count = 0;
1965         retval = ftdi_elan_flush_input_fifo(ftdi);
1966         if (retval)
1967                 return retval;
1968         ftdi->bulk_in_left = 0;
1969         ftdi->bulk_in_last = -1;
1970         while (long_stop-- > 0) {
1971                 int read_stop;
1972                 int read_stuck;
1973                 retval = ftdi_elan_synchronize_flush(ftdi);
1974                 if (retval)
1975                         return retval;
1976                 retval = ftdi_elan_flush_input_fifo(ftdi);
1977                 if (retval)
1978                         return retval;
1979         reset:retval = ftdi_elan_synchronize_reset(ftdi);
1980                 if (retval)
1981                         return retval;
1982                 read_stop = 100;
1983                 read_stuck = 10;
1984         read:{
1985                         int packet_bytes = 0;
1986                         retval = usb_bulk_msg(ftdi->udev,
1987                                               usb_rcvbulkpipe(ftdi->udev,
1988                                                               ftdi->bulk_in_endpointAddr),
1989                                               ftdi->bulk_in_buffer, ftdi->bulk_in_size,
1990                                               &packet_bytes, 500);
1991                         if (packet_bytes > 2) {
1992                                 char diag[30 *3 + 4];
1993                                 char *d = diag;
1994                                 int m = (sizeof(diag) - 1) / 3 - 1;
1995                                 char *b = ftdi->bulk_in_buffer;
1996                                 int bytes_read = 0;
1997                                 unsigned char c = 0;
1998                                 diag[0] = 0;
1999                                 while (packet_bytes-- > 0) {
2000                                         c = *b++;
2001                                         if (bytes_read < m) {
2002                                                 d += sprintf(d, " %02X", c);
2003                                         } else if (bytes_read > m) {
2004                                         } else
2005                                                 d += sprintf(d, " ..");
2006                                         bytes_read += 1;
2007                                         continue;
2008                                 }
2009                                 if (c == 0x7E) {
2010                                         return 0;
2011                                 } else {
2012                                         if (c == 0x55) {
2013                                                 goto read;
2014                                         } else if (read_stop-- > 0) {
2015                                                 goto read;
2016                                         } else {
2017                                                 dev_err(&ftdi->udev->dev, "retry limit reached\n");
2018                                                 continue;
2019                                         }
2020                                 }
2021                         } else if (packet_bytes > 1) {
2022                                 unsigned char s1 = ftdi->bulk_in_buffer[0];
2023                                 unsigned char s2 = ftdi->bulk_in_buffer[1];
2024                                 if (s1 == 0x31 && s2 == 0x00) {
2025                                         if (read_stuck-- > 0) {
2026                                                 goto read;
2027                                         } else
2028                                                 goto reset;
2029                                 } else {
2030                                         if (read_stop-- > 0) {
2031                                                 goto read;
2032                                         } else {
2033                                                 dev_err(&ftdi->udev->dev, "retry limit reached\n");
2034                                                 continue;
2035                                         }
2036                                 }
2037                         } else if (packet_bytes > 0) {
2038                                 if (read_stop-- > 0) {
2039                                         goto read;
2040                                 } else {
2041                                         dev_err(&ftdi->udev->dev, "retry limit reached\n");
2042                                         continue;
2043                                 }
2044                         } else if (retval == -ETIMEDOUT) {
2045                                 if (retry_on_timeout-- > 0) {
2046                                         goto read;
2047                                 } else {
