4054fe93d6e457292d6b84fe43fbbc93c3205054
[sfrench/cifs-2.6.git] / drivers / sh / maple / maple.c
1 /*
2  * Core maple bus functionality
3  *
4  *  Copyright (C) 2007 - 2009 Adrian McMenamin
5  *  Copyright (C) 2001 - 2008 Paul Mundt
6  *  Copyright (C) 2000 - 2001 YAEGASHI Takeshi
7  *  Copyright (C) 2001 M. R. Brown
8  *
9  * This file is subject to the terms and conditions of the GNU General Public
10  * License.  See the file "COPYING" in the main directory of this archive
11  * for more details.
12  */
13 #include <linux/init.h>
14 #include <linux/kernel.h>
15 #include <linux/device.h>
16 #include <linux/interrupt.h>
17 #include <linux/list.h>
18 #include <linux/io.h>
19 #include <linux/slab.h>
20 #include <linux/maple.h>
21 #include <linux/dma-mapping.h>
22 #include <linux/delay.h>
23 #include <asm/cacheflush.h>
24 #include <asm/dma.h>
25 #include <asm/io.h>
26 #include <mach/dma.h>
27 #include <mach/sysasic.h>
28
29 MODULE_AUTHOR("Adrian McMenamin <adrian@mcmen.demon.co.uk>");
30 MODULE_DESCRIPTION("Maple bus driver for Dreamcast");
31 MODULE_LICENSE("GPL v2");
32 MODULE_SUPPORTED_DEVICE("{{SEGA, Dreamcast/Maple}}");
33
34 static void maple_dma_handler(struct work_struct *work);
35 static void maple_vblank_handler(struct work_struct *work);
36
37 static DECLARE_WORK(maple_dma_process, maple_dma_handler);
38 static DECLARE_WORK(maple_vblank_process, maple_vblank_handler);
39
40 static LIST_HEAD(maple_waitq);
41 static LIST_HEAD(maple_sentq);
42
43 /* mutex to protect queue of waiting packets */
44 static DEFINE_MUTEX(maple_wlist_lock);
45
46 static struct maple_driver maple_unsupported_device;
47 static struct device maple_bus;
48 static int subdevice_map[MAPLE_PORTS];
49 static unsigned long *maple_sendbuf, *maple_sendptr, *maple_lastptr;
50 static unsigned long maple_pnp_time;
51 static int started, scanning, fullscan;
52 static struct kmem_cache *maple_queue_cache;
53
54 struct maple_device_specify {
55         int port;
56         int unit;
57 };
58
59 static bool checked[MAPLE_PORTS];
60 static bool empty[MAPLE_PORTS];
61 static struct maple_device *baseunits[MAPLE_PORTS];
62
63 /**
64  * maple_driver_register - register a maple driver
65  * @drv: maple driver to be registered.
66  *
67  * Registers the passed in @drv, while updating the bus type.
68  * Devices with matching function IDs will be automatically probed.
69  */
70 int maple_driver_register(struct maple_driver *drv)
71 {
72         if (!drv)
73                 return -EINVAL;
74
75         drv->drv.bus = &maple_bus_type;
76
77         return driver_register(&drv->drv);
78 }
79 EXPORT_SYMBOL_GPL(maple_driver_register);
80
81 /**
82  * maple_driver_unregister - unregister a maple driver.
83  * @drv: maple driver to unregister.
84  *
85  * Cleans up after maple_driver_register(). To be invoked in the exit
86  * path of any module drivers.
