Linux kernel & device driver programming

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Version: [ 2.6.11.8 ] [ 2.6.25 ] [ 2.6.25.8 ] [ 2.6.31.13 ] Architecture: [ i386 ]
  1 /*======================================================================
  2 
  3     Common support code for the PCMCIA control functionality of
  4     integrated SOCs like the SA-11x0 and PXA2xx microprocessors.
  5 
  6     The contents of this file are subject to the Mozilla Public
  7     License Version 1.1 (the "License"); you may not use this file
  8     except in compliance with the License. You may obtain a copy of
  9     the License at http://www.mozilla.org/MPL/
 10 
 11     Software distributed under the License is distributed on an "AS
 12     IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
 13     implied. See the License for the specific language governing
 14     rights and limitations under the License.
 15 
 16     The initial developer of the original code is John G. Dorsey
 17     <john+@cs.cmu.edu>.  Portions created by John G. Dorsey are
 18     Copyright (C) 1999 John G. Dorsey.  All Rights Reserved.
 19 
 20     Alternatively, the contents of this file may be used under the
 21     terms of the GNU Public License version 2 (the "GPL"), in which
 22     case the provisions of the GPL are applicable instead of the
 23     above.  If you wish to allow the use of your version of this file
 24     only under the terms of the GPL and not to allow others to use
 25     your version of this file under the MPL, indicate your decision
 26     by deleting the provisions above and replace them with the notice
 27     and other provisions required by the GPL.  If you do not delete
 28     the provisions above, a recipient may use your version of this
 29     file under either the MPL or the GPL.
 30 
 31 ======================================================================*/
 32 
 33 
 34 #include <linux/config.h>
 35 #include <linux/module.h>
 36 #include <linux/moduleparam.h>
 37 #include <linux/init.h>
 38 #include <linux/kernel.h>
 39 #include <linux/timer.h>
 40 #include <linux/mm.h>
 41 #include <linux/interrupt.h>
 42 #include <linux/spinlock.h>
 43 #include <linux/cpufreq.h>
 44 
 45 #include <asm/hardware.h>
 46 #include <asm/io.h>
 47 #include <asm/irq.h>
 48 #include <asm/system.h>
 49 
 50 #include "soc_common.h"
 51 
 52 /* FIXME: platform dependent resource declaration has to move out of this file */
 53 #ifdef CONFIG_ARCH_PXA
 54 #include <asm/arch/pxa-regs.h>
 55 #endif
 56 
 57 #ifdef DEBUG
 58 
 59 static int pc_debug;
 60 module_param(pc_debug, int, 0644);
 61 
 62 void soc_pcmcia_debug(struct soc_pcmcia_socket *skt, const char *func,
 63                       int lvl, const char *fmt, ...)
 64 {
 65         va_list args;
 66         if (pc_debug > lvl) {
 67                 printk(KERN_DEBUG "skt%u: %s: ", skt->nr, func);
 68                 va_start(args, fmt);
 69                 printk(fmt, args);
 70                 va_end(args);
 71         }
 72 }
 73 
 74 #endif
 75 
 76 #define to_soc_pcmcia_socket(x) container_of(x, struct soc_pcmcia_socket, socket)
 77 
 78 static unsigned short
 79 calc_speed(unsigned short *spds, int num, unsigned short dflt)
 80 {
 81         unsigned short speed = 0;
 82         int i;
 83 
 84         for (i = 0; i < num; i++)
 85                 if (speed < spds[i])
 86                         speed = spds[i];
 87         if (speed == 0)
 88                 speed = dflt;
 89 
 90         return speed;
 91 }
 92 