2048                                         dev_err(&ftdi->udev->dev, "TIMED OUT retry limit reached\n");
2049                                         continue;
2050                                 }
2051                         } else if (retval == 0) {
2052                                 if (retry_on_empty-- > 0) {
2053                                         goto read;
2054                                 } else {
2055                                         dev_err(&ftdi->udev->dev, "empty packet retry limit reached\n");
2056                                         continue;
2057                                 }
2058                         } else {
2059                                 err_count += 1;
2060                                 dev_err(&ftdi->udev->dev, "error = %d\n",
2061                                         retval);
2062                                 if (read_stop-- > 0) {
2063                                         goto read;
2064                                 } else {
2065                                         dev_err(&ftdi->udev->dev, "retry limit reached\n");
2066                                         continue;
2067                                 }
2068                         }
2069                 }
2070         }
2071         dev_err(&ftdi->udev->dev, "failed to synchronize\n");
2072         return -EFAULT;
2073 }
2074
2075 static int ftdi_elan_stuck_waiting(struct usb_ftdi *ftdi)
2076 {
2077         int retry_on_empty = 10;
2078         int retry_on_timeout = 5;
2079         int retry_on_status = 50;
2080 more:{
2081                 int packet_bytes = 0;
2082                 int retval = usb_bulk_msg(ftdi->udev,
2083                                           usb_rcvbulkpipe(ftdi->udev, ftdi->bulk_in_endpointAddr),
2084                                           ftdi->bulk_in_buffer, ftdi->bulk_in_size,
2085                                           &packet_bytes, 1000);
2086                 if (packet_bytes > 2) {
2087                         char diag[30 *3 + 4];
2088                         char *d = diag;
2089                         int m = (sizeof(diag) - 1) / 3 - 1;
2090                         char *b = ftdi->bulk_in_buffer;
2091                         int bytes_read = 0;
2092                         diag[0] = 0;
2093                         while (packet_bytes-- > 0) {
2094                                 char c = *b++;
2095                                 if (bytes_read < m) {
2096                                         d += sprintf(d, " %02X",
2097                                                      0x000000FF & c);
2098                                 } else if (bytes_read > m) {
2099                                 } else
2100                                         d += sprintf(d, " ..");
2101                                 bytes_read += 1;
2102                         }
2103                         goto more;
2104                 } else if (packet_bytes > 1) {
2105                         char s1 = ftdi->bulk_in_buffer[0];
2106                         char s2 = ftdi->bulk_in_buffer[1];
2107                         if (s1 == 0x31 && s2 == 0x60) {
2108                                 return 0;
2109                         } else if (retry_on_status-- > 0) {
2110                                 msleep(5);
2111                                 goto more;
2112                         } else
2113                                 return -EFAULT;
2114                 } else if (packet_bytes > 0) {
2115                         char b1 = ftdi->bulk_in_buffer[0];
2116                         dev_err(&ftdi->udev->dev, "only one byte flushed from FTDI = %02X\n", b1);
2117                         if (retry_on_status-- > 0) {
2118                                 msleep(5);
2119                                 goto more;
2120                         } else {
2121                                 dev_err(&ftdi->udev->dev, "STATUS ERROR retry limit reached\n");
2122                                 return -EFAULT;
2123                         }
2124                 } else if (retval == -ETIMEDOUT) {
2125                         if (retry_on_timeout-- > 0) {
2126                                 goto more;
2127                         } else {
2128                                 dev_err(&ftdi->udev->dev, "TIMED OUT retry limit reached\n");
2129                                 return -ENOMEM;
2130                         }
2131                 } else if (retval == 0) {
2132                         if (retry_on_empty-- > 0) {
2133                                 goto more;
2134                         } else {
2135                                 dev_err(&ftdi->udev->dev, "empty packet retry limit reached\n");
2136                                 return -ENOMEM;
2137                         }
2138                 } else {