87  */
88 void maple_driver_unregister(struct maple_driver *drv)
89 {
90         driver_unregister(&drv->drv);
91 }
92 EXPORT_SYMBOL_GPL(maple_driver_unregister);
93
94 /* set hardware registers to enable next round of dma */
95 static void maple_dma_reset(void)
96 {
97         ctrl_outl(MAPLE_MAGIC, MAPLE_RESET);
98         /* set trig type to 0 for software trigger, 1 for hardware (VBLANK) */
99         ctrl_outl(1, MAPLE_TRIGTYPE);
100         /*
101         * Maple system register
102         * bits 31 - 16  timeout in units of 20nsec
103         * bit 12        hard trigger - set 0 to keep responding to VBLANK
104         * bits 9 - 8    set 00 for 2 Mbps, 01 for 1 Mbps
105         * bits 3 - 0    delay (in 1.3ms) between VBLANK and start of DMA
106         * max delay is 11
107         */
108         ctrl_outl(MAPLE_2MBPS | MAPLE_TIMEOUT(0xFFFF), MAPLE_SPEED);
109         ctrl_outl(PHYSADDR(maple_sendbuf), MAPLE_DMAADDR);
110         ctrl_outl(1, MAPLE_ENABLE);
111 }
112
113 /**
114  * maple_getcond_callback - setup handling MAPLE_COMMAND_GETCOND
115  * @dev: device responding
116  * @callback: handler callback
117  * @interval: interval in jiffies between callbacks
118  * @function: the function code for the device
119  */
120 void maple_getcond_callback(struct maple_device *dev,
121                         void (*callback) (struct mapleq *mq),
122                         unsigned long interval, unsigned long function)
123 {
124         dev->callback = callback;
125         dev->interval = interval;
126         dev->function = cpu_to_be32(function);
127         dev->when = jiffies;
128 }
129 EXPORT_SYMBOL_GPL(maple_getcond_callback);
130
131 static int maple_dma_done(void)
132 {
133         return (ctrl_inl(MAPLE_STATE) & 1) == 0;
134 }
135
136 static void maple_release_device(struct device *dev)
137 {
138         struct maple_device *mdev;
139         struct mapleq *mq;
140
141         mdev = to_maple_dev(dev);
142         mq = mdev->mq;
143         kmem_cache_free(maple_queue_cache, mq->recvbuf);
144         kfree(mq);
145         kfree(mdev);
146 }
147
148 /**
149  * maple_add_packet - add a single instruction to the maple bus queue
150  * @mdev: maple device
151  * @function: function on device being queried
152  * @command: maple command to add
153  * @length: length of command string (in 32 bit words)
154  * @data: remainder of command string
155  */
156 int maple_add_packet(struct maple_device *mdev, u32 function, u32 command,
157         size_t length, void *data)
158 {
159         int ret = 0;
160         void *sendbuf = NULL;
161
162         if (length) {
163                 sendbuf = kzalloc(length * 4, GFP_KERNEL);
164                 if (!sendbuf) {
165                         ret = -ENOMEM;
166                         goto out;
167                 }
168                 ((__be32 *)sendbuf)[0] = cpu_to_be32(function);
169         }
170
171         mdev->mq->command = command;
172         mdev->mq->length = length;
173         if (length > 1)
174                 memcpy(sendbuf + 4, data, (length - 1) * 4);
175         mdev->mq->sendbuf = sendbuf;
176
177         mutex_lock(&maple_wlist_lock);
178         list_add_tail(&mdev->mq->list, &maple_waitq);
179         mutex_unlock(&maple_wlist_lock);
180 out:
181         return ret;
182 }
183 EXPORT_SYMBOL_GPL(maple_add_packet);
184
185 static struct mapleq *maple_allocq(struct maple_device *mdev)
186 {
187         struct mapleq *mq;
188
189         mq = kzalloc(sizeof(*mq), GFP_KERNEL);
190         if (!mq)
191                 goto failed_nomem;
192
193         INIT_LIST_HEAD(&mq->list);
194         mq->dev = mdev;
195         mq->recvbuf = kmem_cache_zalloc(maple_queue_cache, GFP_KERNEL);
196         if (!mq->recvbuf)
197                 goto failed_p2;
198         mq->recvbuf->buf = &((mq->recvbuf->bufx)[0]);
199
200         return mq;
201
202 failed_p2:
203         kfree(mq);
204 failed_nomem:
205         dev_err(&mdev->dev, "could not allocate memory for device (%d, %d)\n",
206                 mdev->port, mdev->unit);
207         return NULL;
208 }
209
210 static struct maple_device *maple_alloc_dev(int port, int unit)
211 {
212         struct maple_device *mdev;
213