 93 void soc_common_pcmcia_get_timing(struct soc_pcmcia_socket *skt, struct soc_pcmcia_timing *timing)
 94 {
 95         timing->io = calc_speed(skt->spd_io, MAX_IO_WIN, SOC_PCMCIA_IO_ACCESS);
 96         timing->mem = calc_speed(skt->spd_mem, MAX_WIN, SOC_PCMCIA_3V_MEM_ACCESS);
 97         timing->attr = calc_speed(skt->spd_attr, MAX_WIN, SOC_PCMCIA_3V_MEM_ACCESS);
 98 }
 99 EXPORT_SYMBOL(soc_common_pcmcia_get_timing);
100 
101 static unsigned int soc_common_pcmcia_skt_state(struct soc_pcmcia_socket *skt)
102 {
103         struct pcmcia_state state;
104         unsigned int stat;
105 
106         memset(&state, 0, sizeof(struct pcmcia_state));
107 
108         skt->ops->socket_state(skt, &state);
109 
110         stat = state.detect  ? SS_DETECT : 0;
111         stat |= state.ready  ? SS_READY  : 0;
112         stat |= state.wrprot ? SS_WRPROT : 0;
113         stat |= state.vs_3v  ? SS_3VCARD : 0;
114         stat |= state.vs_Xv  ? SS_XVCARD : 0;
115 
116         /* The power status of individual sockets is not available
117          * explicitly from the hardware, so we just remember the state
118          * and regurgitate it upon request:
119          */
120         stat |= skt->cs_state.Vcc ? SS_POWERON : 0;
121 
122         if (skt->cs_state.flags & SS_IOCARD)
123                 stat |= state.bvd1 ? SS_STSCHG : 0;
124         else {
125                 if (state.bvd1 == 0)
126                         stat |= SS_BATDEAD;
127                 else if (state.bvd2 == 0)
128                         stat |= SS_BATWARN;
129         }
130         return stat;
131 }
132 
133 /*
134  * soc_common_pcmcia_config_skt
135  * ^^^^^^^^^^^^^^^^^^^^^^^^^^^^
136  *
137  * Convert PCMCIA socket state to our socket configure structure.
138  */
139 static int
140 soc_common_pcmcia_config_skt(struct soc_pcmcia_socket *skt, socket_state_t *state)
141 {
142         int ret;
143 
144         ret = skt->ops->configure_socket(skt, state);
145         if (ret == 0) {
146                 /*
147                  * This really needs a better solution.  The IRQ
148                  * may or may not be claimed by the driver.
149                  */
150                 if (skt->irq_state != 1 && state->io_irq) {
151                         skt->irq_state = 1;
152                         set_irq_type(skt->irq, IRQT_FALLING);
153                 } else if (skt->irq_state == 1 && state->io_irq == 0) {
154                         skt->irq_state = 0;
155                         set_irq_type(skt->irq, IRQT_NOEDGE);
156                 }
157 
158                 skt->cs_state = *state;
159         }
160 
161         if (ret < 0)
162                 printk(KERN_ERR "soc_common_pcmcia: unable to configure "
163                        "socket %d\n", skt->nr);
164 
165         return ret;
166 }
167 
168 /* soc_common_pcmcia_sock_init()
169  * ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
170  *
171  * (Re-)Initialise the socket, turning on status interrupts
172  * and PCMCIA bus.  This must wait for power to stabilise
173  * so that the card status signals report correctly.
174  *
175  * Returns: 0
176  */
177 static int soc_common_pcmcia_sock_init(struct pcmcia_socket *sock)
178 {
179         struct soc_pcmcia_socket *skt = to_soc_pcmcia_socket(sock);
180 
181         debug(skt, 2, "initializing socket\n");
182 
183         skt->ops->socket_init(skt);
184         return 0;
185 }
186 
187 
188 /*
189  * soc_common_pcmcia_suspend()
190  * ^^^^^^^^^^^^^^^^^^^^^^^^^^^
191  *
192  * Remove power on the socket, disable IRQs from the card.
193  * Turn off status interrupts, and disable the PCMCIA bus.