2139                         dev_err(&ftdi->udev->dev, "error = %d\n", retval);
2140                         return -ENOMEM;
2141                 }
2142         }
2143         return -1;
2144 }
2145
2146 static int ftdi_elan_checkingPCI(struct usb_ftdi *ftdi)
2147 {
2148         int UxxxStatus = ftdi_elan_read_reg(ftdi, &ftdi->controlreg);
2149         if (UxxxStatus)
2150                 return UxxxStatus;
2151         if (ftdi->controlreg & 0x00400000) {
2152                 if (ftdi->card_ejected) {
2153                 } else {
2154                         ftdi->card_ejected = 1;
2155                         dev_err(&ftdi->udev->dev, "CARD EJECTED - controlreg = %08X\n",
2156                                 ftdi->controlreg);
2157                 }
2158                 return -ENODEV;
2159         } else {
2160                 u8 fn = ftdi->function - 1;
2161                 int activePCIfn = fn << 8;
2162                 u32 pcidata;
2163                 u32 pciVID;
2164                 u32 pciPID;
2165                 int reg = 0;
2166                 UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2167                                                    &pcidata);
2168                 if (UxxxStatus)
2169                         return UxxxStatus;
2170                 pciVID = pcidata & 0xFFFF;
2171                 pciPID = (pcidata >> 16) & 0xFFFF;
2172                 if (pciVID == ftdi->platform_data.vendor && pciPID ==
2173                     ftdi->platform_data.device) {
2174                         return 0;
2175                 } else {
2176                         dev_err(&ftdi->udev->dev, "vendor=%04X pciVID=%04X device=%04X pciPID=%04X\n",
2177                                 ftdi->platform_data.vendor, pciVID,
2178                                 ftdi->platform_data.device, pciPID);
2179                         return -ENODEV;
2180                 }
2181         }
2182 }
2183
2184
2185 #define ftdi_read_pcimem(ftdi, member, data) ftdi_elan_read_pcimem(ftdi, \
2186                                                                    offsetof(struct ohci_regs, member), 0, data);
2187 #define ftdi_write_pcimem(ftdi, member, data) ftdi_elan_write_pcimem(ftdi, \
2188                                                                      offsetof(struct ohci_regs, member), 0, data);
2189
2190 #define OHCI_CONTROL_INIT OHCI_CTRL_CBSR
2191 #define OHCI_INTR_INIT (OHCI_INTR_MIE | OHCI_INTR_UE | OHCI_INTR_RD |   \
2192                         OHCI_INTR_WDH)
2193 static int ftdi_elan_check_controller(struct usb_ftdi *ftdi, int quirk)
2194 {
2195         int devices = 0;
2196         int retval;
2197         u32 hc_control;
2198         int num_ports;
2199         u32 control;
2200         u32 rh_a = -1;
2201         u32 status;
2202         u32 fminterval;
2203         u32 hc_fminterval;
2204         u32 periodicstart;
2205         u32 cmdstatus;
2206         u32 roothub_a;
2207         int mask = OHCI_INTR_INIT;
2208         int sleep_time = 0;
2209         int reset_timeout = 30;        /* ... allow extra time */
2210         int temp;
2211         retval = ftdi_write_pcimem(ftdi, intrdisable, OHCI_INTR_MIE);
2212         if (retval)
2213                 return retval;
2214         retval = ftdi_read_pcimem(ftdi, control, &control);
2215         if (retval)
2216                 return retval;
2217         retval = ftdi_read_pcimem(ftdi, roothub.a, &rh_a);
2218         if (retval)
2219                 return retval;
2220         num_ports = rh_a & RH_A_NDP;
2221         retval = ftdi_read_pcimem(ftdi, fminterval, &hc_fminterval);
2222         if (retval)
2223                 return retval;
2224         hc_fminterval &= 0x3fff;
2225         if (hc_fminterval != FI) {
2226         }
2227         hc_fminterval |= FSMP(hc_fminterval) << 16;
2228         retval = ftdi_read_pcimem(ftdi, control, &hc_control);
2229         if (retval)
2230                 return retval;
2231         switch (hc_control & OHCI_CTRL_HCFS) {
2232         case OHCI_USB_OPER:
2233                 sleep_time = 0;
2234                 break;
2235         case OHCI_USB_SUSPEND:
2236         case OHCI_USB_RESUME:
2237                 hc_control &= OHCI_CTRL_RWC;
2238                 hc_control |= OHCI_USB_RESUME;
2239                 sleep_time = 10;
2240                 break;
2241         default:
2242                 hc_control &= OHCI_CTRL_RWC;
2243                 hc_control |= OHCI_USB_RESET;
2244                 sleep_time = 50;
2245                 break;
2246         }
2247         retval = ftdi_write_pcimem(ftdi, control, hc_control);
2248         if (retval)
2249                 return retval;
2250         retval = ftdi_read_pcimem(ftdi, control, &control);
2251         if (retval)
2252                 return retval;
2253         msleep(sleep_time);