214         /* zero this out to avoid kobj subsystem
215         * thinking it has already been registered */
216
217         mdev = kzalloc(sizeof(*mdev), GFP_KERNEL);
218         if (!mdev)
219                 return NULL;
220
221         mdev->port = port;
222         mdev->unit = unit;
223
224         mdev->mq = maple_allocq(mdev);
225
226         if (!mdev->mq) {
227                 kfree(mdev);
228                 return NULL;
229         }
230         mdev->dev.bus = &maple_bus_type;
231         mdev->dev.parent = &maple_bus;
232         init_waitqueue_head(&mdev->maple_wait);
233         return mdev;
234 }
235
236 static void maple_free_dev(struct maple_device *mdev)
237 {
238         kmem_cache_free(maple_queue_cache, mdev->mq->recvbuf);
239         kfree(mdev->mq);
240         kfree(mdev);
241 }
242
243 /* process the command queue into a maple command block
244  * terminating command has bit 32 of first long set to 0
245  */
246 static void maple_build_block(struct mapleq *mq)
247 {
248         int port, unit, from, to, len;
249         unsigned long *lsendbuf = mq->sendbuf;
250
251         port = mq->dev->port & 3;
252         unit = mq->dev->unit;
253         len = mq->length;
254         from = port << 6;
255         to = (port << 6) | (unit > 0 ? (1 << (unit - 1)) & 0x1f : 0x20);
256
257         *maple_lastptr &= 0x7fffffff;
258         maple_lastptr = maple_sendptr;
259
260         *maple_sendptr++ = (port << 16) | len | 0x80000000;
261         *maple_sendptr++ = PHYSADDR(mq->recvbuf->buf);
262         *maple_sendptr++ =
263             mq->command | (to << 8) | (from << 16) | (len << 24);
264         while (len-- > 0)
265                 *maple_sendptr++ = *lsendbuf++;
266 }
267
268 /* build up command queue */
269 static void maple_send(void)
270 {
271         int i, maple_packets = 0;
272         struct mapleq *mq, *nmq;
273
274         if (!maple_dma_done())
275                 return;
276
277         /* disable DMA */
278         ctrl_outl(0, MAPLE_ENABLE);
279
280         if (!list_empty(&maple_sentq))
281                 goto finish;
282
283         mutex_lock(&maple_wlist_lock);
284         if (list_empty(&maple_waitq)) {
285                 mutex_unlock(&maple_wlist_lock);
286                 goto finish;
287         }
288
289         maple_lastptr = maple_sendbuf;
290         maple_sendptr = maple_sendbuf;
291
292         list_for_each_entry_safe(mq, nmq, &maple_waitq, list) {
293                 maple_build_block(mq);
294                 list_del_init(&mq->list);
295                 list_add_tail(&mq->list, &maple_sentq);
296                 if (maple_packets++ > MAPLE_MAXPACKETS)
297                         break;
298         }
299         mutex_unlock(&maple_wlist_lock);
300         if (maple_packets > 0) {
301                 for (i = 0; i < (1 << MAPLE_DMA_PAGES); i++)
302                         dma_cache_sync(0, maple_sendbuf + i * PAGE_SIZE,
303                                        PAGE_SIZE, DMA_BIDIRECTIONAL);
304         }
305
306 finish:
307         maple_dma_reset();
308 }
309
310 /* check if there is a driver registered likely to match this device */
311 static int maple_check_matching_driver(struct device_driver *driver,
312                                         void *devptr)
313 {
314         struct maple_driver *maple_drv;
315         struct maple_device *mdev;
316
317         mdev = devptr;
318         maple_drv = to_maple_driver(driver);
319         if (mdev->devinfo.function & cpu_to_be32(maple_drv->function))
320                 return 1;
321         return 0;
322 }
323
324 static void maple_detach_driver(struct maple_device *mdev)
325 {
326         device_unregister(&mdev->dev);
327 }
328
329 /* process initial MAPLE_COMMAND_DEVINFO for each device or port */
330 static void maple_attach_driver(struct maple_device *mdev)
331 {
332         char *p, *recvbuf;
333         unsigned long function;
334         int matched, error;
335
336         recvbuf = mdev->mq->recvbuf->buf;
337         /* copy the data as individual elements in
338         * case of memory optimisation */
339         memcpy(&mdev->devinfo.function, recvbuf + 4, 4);
340         memcpy(&mdev->devinfo.function_data[0], recvbuf + 8, 12);
341         memcpy(&mdev->devinfo.area_code, recvbuf + 20, 1);