194  *
195  * Returns: 0
196  */
197 static int soc_common_pcmcia_suspend(struct pcmcia_socket *sock)
198 {
199         struct soc_pcmcia_socket *skt = to_soc_pcmcia_socket(sock);
200         int ret;
201 
202         debug(skt, 2, "suspending socket\n");
203 
204         ret = soc_common_pcmcia_config_skt(skt, &dead_socket);
205         if (ret == 0)
206                 skt->ops->socket_suspend(skt);
207 
208         return ret;
209 }
210 
211 static DEFINE_SPINLOCK(status_lock);
212 
213 static void soc_common_check_status(struct soc_pcmcia_socket *skt)
214 {
215         unsigned int events;
216 
217         debug(skt, 4, "entering PCMCIA monitoring thread\n");
218 
219         do {
220                 unsigned int status;
221                 unsigned long flags;
222 
223                 status = soc_common_pcmcia_skt_state(skt);
224 
225                 spin_lock_irqsave(&status_lock, flags);
226                 events = (status ^ skt->status) & skt->cs_state.csc_mask;
227                 skt->status = status;
228                 spin_unlock_irqrestore(&status_lock, flags);
229 
230                 debug(skt, 4, "events: %s%s%s%s%s%s\n",
231                         events == 0         ? "<NONE>"   : "",
232                         events & SS_DETECT  ? "DETECT "  : "",
233                         events & SS_READY   ? "READY "   : "",
234                         events & SS_BATDEAD ? "BATDEAD " : "",
235                         events & SS_BATWARN ? "BATWARN " : "",
236                         events & SS_STSCHG  ? "STSCHG "  : "");
237 
238                 if (events)
239                         pcmcia_parse_events(&skt->socket, events);
240         } while (events);
241 }
242 
243 /* Let's poll for events in addition to IRQs since IRQ only is unreliable... */
244 static void soc_common_pcmcia_poll_event(unsigned long dummy)
245 {
246         struct soc_pcmcia_socket *skt = (struct soc_pcmcia_socket *)dummy;
247         debug(skt, 4, "polling for events\n");
248 
249         mod_timer(&skt->poll_timer, jiffies + SOC_PCMCIA_POLL_PERIOD);
250 
251         soc_common_check_status(skt);
252 }
253 
254 
255 /*
256  * Service routine for socket driver interrupts (requested by the
257  * low-level PCMCIA init() operation via soc_common_pcmcia_thread()).
258  * The actual interrupt-servicing work is performed by
259  * soc_common_pcmcia_thread(), largely because the Card Services event-
260  * handling code performs scheduling operations which cannot be
261  * executed from within an interrupt context.
262  */
263 static irqreturn_t soc_common_pcmcia_interrupt(int irq, void *dev, struct pt_regs *regs)
264 {
265         struct soc_pcmcia_socket *skt = dev;
266 
267         debug(skt, 3, "servicing IRQ %d\n", irq);
268 
269         soc_common_check_status(skt);
270 
271         return IRQ_HANDLED;
272 }
273 
274 
275 /*
276  *  Implements the get_status() operation for the in-kernel PCMCIA
277  * service (formerly SS_GetStatus in Card Services). Essentially just
278  * fills in bits in `status' according to internal driver state or
279  * the value of the voltage detect chipselect register.
280  *
281  * As a debugging note, during card startup, the PCMCIA core issues
282  * three set_socket() commands in a row the first with RESET deasserted,
283  * the second with RESET asserted, and the last with RESET deasserted
284  * again. Following the third set_socket(), a get_status() command will
285  * be issued. The kernel is looking for the SS_READY flag (see
286  * setup_socket(), reset_socket(), and unreset_socket() in cs.c).
287  *
288  * Returns: 0
289  */
290 static int
291 soc_common_pcmcia_get_status(struct pcmcia_socket *sock, unsigned int *status)
292 {
293         struct soc_pcmcia_socket *skt = to_soc_pcmcia_socket(sock);
294 
295         skt->status = soc_common_pcmcia_skt_state(skt);
296         *status = skt->status;
297 
298         return 0;
299 }
300 
301 
302 /*
303  * Implements the get_socket() operation for the in-kernel PCMCIA
304  * service (formerly SS_GetSocket in Card Services). Not a very
305  * exciting routine.
306  *
307  * Returns: 0
308  */
309 static int
310 soc_common_pcmcia_get_socket(struct pcmcia_socket *sock, socket_state_t *state)
311 {
312         struct soc_pcmcia_socket *skt = to_soc_pcmcia_socket(sock);
313 
314         debug(skt, 2, "\n");
315 
316         *state = skt->cs_state;
317 
318         return 0;
319 }
320 
321 /*
322  * Implements the set_socket() operation for the in-kernel PCMCIA
323  * service (formerly SS_SetSocket in Card Services). We more or
324  * less punt all of this work and let the kernel handle the details
325  * of power configuration, reset, &c. We also record the value of
326  * `state' in order to regurgitate it to the PCMCIA core later.