2254         retval = ftdi_read_pcimem(ftdi, roothub.a, &roothub_a);
2255         if (retval)
2256                 return retval;
2257         if (!(roothub_a & RH_A_NPS)) {        /* power down each port */
2258                 for (temp = 0; temp < num_ports; temp++) {
2259                         retval = ftdi_write_pcimem(ftdi,
2260                                                    roothub.portstatus[temp], RH_PS_LSDA);
2261                         if (retval)
2262                                 return retval;
2263                 }
2264         }
2265         retval = ftdi_read_pcimem(ftdi, control, &control);
2266         if (retval)
2267                 return retval;
2268 retry:retval = ftdi_read_pcimem(ftdi, cmdstatus, &status);
2269         if (retval)
2270                 return retval;
2271         retval = ftdi_write_pcimem(ftdi, cmdstatus, OHCI_HCR);
2272         if (retval)
2273                 return retval;
2274 extra:{
2275                 retval = ftdi_read_pcimem(ftdi, cmdstatus, &status);
2276                 if (retval)
2277                         return retval;
2278                 if (0 != (status & OHCI_HCR)) {
2279                         if (--reset_timeout == 0) {
2280                                 dev_err(&ftdi->udev->dev, "USB HC reset timed out!\n");
2281                                 return -ENODEV;
2282                         } else {
2283                                 msleep(5);
2284                                 goto extra;
2285                         }
2286                 }
2287         }
2288         if (quirk & OHCI_QUIRK_INITRESET) {
2289                 retval = ftdi_write_pcimem(ftdi, control, hc_control);
2290                 if (retval)
2291                         return retval;
2292                 retval = ftdi_read_pcimem(ftdi, control, &control);
2293                 if (retval)
2294                         return retval;
2295         }
2296         retval = ftdi_write_pcimem(ftdi, ed_controlhead, 0x00000000);
2297         if (retval)
2298                 return retval;
2299         retval = ftdi_write_pcimem(ftdi, ed_bulkhead, 0x11000000);
2300         if (retval)
2301                 return retval;
2302         retval = ftdi_write_pcimem(ftdi, hcca, 0x00000000);
2303         if (retval)
2304                 return retval;
2305         retval = ftdi_read_pcimem(ftdi, fminterval, &fminterval);
2306         if (retval)
2307                 return retval;
2308         retval = ftdi_write_pcimem(ftdi, fminterval,
2309                                    ((fminterval & FIT) ^ FIT) | hc_fminterval);
2310         if (retval)
2311                 return retval;
2312         retval = ftdi_write_pcimem(ftdi, periodicstart,
2313                                    ((9 *hc_fminterval) / 10) & 0x3fff);
2314         if (retval)
2315                 return retval;
2316         retval = ftdi_read_pcimem(ftdi, fminterval, &fminterval);
2317         if (retval)
2318                 return retval;
2319         retval = ftdi_read_pcimem(ftdi, periodicstart, &periodicstart);
2320         if (retval)
2321                 return retval;
2322         if (0 == (fminterval & 0x3fff0000) || 0 == periodicstart) {
2323                 if (!(quirk & OHCI_QUIRK_INITRESET)) {
2324                         quirk |= OHCI_QUIRK_INITRESET;
2325                         goto retry;
2326                 } else
2327                         dev_err(&ftdi->udev->dev, "init err(%08x %04x)\n",
2328                                 fminterval, periodicstart);
2329         }                        /* start controller operations */
2330         hc_control &= OHCI_CTRL_RWC;
2331         hc_control |= OHCI_CONTROL_INIT | OHCI_CTRL_BLE | OHCI_USB_OPER;
2332         retval = ftdi_write_pcimem(ftdi, control, hc_control);
2333         if (retval)
2334                 return retval;
2335         retval = ftdi_write_pcimem(ftdi, cmdstatus, OHCI_BLF);
2336         if (retval)
2337                 return retval;
2338         retval = ftdi_read_pcimem(ftdi, cmdstatus, &cmdstatus);
2339         if (retval)
2340                 return retval;
2341         retval = ftdi_read_pcimem(ftdi, control, &control);
2342         if (retval)
2343                 return retval;
2344         retval = ftdi_write_pcimem(ftdi, roothub.status, RH_HS_DRWE);
2345         if (retval)
2346                 return retval;
2347         retval = ftdi_write_pcimem(ftdi, intrstatus, mask);
2348         if (retval)
2349                 return retval;
2350         retval = ftdi_write_pcimem(ftdi, intrdisable,
2351                                    OHCI_INTR_MIE | OHCI_INTR_OC | OHCI_INTR_RHSC | OHCI_INTR_FNO |
2352                                    OHCI_INTR_UE | OHCI_INTR_RD | OHCI_INTR_SF | OHCI_INTR_WDH |
2353                                    OHCI_INTR_SO);
2354         if (retval)
