[S390] cio: Use path verification for last path gone after vary off.
[pandora-kernel.git] / drivers / s390 / cio / chsc.c
1 /*
2  *  drivers/s390/cio/chsc.c
3  *   S/390 common I/O routines -- channel subsystem call
4  *
5  *    Copyright (C) 1999-2002 IBM Deutschland Entwicklung GmbH,
6  *                            IBM Corporation
7  *    Author(s): Ingo Adlung (adlung@de.ibm.com)
8  *               Cornelia Huck (cornelia.huck@de.ibm.com)
9  *               Arnd Bergmann (arndb@de.ibm.com)
10  */
11
12 #include <linux/module.h>
13 #include <linux/slab.h>
14 #include <linux/init.h>
15 #include <linux/device.h>
16
17 #include <asm/cio.h>
18
19 #include "css.h"
20 #include "cio.h"
21 #include "cio_debug.h"
22 #include "ioasm.h"
23 #include "chsc.h"
24
25 static void *sei_page;
26
27 static int new_channel_path(int chpid);
28
29 static inline void
30 set_chp_logically_online(int chp, int onoff)
31 {
32         css[0]->chps[chp]->state = onoff;
33 }
34
35 static int
36 get_chp_status(int chp)
37 {
38         return (css[0]->chps[chp] ? css[0]->chps[chp]->state : -ENODEV);
39 }
40
41 void
42 chsc_validate_chpids(struct subchannel *sch)
43 {
44         int mask, chp;
45
46         for (chp = 0; chp <= 7; chp++) {
47                 mask = 0x80 >> chp;
48                 if (!get_chp_status(sch->schib.pmcw.chpid[chp]))
49                         /* disable using this path */
50                         sch->opm &= ~mask;
51         }
52 }
53
54 void
55 chpid_is_actually_online(int chp)
56 {
57         int state;
58
59         state = get_chp_status(chp);
60         if (state < 0) {
61                 need_rescan = 1;
62                 queue_work(slow_path_wq, &slow_path_work);
63         } else
64                 WARN_ON(!state);
65 }
66
67 /* FIXME: this is _always_ called for every subchannel. shouldn't we
68  *        process more than one at a time? */
69 static int
70 chsc_get_sch_desc_irq(struct subchannel *sch, void *page)
71 {
72         int ccode, j;
73
74         struct {
75                 struct chsc_header request;
76                 u16 reserved1a:10;
77                 u16 ssid:2;
78                 u16 reserved1b:4;
79                 u16 f_sch;        /* first subchannel */
80                 u16 reserved2;
81                 u16 l_sch;        /* last subchannel */
82                 u32 reserved3;
83                 struct chsc_header response;
84                 u32 reserved4;
85                 u8 sch_valid : 1;
86                 u8 dev_valid : 1;
87                 u8 st        : 3; /* subchannel type */
88                 u8 zeroes    : 3;
89                 u8  unit_addr;    /* unit address */
90                 u16 devno;        /* device number */
91                 u8 path_mask;
92                 u8 fla_valid_mask;
93                 u16 sch;          /* subchannel */
94                 u8 chpid[8];      /* chpids 0-7 */
95                 u16 fla[8];       /* full link addresses 0-7 */
96         } *ssd_area;
97
98         ssd_area = page;
99
100         ssd_area->request.length = 0x0010;
101         ssd_area->request.code = 0x0004;
102
103         ssd_area->ssid = sch->schid.ssid;
104         ssd_area->f_sch = sch->schid.sch_no;
105         ssd_area->l_sch = sch->schid.sch_no;
106
107         ccode = chsc(ssd_area);
108         if (ccode > 0) {
109                 pr_debug("chsc returned with ccode = %d\n", ccode);
110                 return (ccode == 3) ? -ENODEV : -EBUSY;
111         }
112
113         switch (ssd_area->response.code) {
114         case 0x0001: /* everything ok */
115                 break;
116         case 0x0002:
117                 CIO_CRW_EVENT(2, "Invalid command!\n");
118                 return -EINVAL;
119         case 0x0003:
120                 CIO_CRW_EVENT(2, "Error in chsc request block!\n");
121                 return -EINVAL;
122         case 0x0004:
123                 CIO_CRW_EVENT(2, "Model does not provide ssd\n");
124                 return -EOPNOTSUPP;
125         default:
126                 CIO_CRW_EVENT(2, "Unknown CHSC response %d\n",
127                               ssd_area->response.code);
128                 return -EIO;
129         }
130
131         /*
132          * ssd_area->st stores the type of the detected
133          * subchannel, with the following definitions:
134          *
135          * 0: I/O subchannel:     All fields have meaning
136          * 1: CHSC subchannel:    Only sch_val, st and sch
137          *                        have meaning
138          * 2: Message subchannel: All fields except unit_addr
139          *                        have meaning
140          * 3: ADM subchannel:     Only sch_val, st and sch
141          *                        have meaning
142          *
143          * Other types are currently undefined.