327  *
328  * Returns: 0
329  */
330 static int
331 soc_common_pcmcia_set_socket(struct pcmcia_socket *sock, socket_state_t *state)
332 {
333         struct soc_pcmcia_socket *skt = to_soc_pcmcia_socket(sock);
334 
335         debug(skt, 2, "mask: %s%s%s%s%s%sflags: %s%s%s%s%s%sVcc %d Vpp %d irq %d\n",
336                         (state->csc_mask==0)?"<NONE> ":"",
337                         (state->csc_mask&SS_DETECT)?"DETECT ":"",
338                         (state->csc_mask&SS_READY)?"READY ":"",
339                         (state->csc_mask&SS_BATDEAD)?"BATDEAD ":"",
340                         (state->csc_mask&SS_BATWARN)?"BATWARN ":"",
341                         (state->csc_mask&SS_STSCHG)?"STSCHG ":"",
342                         (state->flags==0)?"<NONE> ":"",
343                         (state->flags&SS_PWR_AUTO)?"PWR_AUTO ":"",
344                         (state->flags&SS_IOCARD)?"IOCARD ":"",
345                         (state->flags&SS_RESET)?"RESET ":"",
346                         (state->flags&SS_SPKR_ENA)?"SPKR_ENA ":"",
347                         (state->flags&SS_OUTPUT_ENA)?"OUTPUT_ENA ":"",
348                         state->Vcc, state->Vpp, state->io_irq);
349 
350         return soc_common_pcmcia_config_skt(skt, state);
351 }
352 
353 
354 /*
355  * Implements the set_io_map() operation for the in-kernel PCMCIA
356  * service (formerly SS_SetIOMap in Card Services). We configure
357  * the map speed as requested, but override the address ranges
358  * supplied by Card Services.
359  *
360  * Returns: 0 on success, -1 on error
361  */
362 static int
363 soc_common_pcmcia_set_io_map(struct pcmcia_socket *sock, struct pccard_io_map *map)
364 {
365         struct soc_pcmcia_socket *skt = to_soc_pcmcia_socket(sock);
366         unsigned short speed = map->speed;
367 
368         debug(skt, 2, "map %u  speed %u start 0x%08x stop 0x%08x\n",
369                 map->map, map->speed, map->start, map->stop);
370         debug(skt, 2, "flags: %s%s%s%s%s%s%s%s\n",
371                 (map->flags==0)?"<NONE>":"",
372                 (map->flags&MAP_ACTIVE)?"ACTIVE ":"",
373                 (map->flags&MAP_16BIT)?"16BIT ":"",
374                 (map->flags&MAP_AUTOSZ)?"AUTOSZ ":"",
375                 (map->flags&MAP_0WS)?"0WS ":"",
376                 (map->flags&MAP_WRPROT)?"WRPROT ":"",
377                 (map->flags&MAP_USE_WAIT)?"USE_WAIT ":"",
378                 (map->flags&MAP_PREFETCH)?"PREFETCH ":"");
379 
380         if (map->map >= MAX_IO_WIN) {
381                 printk(KERN_ERR "%s(): map (%d) out of range\n", __FUNCTION__,
382                        map->map);
383                 return -1;
384         }
385 
386         if (map->flags & MAP_ACTIVE) {
387                 if (speed == 0)
388                         speed = SOC_PCMCIA_IO_ACCESS;
389         } else {
390                 speed = 0;
391         }
392 
393         skt->spd_io[map->map] = speed;
394         skt->ops->set_timing(skt);
395 
396         if (map->stop == 1)
397                 map->stop = PAGE_SIZE-1;
398 
399         map->stop -= map->start;
400         map->stop += skt->socket.io_offset;
401         map->start = skt->socket.io_offset;
402 
403         return 0;
404 }
405 
406 
407 /*
408  * Implements the set_mem_map() operation for the in-kernel PCMCIA
409  * service (formerly SS_SetMemMap in Card Services). We configure
410  * the map speed as requested, but override the address ranges
411  * supplied by Card Services.