2355                 return retval;        /* handle root hub init quirks ... */
2356         retval = ftdi_read_pcimem(ftdi, roothub.a, &roothub_a);
2357         if (retval)
2358                 return retval;
2359         roothub_a &= ~(RH_A_PSM | RH_A_OCPM);
2360         if (quirk & OHCI_QUIRK_SUPERIO) {
2361                 roothub_a |= RH_A_NOCP;
2362                 roothub_a &= ~(RH_A_POTPGT | RH_A_NPS);
2363                 retval = ftdi_write_pcimem(ftdi, roothub.a, roothub_a);
2364                 if (retval)
2365                         return retval;
2366         } else if ((quirk & OHCI_QUIRK_AMD756) || distrust_firmware) {
2367                 roothub_a |= RH_A_NPS;
2368                 retval = ftdi_write_pcimem(ftdi, roothub.a, roothub_a);
2369                 if (retval)
2370                         return retval;
2371         }
2372         retval = ftdi_write_pcimem(ftdi, roothub.status, RH_HS_LPSC);
2373         if (retval)
2374                 return retval;
2375         retval = ftdi_write_pcimem(ftdi, roothub.b,
2376                                    (roothub_a & RH_A_NPS) ? 0 : RH_B_PPCM);
2377         if (retval)
2378                 return retval;
2379         retval = ftdi_read_pcimem(ftdi, control, &control);
2380         if (retval)
2381                 return retval;
2382         mdelay((roothub_a >> 23) & 0x1fe);
2383         for (temp = 0; temp < num_ports; temp++) {
2384                 u32 portstatus;
2385                 retval = ftdi_read_pcimem(ftdi, roothub.portstatus[temp],
2386                                           &portstatus);
2387                 if (retval)
2388                         return retval;
2389                 if (1 & portstatus)
2390                         devices += 1;
2391         }
2392         return devices;
2393 }
2394
2395 static int ftdi_elan_setup_controller(struct usb_ftdi *ftdi, int fn)
2396 {
2397         u32 latence_timer;
2398         int UxxxStatus;
2399         u32 pcidata;
2400         int reg = 0;
2401         int activePCIfn = fn << 8;
2402         UxxxStatus = ftdi_elan_write_reg(ftdi, 0x0000025FL | 0x2800);
2403         if (UxxxStatus)
2404                 return UxxxStatus;
2405         reg = 16;
2406         UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0,
2407                                             0xFFFFFFFF);
2408         if (UxxxStatus)
2409                 return UxxxStatus;
2410         UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2411                                            &pcidata);
2412         if (UxxxStatus)
2413                 return UxxxStatus;
2414         UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0,
2415                                             0xF0000000);
2416         if (UxxxStatus)
2417                 return UxxxStatus;
2418         UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2419                                            &pcidata);
2420         if (UxxxStatus)
2421                 return UxxxStatus;
2422         reg = 12;
2423         UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2424                                            &latence_timer);
2425         if (UxxxStatus)
2426                 return UxxxStatus;
2427         latence_timer &= 0xFFFF00FF;
2428         latence_timer |= 0x00001600;
2429         UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0x00,
2430                                             latence_timer);
2431         if (UxxxStatus)
2432                 return UxxxStatus;
2433         UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2434                                            &pcidata);
2435         if (UxxxStatus)
2436                 return UxxxStatus;
2437         reg = 4;
2438         UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0x00,
2439                                             0x06);
2440         if (UxxxStatus)
2441                 return UxxxStatus;
2442         UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2443                                            &pcidata);
2444         if (UxxxStatus)
2445                 return UxxxStatus;
2446         for (reg = 0; reg <= 0x54; reg += 4) {
2447                 UxxxStatus = ftdi_elan_read_pcimem(ftdi, reg, 0, &pcidata);
2448                 if (UxxxStatus)
2449                         return UxxxStatus;
2450         }
2451         return 0;
2452 }
2453
2454 static int ftdi_elan_close_controller(struct usb_ftdi *ftdi, int fn)
2455 {
2456         u32 latence_timer;
2457         int UxxxStatus;
2458         u32 pcidata;
2459         int reg = 0;
2460         int activePCIfn = fn << 8;
2461         UxxxStatus = ftdi_elan_write_reg(ftdi, 0x0000025FL | 0x2800);
2462         if (UxxxStatus)
2463                 return UxxxStatus;
2464         reg = 16;