144          */
145         if (ssd_area->st > 3) { /* uhm, that looks strange... */
146                 CIO_CRW_EVENT(0, "Strange subchannel type %d"
147                               " for sch 0.%x.%04x\n", ssd_area->st,
148                               sch->schid.ssid, sch->schid.sch_no);
149                 /*
150                  * There may have been a new subchannel type defined in the
151                  * time since this code was written; since we don't know which
152                  * fields have meaning and what to do with it we just jump out
153                  */
154                 return 0;
155         } else {
156                 const char *type[4] = {"I/O", "chsc", "message", "ADM"};
157                 CIO_CRW_EVENT(6, "ssd: sch 0.%x.%04x is %s subchannel\n",
158                               sch->schid.ssid, sch->schid.sch_no,
159                               type[ssd_area->st]);
160
161                 sch->ssd_info.valid = 1;
162                 sch->ssd_info.type = ssd_area->st;
163         }
164
165         if (ssd_area->st == 0 || ssd_area->st == 2) {
166                 for (j = 0; j < 8; j++) {
167                         if (!((0x80 >> j) & ssd_area->path_mask &
168                               ssd_area->fla_valid_mask))
169                                 continue;
170                         sch->ssd_info.chpid[j] = ssd_area->chpid[j];
171                         sch->ssd_info.fla[j]   = ssd_area->fla[j];
172                 }
173         }
174         return 0;
175 }
176
177 int
178 css_get_ssd_info(struct subchannel *sch)
179 {
180         int ret;
181         void *page;
182
183         page = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
184         if (!page)
185                 return -ENOMEM;
186         spin_lock_irq(&sch->lock);
187         ret = chsc_get_sch_desc_irq(sch, page);
188         if (ret) {
189                 static int cio_chsc_err_msg;
190                 
191                 if (!cio_chsc_err_msg) {
192                         printk(KERN_ERR
193                                "chsc_get_sch_descriptions:"
194                                " Error %d while doing chsc; "
195                                "processing some machine checks may "
196                                "not work\n", ret);
197                         cio_chsc_err_msg = 1;
198                 }
199         }
200         spin_unlock_irq(&sch->lock);
201         free_page((unsigned long)page);
202         if (!ret) {
203                 int j, chpid, mask;
204                 /* Allocate channel path structures, if needed. */
205                 for (j = 0; j < 8; j++) {
206                         mask = 0x80 >> j;
207                         chpid = sch->ssd_info.chpid[j];
208                         if ((sch->schib.pmcw.pim & mask) &&
209                             (get_chp_status(chpid) < 0))
210                             new_channel_path(chpid);
211                 }
212         }
213         return ret;
214 }
215
216 static int
217 s390_subchannel_remove_chpid(struct device *dev, void *data)
218 {
219         int j;
220         int mask;
221         struct subchannel *sch;
222         struct channel_path *chpid;
223         struct schib schib;
224
225         sch = to_subchannel(dev);
226         chpid = data;
227         for (j = 0; j < 8; j++) {
228                 mask = 0x80 >> j;
229                 if ((sch->schib.pmcw.pim & mask) &&
230                     (sch->schib.pmcw.chpid[j] == chpid->id))
231                         break;
232         }
233         if (j >= 8)
234                 return 0;
235
236         spin_lock_irq(&sch->lock);
237
238         stsch(sch->schid, &schib);
239         if (!schib.pmcw.dnv)