412  *
413  * Returns: 0 on success, -1 on error
414  */
415 static int
416 soc_common_pcmcia_set_mem_map(struct pcmcia_socket *sock, struct pccard_mem_map *map)
417 {
418         struct soc_pcmcia_socket *skt = to_soc_pcmcia_socket(sock);
419         struct resource *res;
420         unsigned short speed = map->speed;
421 
422         debug(skt, 2, "map %u speed %u card_start %08x\n",
423                 map->map, map->speed, map->card_start);
424         debug(skt, 2, "flags: %s%s%s%s%s%s%s%s\n",
425                 (map->flags==0)?"<NONE>":"",
426                 (map->flags&MAP_ACTIVE)?"ACTIVE ":"",
427                 (map->flags&MAP_16BIT)?"16BIT ":"",
428                 (map->flags&MAP_AUTOSZ)?"AUTOSZ ":"",
429                 (map->flags&MAP_0WS)?"0WS ":"",
430                 (map->flags&MAP_WRPROT)?"WRPROT ":"",
431                 (map->flags&MAP_ATTRIB)?"ATTRIB ":"",
432                 (map->flags&MAP_USE_WAIT)?"USE_WAIT ":"");
433 
434         if (map->map >= MAX_WIN)
435                 return -EINVAL;
436 
437         if (map->flags & MAP_ACTIVE) {
438                 if (speed == 0)
439                         speed = 300;
440         } else {
441                 speed = 0;
442         }
443 
444         if (map->flags & MAP_ATTRIB) {
445                 res = &skt->res_attr;
446                 skt->spd_attr[map->map] = speed;
447                 skt->spd_mem[map->map] = 0;
448         } else {
449                 res = &skt->res_mem;
450                 skt->spd_attr[map->map] = 0;
451                 skt->spd_mem[map->map] = speed;
452         }
453 
454         skt->ops->set_timing(skt);
455 
456         map->static_start = res->start + map->card_start;
457 
458         return 0;
459 }
460 
461 struct bittbl {
462         unsigned int mask;
463         const char *name;
464 };
465 
466 static struct bittbl status_bits[] = {
467         { SS_WRPROT,            "SS_WRPROT"     },
468         { SS_BATDEAD,           "SS_BATDEAD"    },
469         { SS_BATWARN,           "SS_BATWARN"    },
470         { SS_READY,             "SS_READY"      },
471         { SS_DETECT,            "SS_DETECT"     },
472         { SS_POWERON,           "SS_POWERON"    },
473         { SS_STSCHG,            "SS_STSCHG"     },
474         { SS_3VCARD,            "SS_3VCARD"     },
475         { SS_XVCARD,            "SS_XVCARD"     },
476 };
477 
478 static struct bittbl conf_bits[] = {
479         { SS_PWR_AUTO,          "SS_PWR_AUTO"   },
480         { SS_IOCARD,            "SS_IOCARD"     },
481         { SS_RESET,             "SS_RESET"      },
482         { SS_DMA_MODE,          "SS_DMA_MODE"   },
483         { SS_SPKR_ENA,          "SS_SPKR_ENA"   },
484         { SS_OUTPUT_ENA,        "SS_OUTPUT_ENA" },
485 };
486 
487 static void
488 dump_bits(char **p, const char *prefix, unsigned int val, struct bittbl *bits, int sz)
489 {
490         char *b = *p;
491         int i;
492 
493         b += sprintf(b, "%-9s:", prefix);
494         for (i = 0; i < sz; i++)
495                 if (val & bits[i].mask)
496                         b += sprintf(b, " %s", bits[i].name);
497         *b++ = '\n';
498         *p = b;
499 }
500 
501 /*
502  * Implements the /sys/class/pcmcia_socket/??/status file.