2465         UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0,
2466                                             0xFFFFFFFF);
2467         if (UxxxStatus)
2468                 return UxxxStatus;
2469         UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2470                                            &pcidata);
2471         if (UxxxStatus)
2472                 return UxxxStatus;
2473         UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0,
2474                                             0x00000000);
2475         if (UxxxStatus)
2476                 return UxxxStatus;
2477         UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2478                                            &pcidata);
2479         if (UxxxStatus)
2480                 return UxxxStatus;
2481         reg = 12;
2482         UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2483                                            &latence_timer);
2484         if (UxxxStatus)
2485                 return UxxxStatus;
2486         latence_timer &= 0xFFFF00FF;
2487         latence_timer |= 0x00001600;
2488         UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0x00,
2489                                             latence_timer);
2490         if (UxxxStatus)
2491                 return UxxxStatus;
2492         UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2493                                            &pcidata);
2494         if (UxxxStatus)
2495                 return UxxxStatus;
2496         reg = 4;
2497         UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0x00,
2498                                             0x00);
2499         if (UxxxStatus)
2500                 return UxxxStatus;
2501         return ftdi_elan_read_config(ftdi, activePCIfn | reg, 0, &pcidata);
2502 }
2503
2504 static int ftdi_elan_found_controller(struct usb_ftdi *ftdi, int fn, int quirk)
2505 {
2506         int result;
2507         int UxxxStatus;
2508         UxxxStatus = ftdi_elan_setup_controller(ftdi, fn);
2509         if (UxxxStatus)
2510                 return UxxxStatus;
2511         result = ftdi_elan_check_controller(ftdi, quirk);
2512         UxxxStatus = ftdi_elan_close_controller(ftdi, fn);
2513         if (UxxxStatus)
2514                 return UxxxStatus;
2515         return result;
2516 }
2517
2518 static int ftdi_elan_enumeratePCI(struct usb_ftdi *ftdi)
2519 {
2520         u32 controlreg;
2521         u8 sensebits;
2522         int UxxxStatus;
2523         UxxxStatus = ftdi_elan_read_reg(ftdi, &controlreg);
2524         if (UxxxStatus)
2525                 return UxxxStatus;
2526         UxxxStatus = ftdi_elan_write_reg(ftdi, 0x00000000L);
2527         if (UxxxStatus)
2528                 return UxxxStatus;
2529         msleep(750);
2530         UxxxStatus = ftdi_elan_write_reg(ftdi, 0x00000200L | 0x100);
2531         if (UxxxStatus)
2532                 return UxxxStatus;
2533         UxxxStatus = ftdi_elan_write_reg(ftdi, 0x00000200L | 0x500);
2534         if (UxxxStatus)
2535                 return UxxxStatus;
2536         UxxxStatus = ftdi_elan_read_reg(ftdi, &controlreg);
2537         if (UxxxStatus)
2538                 return UxxxStatus;
2539         UxxxStatus = ftdi_elan_write_reg(ftdi, 0x0000020CL | 0x000);
2540         if (UxxxStatus)
2541                 return UxxxStatus;
2542         UxxxStatus = ftdi_elan_write_reg(ftdi, 0x0000020DL | 0x000);
2543         if (UxxxStatus)
2544                 return UxxxStatus;
2545         msleep(250);
2546         UxxxStatus = ftdi_elan_write_reg(ftdi, 0x0000020FL | 0x000);
2547         if (UxxxStatus)
2548                 return UxxxStatus;
2549         UxxxStatus = ftdi_elan_read_reg(ftdi, &controlreg);
2550         if (UxxxStatus)
2551                 return UxxxStatus;
2552         UxxxStatus = ftdi_elan_write_reg(ftdi, 0x0000025FL | 0x800);
2553         if (UxxxStatus)
2554                 return UxxxStatus;
2555         UxxxStatus = ftdi_elan_read_reg(ftdi, &controlreg);
2556         if (UxxxStatus)
2557                 return UxxxStatus;
2558         UxxxStatus = ftdi_elan_read_reg(ftdi, &controlreg);
2559         if (UxxxStatus)
2560                 return UxxxStatus;
2561         msleep(1000);
2562         sensebits = (controlreg >> 16) & 0x000F;
2563         if (0x0D == sensebits)
2564                 return 0;
2565         else
2566                 return - ENXIO;
2567 }
2568
2569 static int ftdi_elan_setupOHCI(struct usb_ftdi *ftdi)
2570 {
2571         int UxxxStatus;
2572         u32 pcidata;
2573         int reg = 0;
2574         u8 fn;
2575         int activePCIfn = 0;
2576         int max_devices = 0;
2577         int controllers = 0;
2578         int unrecognized = 0;
2579         ftdi->function = 0;
2580         for (fn = 0; (fn < 4); fn++) {
2581                 u32 pciVID = 0;