342         memcpy(&mdev->devinfo.connector_direction, recvbuf + 21, 1);
343         memcpy(&mdev->devinfo.product_name[0], recvbuf + 22, 30);
344         memcpy(&mdev->devinfo.standby_power, recvbuf + 112, 2);
345         memcpy(&mdev->devinfo.max_power, recvbuf + 114, 2);
346         memcpy(mdev->product_name, mdev->devinfo.product_name, 30);
347         mdev->product_name[30] = '\0';
348         memcpy(mdev->product_licence, mdev->devinfo.product_licence, 60);
349         mdev->product_licence[60] = '\0';
350
351         for (p = mdev->product_name + 29; mdev->product_name <= p; p--)
352                 if (*p == ' ')
353                         *p = '\0';
354                 else
355                         break;
356         for (p = mdev->product_licence + 59; mdev->product_licence <= p; p--)
357                 if (*p == ' ')
358                         *p = '\0';
359                 else
360                         break;
361
362         function = be32_to_cpu(mdev->devinfo.function);
363
364         dev_info(&mdev->dev, "detected %s: function 0x%lX: at (%d, %d)\n",
365                 mdev->product_name, function, mdev->port, mdev->unit);
366
367         if (function > 0x200) {
368                 /* Do this silently - as not a real device */
369                 function = 0;
370                 mdev->driver = &maple_unsupported_device;
371                 sprintf(mdev->dev.bus_id, "%d:0.port", mdev->port);
372
373         } else {
374
375                 matched =
376                         bus_for_each_drv(&maple_bus_type, NULL, mdev,
377                                 maple_check_matching_driver);
378
379                 if (matched == 0) {
380                         /* Driver does not exist yet */
381                         dev_info(&mdev->dev, "no driver found\n");
382                         mdev->driver = &maple_unsupported_device;
383                 }
384                 sprintf(mdev->dev.bus_id, "%d:0%d.%lX", mdev->port,
385                         mdev->unit, function);
386         }
387
388         mdev->function = function;
389         mdev->dev.release = &maple_release_device;
390
391         atomic_set(&mdev->busy, 0);
392         error = device_register(&mdev->dev);
393         if (error) {
394                 dev_warn(&mdev->dev, "could not register device at"
395                         " (%d, %d), with error 0x%X\n", mdev->unit,
396                         mdev->port, error);
397                 maple_free_dev(mdev);
398                 mdev = NULL;
399                 return;
400         }
401 }
402
403 /*
404  * if device has been registered for the given
405  * port and unit then return 1 - allows identification
406  * of which devices need to be attached or detached
407  */
408 static int check_maple_device(struct device *device, void *portptr)
409 {
410         struct maple_device_specify *ds;
411         struct maple_device *mdev;
412
413         ds = portptr;
414         mdev = to_maple_dev(device);
415         if (mdev->port == ds->port && mdev->unit == ds->unit)
416                 return 1;
417         return 0;
418 }
419
420 static int setup_maple_commands(struct device *device, void *ignored)
421 {
422         int add;
423         struct maple_device *mdev = to_maple_dev(device);
424         if (mdev->interval > 0 && atomic_read(&mdev->busy) == 0 &&
425                 time_after(jiffies, mdev->when)) {
426                 /* bounce if we cannot add */
427                 add = maple_add_packet(mdev,
428                         be32_to_cpu(mdev->devinfo.function),
429                         MAPLE_COMMAND_GETCOND, 1, NULL);
430                 if (!add)
431                         mdev->when = jiffies + mdev->interval;
432         } else {
433                 if (time_after(jiffies, maple_pnp_time))
434                         /* Ensure we don't have block reads and devinfo
435                         * calls interfering with one another - so flag the
436                         * device as busy */
437                         if (atomic_read(&mdev->busy) == 0) {
438                                 atomic_set(&mdev->busy, 1);
439                                 maple_add_packet(mdev, 0,