503  *
504  * Returns: the number of characters added to the buffer
505  */
506 static ssize_t show_status(struct class_device *class_dev, char *buf)
507 {
508         struct soc_pcmcia_socket *skt =
509                 container_of(class_dev, struct soc_pcmcia_socket, socket.dev);
510         char *p = buf;
511 
512         p+=sprintf(p, "slot     : %d\n", skt->nr);
513 
514         dump_bits(&p, "status", skt->status,
515                   status_bits, ARRAY_SIZE(status_bits));
516         dump_bits(&p, "csc_mask", skt->cs_state.csc_mask,
517                   status_bits, ARRAY_SIZE(status_bits));
518         dump_bits(&p, "cs_flags", skt->cs_state.flags,
519                   conf_bits, ARRAY_SIZE(conf_bits));
520 
521         p+=sprintf(p, "Vcc      : %d\n", skt->cs_state.Vcc);
522         p+=sprintf(p, "Vpp      : %d\n", skt->cs_state.Vpp);
523         p+=sprintf(p, "IRQ      : %d (%d)\n", skt->cs_state.io_irq, skt->irq);
524         if (skt->ops->show_timing)
525                 p+=skt->ops->show_timing(skt, p);
526 
527         return p-buf;
528 }
529 static CLASS_DEVICE_ATTR(status, S_IRUGO, show_status, NULL);
530 
531 
532 static struct pccard_operations soc_common_pcmcia_operations = {
533         .init                   = soc_common_pcmcia_sock_init,
534         .suspend                = soc_common_pcmcia_suspend,
535         .get_status             = soc_common_pcmcia_get_status,
536         .get_socket             = soc_common_pcmcia_get_socket,
537         .set_socket             = soc_common_pcmcia_set_socket,
538         .set_io_map             = soc_common_pcmcia_set_io_map,
539         .set_mem_map            = soc_common_pcmcia_set_mem_map,
540 };
541 
542 
543 int soc_pcmcia_request_irqs(struct soc_pcmcia_socket *skt,
544                             struct pcmcia_irqs *irqs, int nr)
545 {
546         int i, res = 0;
547 
548         for (i = 0; i < nr; i++) {
549                 if (irqs[i].sock != skt->nr)
550                         continue;
551                 res = request_irq(irqs[i].irq, soc_common_pcmcia_interrupt,
552                                   SA_INTERRUPT, irqs[i].str, skt);
553                 if (res)
554                         break;
555                 set_irq_type(irqs[i].irq, IRQT_NOEDGE);
556         }
557 
558         if (res) {
559                 printk(KERN_ERR "PCMCIA: request for IRQ%d failed (%d)\n",
560                         irqs[i].irq, res);
561 
562                 while (i--)
563                         if (irqs[i].sock == skt->nr)
564                                 free_irq(irqs[i].irq, skt);
565         }
566         return res;
567 }
568 EXPORT_SYMBOL(soc_pcmcia_request_irqs);
569 
570 void soc_pcmcia_free_irqs(struct soc_pcmcia_socket *skt,
571                           struct pcmcia_irqs *irqs, int nr)
572 {
573         int i;
574 
575         for (i = 0; i < nr; i++)
576                 if (irqs[i].sock == skt->nr)
577                         free_irq(irqs[i].irq, skt);
578 }
579 EXPORT_SYMBOL(soc_pcmcia_free_irqs);
580 
581 void soc_pcmcia_disable_irqs(struct soc_pcmcia_socket *skt,
582                              struct pcmcia_irqs *irqs, int nr)
583 {
584         int i;
585 
586         for (i = 0; i < nr; i++)
587                 if (irqs[i].sock == skt->nr)
588                         set_irq_type(irqs[i].irq, IRQT_NOEDGE);
589 }
590 EXPORT_SYMBOL(soc_pcmcia_disable_irqs);
591 
592 void soc_pcmcia_enable_irqs(struct soc_pcmcia_socket *skt,
593                             struct pcmcia_irqs *irqs, int nr)
594 {
595         int i;
596 
597         for (i = 0; i < nr; i++)
598                 if (irqs[i].sock == skt->nr) {
599                         set_irq_type(irqs[i].irq, IRQT_RISING);
600                         set_irq_type(irqs[i].irq, IRQT_BOTHEDGE);
601                 }
602 }
603 EXPORT_SYMBOL(soc_pcmcia_enable_irqs);
604 
605 
606 LIST_HEAD(soc_pcmcia_sockets);
607 DECLARE_MUTEX(soc_pcmcia_sockets_lock);
608 
609 static const char *skt_names[] = {
610         "PCMCIA socket 0",
611         "PCMCIA socket 1",
612 };
613 
614 struct skt_dev_info {
615         int nskt;
616         struct soc_pcmcia_socket skt[0];
617 };
618 
619 #define SKT_DEV_INFO_SIZE(n) \
620         (sizeof(struct skt_dev_info) + (n)*sizeof(struct soc_pcmcia_socket))
621 
622 #ifdef CONFIG_CPU_FREQ
623 static int
624 soc_pcmcia_notifier(struct notifier_block *nb, unsigned long val, void *data)
625 {
626         struct soc_pcmcia_socket *skt;
627         struct cpufreq_freqs *freqs = data;
628         int ret = 0;
629 
630         down(&soc_pcmcia_sockets_lock);
631         list_for_each_entry(skt, &soc_pcmcia_sockets, node)
632                 if ( skt->ops->frequency_change )