2582                 u32 pciPID = 0;
2583                 int devices = 0;
2584                 activePCIfn = fn << 8;
2585                 UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2586                                                    &pcidata);
2587                 if (UxxxStatus)
2588                         return UxxxStatus;
2589                 pciVID = pcidata & 0xFFFF;
2590                 pciPID = (pcidata >> 16) & 0xFFFF;
2591                 if ((pciVID == PCI_VENDOR_ID_OPTI) && (pciPID == 0xc861)) {
2592                         devices = ftdi_elan_found_controller(ftdi, fn, 0);
2593                         controllers += 1;
2594                 } else if ((pciVID == PCI_VENDOR_ID_NEC) && (pciPID == 0x0035))
2595                 {
2596                         devices = ftdi_elan_found_controller(ftdi, fn, 0);
2597                         controllers += 1;
2598                 } else if ((pciVID == PCI_VENDOR_ID_AL) && (pciPID == 0x5237)) {
2599                         devices = ftdi_elan_found_controller(ftdi, fn, 0);
2600                         controllers += 1;
2601                 } else if ((pciVID == PCI_VENDOR_ID_ATT) && (pciPID == 0x5802))
2602                 {
2603                         devices = ftdi_elan_found_controller(ftdi, fn, 0);
2604                         controllers += 1;
2605                 } else if (pciVID == PCI_VENDOR_ID_AMD && pciPID == 0x740c) {
2606                         devices = ftdi_elan_found_controller(ftdi, fn,
2607                                                              OHCI_QUIRK_AMD756);
2608                         controllers += 1;
2609                 } else if (pciVID == PCI_VENDOR_ID_COMPAQ && pciPID == 0xa0f8) {
2610                         devices = ftdi_elan_found_controller(ftdi, fn,
2611                                                              OHCI_QUIRK_ZFMICRO);
2612                         controllers += 1;
2613                 } else if (0 == pcidata) {
2614                 } else
2615                         unrecognized += 1;
2616                 if (devices > max_devices) {
2617                         max_devices = devices;
2618                         ftdi->function = fn + 1;
2619                         ftdi->platform_data.vendor = pciVID;
2620                         ftdi->platform_data.device = pciPID;
2621                 }
2622         }
2623         if (ftdi->function > 0) {
2624                 return ftdi_elan_setup_controller(ftdi, ftdi->function - 1);
2625         } else if (controllers > 0) {
2626                 return -ENXIO;
2627         } else if (unrecognized > 0) {
2628                 return -ENXIO;
2629         } else {
2630                 ftdi->enumerated = 0;
2631                 return -ENXIO;
2632         }
2633 }
2634
2635
2636 /*
2637  * we use only the first bulk-in and bulk-out endpoints
2638  */
2639 static int ftdi_elan_probe(struct usb_interface *interface,
2640                            const struct usb_device_id *id)
2641 {
2642         struct usb_host_interface *iface_desc;
2643         struct usb_endpoint_descriptor *bulk_in, *bulk_out;
2644         int retval;
2645         struct usb_ftdi *ftdi;
2646
2647         ftdi = kzalloc(sizeof(struct usb_ftdi), GFP_KERNEL);
2648         if (!ftdi)
2649                 return -ENOMEM;
2650
2651         mutex_lock(&ftdi_module_lock);
2652         list_add_tail(&ftdi->ftdi_list, &ftdi_static_list);
2653         ftdi->sequence_num = ++ftdi_instances;
2654         mutex_unlock(&ftdi_module_lock);
2655         ftdi_elan_init_kref(ftdi);
2656         sema_init(&ftdi->sw_lock, 1);
2657         ftdi->udev = usb_get_dev(interface_to_usbdev(interface));
2658         ftdi->interface = interface;
2659         mutex_init(&ftdi->u132_lock);
2660         ftdi->expected = 4;
2661
2662         iface_desc = interface->cur_altsetting;
2663         retval = usb_find_common_endpoints(iface_desc,
2664                         &bulk_in, &bulk_out, NULL, NULL);
2665         if (retval) {
2666                 dev_err(&ftdi->udev->dev, "Could not find both bulk-in and bulk-out endpoints\n");
2667                 goto error;
2668         }
2669
2670         ftdi->bulk_in_size = usb_endpoint_maxp(bulk_in);
2671         ftdi->bulk_in_endpointAddr = bulk_in->bEndpointAddress;
2672         ftdi->bulk_in_buffer = kmalloc(ftdi->bulk_in_size, GFP_KERNEL);
2673         if (!ftdi->bulk_in_buffer) {
2674                 retval = -ENOMEM;
2675                 goto error;
2676         }
2677
2678         ftdi->bulk_out_endpointAddr = bulk_out->bEndpointAddress;
2679
2680         dev_info(&ftdi->udev->dev, "interface %d has I=%02X O=%02X\n",
2681                  iface_desc->desc.bInterfaceNumber, ftdi->bulk_in_endpointAddr,
2682                  ftdi->bulk_out_endpointAddr);
2683         usb_set_intfdata(interface, ftdi);