240                 goto out_unreg;
241         memcpy(&sch->schib, &schib, sizeof(struct schib));
242         /* Check for single path devices. */
243         if (sch->schib.pmcw.pim == 0x80)
244                 goto out_unreg;
245
246         if ((sch->schib.scsw.actl & SCSW_ACTL_DEVACT) &&
247             (sch->schib.scsw.actl & SCSW_ACTL_SCHACT) &&
248             (sch->schib.pmcw.lpum == mask)) {
249                 int cc;
250
251                 cc = cio_clear(sch);
252                 if (cc == -ENODEV)
253                         goto out_unreg;
254                 /* Call handler. */
255                 if (sch->driver && sch->driver->termination)
256                         sch->driver->termination(&sch->dev);
257                 goto out_unlock;
258         }
259
260         /* trigger path verification. */
261         if (sch->driver && sch->driver->verify)
262                 sch->driver->verify(&sch->dev);
263         else if (sch->lpm == mask)
264                 goto out_unreg;
265 out_unlock:
266         spin_unlock_irq(&sch->lock);
267         return 0;
268 out_unreg:
269         spin_unlock_irq(&sch->lock);
270         sch->lpm = 0;
271         if (css_enqueue_subchannel_slow(sch->schid)) {
272                 css_clear_subchannel_slow_list();
273                 need_rescan = 1;
274         }
275         return 0;
276 }
277
278 static inline void
279 s390_set_chpid_offline( __u8 chpid)
280 {
281         char dbf_txt[15];
282         struct device *dev;
283
284         sprintf(dbf_txt, "chpr%x", chpid);
285         CIO_TRACE_EVENT(2, dbf_txt);
286
287         if (get_chp_status(chpid) <= 0)
288                 return;
289         dev = get_device(&css[0]->chps[chpid]->dev);
290         bus_for_each_dev(&css_bus_type, NULL, to_channelpath(dev),
291                          s390_subchannel_remove_chpid);
292
293         if (need_rescan || css_slow_subchannels_exist())
294                 queue_work(slow_path_wq, &slow_path_work);
295         put_device(dev);
296 }
297
298 struct res_acc_data {
299         struct channel_path *chp;
300         u32 fla_mask;
301         u16 fla;
302 };
303
304 static int
305 s390_process_res_acc_sch(struct res_acc_data *res_data, struct subchannel *sch)
306 {
307         int found;
308         int chp;
309         int ccode;
310         
311         found = 0;
312         for (chp = 0; chp <= 7; chp++)
313                 /*
314                  * check if chpid is in information updated by ssd
315                  */
316                 if (sch->ssd_info.valid &&
317                     sch->ssd_info.chpid[chp] == res_data->chp->id &&
318                     (sch->ssd_info.fla[chp] & res_data->fla_mask)
319                     == res_data->fla) {
320                         found = 1;
321                         break;
322                 }
323         
324         if (found == 0)
325                 return 0;
326
327         /*
328          * Do a stsch to update our subchannel structure with the
329          * new path information and eventually check for logically
330          * offline chpids.
331          */
332         ccode = stsch(sch->schid, &sch->schib);
333         if (ccode > 0)
334                 return 0;
335
336         return 0x80 >> chp;
337 }
338
339 static inline int
340 s390_process_res_acc_new_sch(struct subchannel_id schid)
341 {
342         struct schib schib;
343         int ret;
344         /*
345          * We don't know the device yet, but since a path
346          * may be available now to the device we'll have
347          * to do recognition again.
348          * Since we don't have any idea about which chpid
349          * that beast may be on we'll have to do a stsch
350          * on all devices, grr...