633                         ret += skt->ops->frequency_change(skt, val, freqs);
634         up(&soc_pcmcia_sockets_lock);
635 
636         return ret;
637 }
638 
639 static struct notifier_block soc_pcmcia_notifier_block = {
640         .notifier_call  = soc_pcmcia_notifier
641 };
642 
643 static int soc_pcmcia_cpufreq_register(void)
644 {
645         int ret;
646 
647         ret = cpufreq_register_notifier(&soc_pcmcia_notifier_block,
648                                         CPUFREQ_TRANSITION_NOTIFIER);
649         if (ret < 0)
650                 printk(KERN_ERR "Unable to register CPU frequency change "
651                                 "notifier for PCMCIA (%d)\n", ret);
652         return ret;
653 }
654 
655 static void soc_pcmcia_cpufreq_unregister(void)
656 {
657         cpufreq_unregister_notifier(&soc_pcmcia_notifier_block, CPUFREQ_TRANSITION_NOTIFIER);
658 }
659 
660 #else
661 #define soc_pcmcia_cpufreq_register()
662 #define soc_pcmcia_cpufreq_unregister()
663 #endif
664 
665 int soc_common_drv_pcmcia_probe(struct device *dev, struct pcmcia_low_level *ops, int first, int nr)
666 {
667         struct skt_dev_info *sinfo;
668         struct soc_pcmcia_socket *skt;
669         int ret, i;
670 
671         down(&soc_pcmcia_sockets_lock);
672 
673         sinfo = kmalloc(SKT_DEV_INFO_SIZE(nr), GFP_KERNEL);
674         if (!sinfo) {
675                 ret = -ENOMEM;
676                 goto out;
677         }
678 
679         memset(sinfo, 0, SKT_DEV_INFO_SIZE(nr));
680         sinfo->nskt = nr;
681 
682         /*
683          * Initialise the per-socket structure.
684          */
685         for (i = 0; i < nr; i++) {
686                 skt = &sinfo->skt[i];
687 
688                 skt->socket.ops = &soc_common_pcmcia_operations;
689                 skt->socket.owner = ops->owner;
690                 skt->socket.dev.dev = dev;
691 
692                 init_timer(&skt->poll_timer);
693                 skt->poll_timer.function = soc_common_pcmcia_poll_event;
694                 skt->poll_timer.data = (unsigned long)skt;
695                 skt->poll_timer.expires = jiffies + SOC_PCMCIA_POLL_PERIOD;
696 
697                 skt->nr         = first + i;
698                 skt->irq        = NO_IRQ;
699                 skt->dev        = dev;
700                 skt->ops        = ops;
701 
702                 skt->res_skt.start      = _PCMCIA(skt->nr);
703                 skt->res_skt.end        = _PCMCIA(skt->nr) + PCMCIASp - 1;
704                 skt->res_skt.name       = skt_names[skt->nr];
705                 skt->res_skt.flags      = IORESOURCE_MEM;
706 
707                 ret = request_resource(&iomem_resource, &skt->res_skt);
708                 if (ret)
709                         goto out_err_1;
710 
711                 skt->res_io.start       = _PCMCIAIO(skt->nr);
712                 skt->res_io.end         = _PCMCIAIO(skt->nr) + PCMCIAIOSp - 1;
713                 skt->res_io.name        = "io";
714                 skt->res_io.flags       = IORESOURCE_MEM | IORESOURCE_BUSY;
715 
716                 ret = request_resource(&skt->res_skt, &skt->res_io);
717                 if (ret)
718                         goto out_err_2;
719 
720                 skt->res_mem.start      = _PCMCIAMem(skt->nr);
721                 skt->res_mem.end        = _PCMCIAMem(skt->nr) + PCMCIAMemSp - 1;
722                 skt->res_mem.name       = "memory";
723                 skt->res_mem.flags      = IORESOURCE_MEM;
724 
725                 ret = request_resource(&skt->res_skt, &skt->res_mem);
726                 if (ret)
727                         goto out_err_3;
728 
729                 skt->res_attr.start     = _PCMCIAAttr(skt->nr);
730                 skt->res_attr.end       = _PCMCIAAttr(skt->nr) + PCMCIAAttrSp - 1;
731                 skt->res_attr.name      = "attribute";
732                 skt->res_attr.flags     = IORESOURCE_MEM;
733 
734                 ret = request_resource(&skt->res_skt, &skt->res_attr);
735                 if (ret)
736                         goto out_err_4;
737 
738                 skt->virt_io = ioremap(skt->res_io.start, 0x10000);
739                 if (skt->virt_io == NULL) {
740                         ret = -ENOMEM;
741                         goto out_err_5;
742                 }
743 
744                 if ( list_empty(&soc_pcmcia_sockets) )
745                         soc_pcmcia_cpufreq_register();
746 
747                 list_add(&skt->node, &soc_pcmcia_sockets);
748 
749                 /*
750                  * We initialize default socket timing here, because
751                  * we are not guaranteed to see a SetIOMap operation at
752                  * runtime.