440                                         MAPLE_COMMAND_DEVINFO, 0, NULL);
441                         }
442         }
443         return 0;
444 }
445
446 /* VBLANK bottom half - implemented via workqueue */
447 static void maple_vblank_handler(struct work_struct *work)
448 {
449         int x, locking;
450         struct maple_device *mdev;
451
452         if (!maple_dma_done())
453                 return;
454
455         ctrl_outl(0, MAPLE_ENABLE);
456
457         if (!list_empty(&maple_sentq))
458                 goto finish;
459
460         /*
461         * Set up essential commands - to fetch data and
462         * check devices are still present
463         */
464         bus_for_each_dev(&maple_bus_type, NULL, NULL,
465                 setup_maple_commands);
466
467         if (time_after(jiffies, maple_pnp_time)) {
468                 /*
469                 * Scan the empty ports - bus is flakey and may have
470                 * mis-reported emptyness
471                 */
472                 for (x = 0; x < MAPLE_PORTS; x++) {
473                         if (checked[x] && empty[x]) {
474                                 mdev = baseunits[x];
475                                 if (!mdev)
476                                         break;
477                                 atomic_set(&mdev->busy, 1);
478                                 locking = maple_add_packet(mdev, 0,
479                                         MAPLE_COMMAND_DEVINFO, 0, NULL);
480                                 if (!locking)
481                                         break;
482                                 }
483                         }
484
485                 maple_pnp_time = jiffies + MAPLE_PNP_INTERVAL;
486         }
487
488 finish:
489         maple_send();
490 }
491
492 /* handle devices added via hotplugs - placing them on queue for DEVINFO */
493 static void maple_map_subunits(struct maple_device *mdev, int submask)
494 {
495         int retval, k, devcheck;
496         struct maple_device *mdev_add;
497         struct maple_device_specify ds;
498
499         ds.port = mdev->port;
500         for (k = 0; k < 5; k++) {
501                 ds.unit = k + 1;
502                 retval =
503                     bus_for_each_dev(&maple_bus_type, NULL, &ds,
504                                      check_maple_device);
505                 if (retval) {
506                         submask = submask >> 1;
507                         continue;
508                 }
509                 devcheck = submask & 0x01;
510                 if (devcheck) {
511                         mdev_add = maple_alloc_dev(mdev->port, k + 1);
512                         if (!mdev_add)
513                                 return;
514                         atomic_set(&mdev_add->busy, 1);
515                         maple_add_packet(mdev_add, 0, MAPLE_COMMAND_DEVINFO,
516                                 0, NULL);
517                         /* mark that we are checking sub devices */
518                         scanning = 1;
519                 }
520                 submask = submask >> 1;
521         }
522 }
523
524 /* mark a device as removed */
525 static void maple_clean_submap(struct maple_device *mdev)
526 {
527         int killbit;
528
529         killbit = (mdev->unit > 0 ? (1 << (mdev->unit - 1)) & 0x1f : 0x20);
530         killbit = ~killbit;
531         killbit &= 0xFF;
532         subdevice_map[mdev->port] = subdevice_map[mdev->port] & killbit;
533 }
534
535 /* handle empty port or hotplug removal */
536 static void maple_response_none(struct maple_device *mdev)
537 {
538         maple_clean_submap(mdev);
539
540         if (likely(mdev->unit != 0)) {
541                 /*
542                 * Block devices play up
543                 * and give the impression they have
544                 * been removed even when still in place or
545                 * trip the mtd layer when they have
546                 * really gone - this code traps that eventuality
547                 * and ensures we aren't overloaded with useless
548                 * error messages
549                 */
550                 if (mdev->can_unload) {
551                         if (!mdev->can_unload(mdev)) {