2684         if (iface_desc->desc.bInterfaceNumber == 0 &&
2685             ftdi->bulk_in_endpointAddr == 0x81 &&
2686             ftdi->bulk_out_endpointAddr == 0x02) {
2687                 retval = usb_register_dev(interface, &ftdi_elan_jtag_class);
2688                 if (retval) {
2689                         dev_err(&ftdi->udev->dev, "Not able to get a minor for this device\n");
2690                         usb_set_intfdata(interface, NULL);
2691                         retval = -ENOMEM;
2692                         goto error;
2693                 } else {
2694                         ftdi->class = &ftdi_elan_jtag_class;
2695                         dev_info(&ftdi->udev->dev, "USB FDTI=%p JTAG interface %d now attached to ftdi%d\n",
2696                                  ftdi, iface_desc->desc.bInterfaceNumber,
2697                                  interface->minor);
2698                         return 0;
2699                 }
2700         } else if (iface_desc->desc.bInterfaceNumber == 1 &&
2701                    ftdi->bulk_in_endpointAddr == 0x83 &&
2702                    ftdi->bulk_out_endpointAddr == 0x04) {
2703                 ftdi->class = NULL;
2704                 dev_info(&ftdi->udev->dev, "USB FDTI=%p ELAN interface %d now activated\n",
2705                          ftdi, iface_desc->desc.bInterfaceNumber);
2706                 INIT_DELAYED_WORK(&ftdi->status_work, ftdi_elan_status_work);
2707                 INIT_DELAYED_WORK(&ftdi->command_work, ftdi_elan_command_work);
2708                 INIT_DELAYED_WORK(&ftdi->respond_work, ftdi_elan_respond_work);
2709                 ftdi_status_queue_work(ftdi, msecs_to_jiffies(3 *1000));
2710                 return 0;
2711         } else {
2712                 dev_err(&ftdi->udev->dev,
2713                         "Could not find ELAN's U132 device\n");
2714                 retval = -ENODEV;
2715                 goto error;
2716         }
2717 error:if (ftdi) {
2718                 ftdi_elan_put_kref(ftdi);
2719         }
2720         return retval;
2721 }
2722
2723 static void ftdi_elan_disconnect(struct usb_interface *interface)
2724 {
2725         struct usb_ftdi *ftdi = usb_get_intfdata(interface);
2726         ftdi->disconnected += 1;
2727         if (ftdi->class) {
2728                 int minor = interface->minor;
2729                 struct usb_class_driver *class = ftdi->class;
2730                 usb_set_intfdata(interface, NULL);
2731                 usb_deregister_dev(interface, class);
2732                 dev_info(&ftdi->udev->dev, "USB FTDI U132 jtag interface on minor %d now disconnected\n",
2733                          minor);
2734         } else {
2735                 ftdi_status_cancel_work(ftdi);
2736                 ftdi_command_cancel_work(ftdi);
2737                 ftdi_response_cancel_work(ftdi);
2738                 ftdi_elan_abandon_completions(ftdi);
2739                 ftdi_elan_abandon_targets(ftdi);
2740                 if (ftdi->registered) {
2741                         platform_device_unregister(&ftdi->platform_dev);
2742                         ftdi->synchronized = 0;
2743                         ftdi->enumerated = 0;
2744                         ftdi->initialized = 0;
2745                         ftdi->registered = 0;
2746                 }
2747                 ftdi->disconnected += 1;
2748                 usb_set_intfdata(interface, NULL);
2749                 dev_info(&ftdi->udev->dev, "USB FTDI U132 host controller interface now disconnected\n");
2750         }
2751         ftdi_elan_put_kref(ftdi);
2752 }
2753
2754 static struct usb_driver ftdi_elan_driver = {
2755         .name = "ftdi-elan",
2756         .probe = ftdi_elan_probe,
2757         .disconnect = ftdi_elan_disconnect,
2758         .id_table = ftdi_elan_table,
2759 };
2760 static int __init ftdi_elan_init(void)
2761 {
2762         int result;
2763         pr_info("driver %s\n", ftdi_elan_driver.name);
2764         mutex_init(&ftdi_module_lock);
2765         INIT_LIST_HEAD(&ftdi_static_list);
2766         result = usb_register(&ftdi_elan_driver);
2767         if (result) {
2768                 pr_err("usb_register failed. Error number %d\n", result);
2769         }
2770         return result;
2771
2772 }
2773
2774 static void __exit ftdi_elan_exit(void)
2775 {
2776         struct usb_ftdi *ftdi;
2777         struct usb_ftdi *temp;
2778         usb_deregister(&ftdi_elan_driver);
2779         pr_info("ftdi_u132 driver deregistered\n");
2780         list_for_each_entry_safe(ftdi, temp, &ftdi_static_list, ftdi_list) {
2781                 ftdi_status_cancel_work(ftdi);
2782                 ftdi_command_cancel_work(ftdi);
2783                 ftdi_response_cancel_work(ftdi);
2784         }
2785 }
2786
2787
2788 module_init(ftdi_elan_init);
2789 module_exit(ftdi_elan_exit);