753                  */
754                 ops->set_timing(skt);
755 
756                 ret = ops->hw_init(skt);
757                 if (ret)
758                         goto out_err_6;
759 
760                 skt->socket.features = SS_CAP_STATIC_MAP|SS_CAP_PCCARD;
761                 skt->socket.resource_ops = &pccard_static_ops;
762                 skt->socket.irq_mask = 0;
763                 skt->socket.map_size = PAGE_SIZE;
764                 skt->socket.pci_irq = skt->irq;
765                 skt->socket.io_offset = (unsigned long)skt->virt_io;
766 
767                 skt->status = soc_common_pcmcia_skt_state(skt);
768 
769                 ret = pcmcia_register_socket(&skt->socket);
770                 if (ret)
771                         goto out_err_7;
772 
773                 WARN_ON(skt->socket.sock != i);
774 
775                 add_timer(&skt->poll_timer);
776 
777                 class_device_create_file(&skt->socket.dev, &class_device_attr_status);
778         }
779 
780         dev_set_drvdata(dev, sinfo);
781         ret = 0;
782         goto out;
783 
784         do {
785                 skt = &sinfo->skt[i];
786 
787                 del_timer_sync(&skt->poll_timer);
788                 pcmcia_unregister_socket(&skt->socket);
789 
790  out_err_7:
791                 flush_scheduled_work();
792 
793                 ops->hw_shutdown(skt);
794  out_err_6:
795                 list_del(&skt->node);
796                 iounmap(skt->virt_io);
797  out_err_5:
798                 release_resource(&skt->res_attr);
799  out_err_4:
800                 release_resource(&skt->res_mem);
801  out_err_3:
802                 release_resource(&skt->res_io);
803  out_err_2:
804                 release_resource(&skt->res_skt);
805  out_err_1:
806                 i--;
807         } while (i > 0);
808 
809         kfree(sinfo);
810 
811  out:
812         up(&soc_pcmcia_sockets_lock);
813         return ret;
814 }
815 
816 int soc_common_drv_pcmcia_remove(struct device *dev)
817 {
818         struct skt_dev_info *sinfo = dev_get_drvdata(dev);
819         int i;
820 
821         dev_set_drvdata(dev, NULL);
822 
823         down(&soc_pcmcia_sockets_lock);
824         for (i = 0; i < sinfo->nskt; i++) {
825                 struct soc_pcmcia_socket *skt = &sinfo->skt[i];
826 
827                 del_timer_sync(&skt->poll_timer);
828 
829                 pcmcia_unregister_socket(&skt->socket);
830 
831                 flush_scheduled_work();
832 
833                 skt->ops->hw_shutdown(skt);
834 
835                 soc_common_pcmcia_config_skt(skt, &dead_socket);
836 
837                 list_del(&skt->node);
838                 iounmap(skt->virt_io);
839                 skt->virt_io = NULL;
840                 release_resource(&skt->res_attr);
841                 release_resource(&skt->res_mem);
842                 release_resource(&skt->res_io);
843                 release_resource(&skt->res_skt);
844         }
845         if ( list_empty(&soc_pcmcia_sockets) )
846                 soc_pcmcia_cpufreq_unregister();
847 
848         up(&soc_pcmcia_sockets_lock);
849 
850         kfree(sinfo);
851 
852         return 0;
853 }
854 
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