552                                 atomic_set(&mdev->busy, 2);
553                                 wake_up(&mdev->maple_wait);
554                                 return;
555                         }
556                 }
557
558                 dev_info(&mdev->dev, "detaching device at (%d, %d)\n",
559                         mdev->port, mdev->unit);
560                 maple_detach_driver(mdev);
561                 return;
562         } else {
563                 if (!started || !fullscan) {
564                         if (checked[mdev->port] == false) {
565                                 checked[mdev->port] = true;
566                                 empty[mdev->port] = true;
567                                 dev_info(&mdev->dev, "no devices"
568                                         " to port %d\n", mdev->port);
569                         }
570                         return;
571                 }
572         }
573         /* Some hardware devices generate false detach messages on unit 0 */
574         atomic_set(&mdev->busy, 0);
575 }
576
577 /* preprocess hotplugs or scans */
578 static void maple_response_devinfo(struct maple_device *mdev,
579                                    char *recvbuf)
580 {
581         char submask;
582         if (!started || (scanning == 2) || !fullscan) {
583                 if ((mdev->unit == 0) && (checked[mdev->port] == false)) {
584                         checked[mdev->port] = true;
585                         maple_attach_driver(mdev);
586                 } else {
587                         if (mdev->unit != 0)
588                                 maple_attach_driver(mdev);
589                         if (mdev->unit == 0) {
590                                 empty[mdev->port] = false;
591                                 maple_attach_driver(mdev);
592                         }
593                 }
594         }
595         if (mdev->unit == 0) {
596                 submask = recvbuf[2] & 0x1F;
597                 if (submask ^ subdevice_map[mdev->port]) {
598                         maple_map_subunits(mdev, submask);
599                         subdevice_map[mdev->port] = submask;
600                 }
601         }
602 }
603
604 static void maple_response_fileerr(struct maple_device *mdev, void *recvbuf)
605 {
606         if (mdev->fileerr_handler) {
607                 mdev->fileerr_handler(mdev, recvbuf);
608                 return;
609         } else
610                 dev_warn(&mdev->dev, "device at (%d, %d) reports"
611                         "file error 0x%X\n", mdev->port, mdev->unit,
612                         ((int *)recvbuf)[1]);
613 }
614
615 static void maple_port_rescan(void)
616 {
617         int i;
618         struct maple_device *mdev;
619
620         fullscan = 1;
621         for (i = 0; i < MAPLE_PORTS; i++) {
622                 if (checked[i] == false) {
623                         fullscan = 0;
624                         mdev = baseunits[i];
625                         maple_add_packet(mdev, 0, MAPLE_COMMAND_DEVINFO,
626                                 0, NULL);
627                 }
628         }
629 }
630
631 /* maple dma end bottom half - implemented via workqueue */
632 static void maple_dma_handler(struct work_struct *work)
633 {
634         struct mapleq *mq, *nmq;
635         struct maple_device *mdev;
636         char *recvbuf;
637         enum maple_code code;
638
639         if (!maple_dma_done())
640                 return;
641         ctrl_outl(0, MAPLE_ENABLE);
642         if (!list_empty(&maple_sentq)) {
643                 list_for_each_entry_safe(mq, nmq, &maple_sentq, list) {
644                         mdev = mq->dev;
645                         recvbuf = mq->recvbuf->buf;
646                         dma_cache_sync(&mdev->dev, recvbuf, 0x400,
647                                 DMA_FROM_DEVICE);
648                         code = recvbuf[0];
649                         kfree(mq->sendbuf);
650                         list_del_init(&mq->list);
651                         switch (code) {
652                         case MAPLE_RESPONSE_NONE:
653                                 maple_response_none(mdev);
654                                 break;
655
656                         case MAPLE_RESPONSE_DEVINFO:
657                                 maple_response_devinfo(mdev, recvbuf);
658                                 atomic_set(&mdev->busy, 0);
659                                 break;
660
661                         case MAPLE_RESPONSE_DATATRF:
662                                 if (mdev->callback)
663                                         mdev->callback(mq);
664                                 atomic_set(&mdev->busy, 0);
665                                 wake_up(&mdev->maple_wait);
666                                 break;
667
668                         case MAPLE_RESPONSE_FILEERR:
669                                 maple_response_fileerr(mdev, recvbuf);
670                                 atomic_set(&mdev->busy, 0);
671                                 wake_up(&mdev->maple_wait);
672                                 break;
673
674                         case MAPLE_RESPONSE_AGAIN:
675                         case MAPLE_RESPONSE_BADCMD:
676                         case MAPLE_RESPONSE_BADFUNC:
677                                 dev_warn(&mdev->dev, "non-fatal error"
678                                         " 0x%X at (%d, %d)\n", code,
679                                         mdev->port, mdev->unit);
680                                 atomic_set(&mdev->busy, 0);
681                                 break;
682
683                         case MAPLE_RESPONSE_ALLINFO:
684                                 dev_notice(&mdev->dev, "extended"
685                                 " device information request for (%d, %d)"
686                                 " but call is not supported\n", mdev->port,
687                                 mdev->unit);
688                                 atomic_set(&mdev->busy, 0);
689                                 break;
690
691                         case MAPLE_RESPONSE_OK:
692                                 atomic_set(&mdev->busy, 0);
693                                 wake_up(&mdev->maple_wait);
694                                 break;
695
696                         default:
697                                 break;
698                         }
699                 }
700                 /* if scanning is 1 then we have subdevices to check */
701                 if (scanning == 1) {
702                         maple_send();
703                         scanning = 2;
704                 } else
705                         scanning = 0;
706                 /*check if we have actually tested all ports yet */
707                 if (!fullscan)
708                         maple_port_rescan();
709                 /* mark that we have been through the first scan */
710                 started = 1;
711         }
712         maple_send();
713 }
714
715 static irqreturn_t maple_dma_interrupt(int irq, void *dev_id)
716 {
717         /* Load everything into the bottom half */
718         schedule_work(&maple_dma_process);
719         return IRQ_HANDLED;
720 }
721
722 static irqreturn_t maple_vblank_interrupt(int irq, void *dev_id)
723 {
724         schedule_work(&maple_vblank_process);
725         return IRQ_HANDLED;
726 }
727
728 static int maple_set_dma_interrupt_handler(void)
729 {
730         return request_irq(HW_EVENT_MAPLE_DMA, maple_dma_interrupt,
731                 IRQF_SHARED, "maple bus DMA", &maple_unsupported_device);
732 }
733
734 static int maple_set_vblank_interrupt_handler(void)
735 {
736         return request_irq(HW_EVENT_VSYNC, maple_vblank_interrupt,
737                 IRQF_SHARED, "maple bus VBLANK", &maple_unsupported_device);
738 }
739
740 static int maple_get_dma_buffer(void)
741 {
742         maple_sendbuf =
743             (void *) __get_free_pages(GFP_KERNEL | __GFP_ZERO,
744                                       MAPLE_DMA_PAGES);
745         if (!maple_sendbuf)
746                 return -ENOMEM;
747         return 0;
748 }
749
750 static int maple_match_bus_driver(struct device *devptr,
751                                   struct device_driver *drvptr)
752 {
753         struct maple_driver *maple_drv = to_maple_driver(drvptr);
754         struct maple_device *maple_dev = to_maple_dev(devptr);
755
756         /* Trap empty port case */
757         if (maple_dev->devinfo.function == 0xFFFFFFFF)
758                 return 0;
759         else if (maple_dev->devinfo.function &
760                  cpu_to_be32(maple_drv->function))
761                 return 1;
762         return 0;
763 }
764
765 static int maple_bus_uevent(struct device *dev,
766                             struct kobj_uevent_env *env)
767 {
768         return 0;
769 }
770
771 static void maple_bus_release(struct device *dev)
772 {
773 }
774
775 static struct maple_driver maple_unsupported_device = {
776         .drv = {
777                 .name = "maple_unsupported_device",
778                 .bus = &maple_bus_type,
779         },
780 };
781 /**
782  * maple_bus_type - core maple bus structure
783  */
784 struct bus_type maple_bus_type = {
785         .name = "maple",
786         .match = maple_match_bus_driver,
787         .uevent = maple_bus_uevent,
788 };
789 EXPORT_SYMBOL_GPL(maple_bus_type);
790
791 static struct device maple_bus = {
792         .bus_id = "maple",
793         .release = maple_bus_release,
794 };
795
796 static int __init maple_bus_init(void)
797 {
798         int retval, i;
799         struct maple_device *mdev[MAPLE_PORTS];
800
801         ctrl_outl(0, MAPLE_ENABLE);
802
803         retval = device_register(&maple_bus);
804         if (retval)
805                 goto cleanup;
806
807         retval = bus_register(&maple_bus_type);
808         if (retval)
809                 goto cleanup_device;
810
811         retval = driver_register(&maple_unsupported_device.drv);
812         if (retval)
813                 goto cleanup_bus;
814
815         /* allocate memory for maple bus dma */
816         retval = maple_get_dma_buffer();
817         if (retval) {
818                 dev_err(&maple_bus, "failed to allocate DMA buffers\n");
819                 goto cleanup_basic;
820         }
821
822         /* set up DMA interrupt handler */
823         retval = maple_set_dma_interrupt_handler();
824         if (retval) {
825                 dev_err(&maple_bus, "bus failed to grab maple "
826                         "DMA IRQ\n");
827                 goto cleanup_dma;
828         }
829
830         /* set up VBLANK interrupt handler */
831         retval = maple_set_vblank_interrupt_handler();
832         if (retval) {
833                 dev_err(&maple_bus, "bus failed to grab VBLANK IRQ\n");
834                 goto cleanup_irq;
835         }
836
837         maple_queue_cache = KMEM_CACHE(maple_buffer, SLAB_HWCACHE_ALIGN);
838
839         if (!maple_queue_cache)
840                 goto cleanup_bothirqs;
841
842         INIT_LIST_HEAD(&maple_waitq);
843         INIT_LIST_HEAD(&maple_sentq);
844
845         /* setup maple ports */
846         for (i = 0; i < MAPLE_PORTS; i++) {
847                 checked[i] = false;
848                 empty[i] = false;
849                 mdev[i] = maple_alloc_dev(i, 0);
850                 if (!mdev[i]) {
851                         while (i-- > 0)
852                                 maple_free_dev(mdev[i]);
853                         goto cleanup_cache;
854                 }
855                 baseunits[i] = mdev[i];
856                 atomic_set(&mdev[i]->busy, 1);
857                 maple_add_packet(mdev[i], 0, MAPLE_COMMAND_DEVINFO, 0, NULL);
858                 subdevice_map[i] = 0;
859         }
860
861         maple_pnp_time = jiffies + HZ;
862         /* prepare initial queue */
863         maple_send();
864         dev_info(&maple_bus, "bus core now registered\n");
865
866         return 0;
867
868 cleanup_cache:
869         kmem_cache_destroy(maple_queue_cache);
870
871 cleanup_bothirqs:
872         free_irq(HW_EVENT_VSYNC, 0);
873
874 cleanup_irq:
875         free_irq(HW_EVENT_MAPLE_DMA, 0);
876
877 cleanup_dma:
878         free_pages((unsigned long) maple_sendbuf, MAPLE_DMA_PAGES);
879
880 cleanup_basic:
881         driver_unregister(&maple_unsupported_device.drv);
882
883 cleanup_bus:
884         bus_unregister(&maple_bus_type);
885
886 cleanup_device:
887         device_unregister(&maple_bus);
888
889 cleanup:
890         printk(KERN_ERR "Maple bus registration failed\n");
891         return retval;
892 }
893 /* Push init to later to ensure hardware gets detected */
894 fs_initcall(maple_bus_init);