351          */
352         if (stsch_err(schid, &schib))
353                 /* We're through */
354                 return need_rescan ? -EAGAIN : -ENXIO;
355
356         /* Put it on the slow path. */
357         ret = css_enqueue_subchannel_slow(schid);
358         if (ret) {
359                 css_clear_subchannel_slow_list();
360                 need_rescan = 1;
361                 return -EAGAIN;
362         }
363         return 0;
364 }
365
366 static int
367 __s390_process_res_acc(struct subchannel_id schid, void *data)
368 {
369         int chp_mask, old_lpm;
370         struct res_acc_data *res_data;
371         struct subchannel *sch;
372
373         res_data = data;
374         sch = get_subchannel_by_schid(schid);
375         if (!sch)
376                 /* Check if a subchannel is newly available. */
377                 return s390_process_res_acc_new_sch(schid);
378
379         spin_lock_irq(&sch->lock);
380
381         chp_mask = s390_process_res_acc_sch(res_data, sch);
382
383         if (chp_mask == 0) {
384                 spin_unlock_irq(&sch->lock);
385                 put_device(&sch->dev);
386                 return 0;
387         }
388         old_lpm = sch->lpm;
389         sch->lpm = ((sch->schib.pmcw.pim &
390                      sch->schib.pmcw.pam &
391                      sch->schib.pmcw.pom)
392                     | chp_mask) & sch->opm;
393         if (!old_lpm && sch->lpm)
394                 device_trigger_reprobe(sch);
395         else if (sch->driver && sch->driver->verify)
396                 sch->driver->verify(&sch->dev);
397
398         spin_unlock_irq(&sch->lock);
399         put_device(&sch->dev);
400         return 0;
401 }
402
403
404 static int
405 s390_process_res_acc (struct res_acc_data *res_data)
406 {
407         int rc;
408         char dbf_txt[15];
409
410         sprintf(dbf_txt, "accpr%x", res_data->chp->id);
411         CIO_TRACE_EVENT( 2, dbf_txt);
412         if (res_data->fla != 0) {
413                 sprintf(dbf_txt, "fla%x", res_data->fla);
414                 CIO_TRACE_EVENT( 2, dbf_txt);
415         }
416
417         /*
418          * I/O resources may have become accessible.
419          * Scan through all subchannels that may be concerned and
420          * do a validation on those.
421          * The more information we have (info), the less scanning
422          * will we have to do.
423          */
424         rc = for_each_subchannel(__s390_process_res_acc, res_data);
425         if (css_slow_subchannels_exist())
426                 rc = -EAGAIN;
427         else if (rc != -EAGAIN)
428                 rc = 0;
429         return rc;
430 }
431
432 static int
433 __get_chpid_from_lir(void *data)
434 {
435         struct lir {
436                 u8  iq;
437                 u8  ic;
438                 u16 sci;
439                 /* incident-node descriptor */
440                 u32 indesc[28];
441                 /* attached-node descriptor */
442                 u32 andesc[28];
443                 /* incident-specific information */
444                 u32 isinfo[28];
445         } *lir;
446
447         lir = data;
448         if (!(lir->iq&0x80))
449                 /* NULL link incident record */
450                 return -EINVAL;
451         if (!(lir->indesc[0]&0xc0000000))
452                 /* node descriptor not valid */
453                 return -EINVAL;
454         if (!(lir->indesc[0]&0x10000000))
455                 /* don't handle device-type nodes - FIXME */
456                 return -EINVAL;
457         /* Byte 3 contains the chpid. Could also be CTCA, but we don't care */
458
459         return (u16) (lir->indesc[0]&0x000000ff);
460 }
461
462 int
463 chsc_process_crw(void)
464 {
465         int chpid, ret;
466         struct res_acc_data res_data;
467         struct {
468                 struct chsc_header request;
469                 u32 reserved1;
470                 u32 reserved2;
471                 u32 reserved3;
472                 struct chsc_header response;
473                 u32 reserved4;
474                 u8  flags;
475                 u8  vf;         /* validity flags */
476                 u8  rs;         /* reporting source */
477                 u8  cc;         /* content code */
478                 u16 fla;        /* full link address */
479                 u16 rsid;       /* reporting source id */
480                 u32 reserved5;
481                 u32 reserved6;
482                 u32 ccdf[96];   /* content-code dependent field */
483                 /* ccdf has to be big enough for a link-incident record */
484         } *sei_area;
485
486         if (!sei_page)
487                 return 0;
488         /*
489          * build the chsc request block for store event information
490          * and do the call
491          * This function is only called by the machine check handler thread,
492          * so we don't need locking for the sei_page.
493          */
494         sei_area = sei_page;
495
496         CIO_TRACE_EVENT( 2, "prcss");
497         ret = 0;
498         do {
499                 int ccode, status;
500                 struct device *dev;
501                 memset(sei_area, 0, sizeof(*sei_area));
502                 memset(&res_data, 0, sizeof(struct res_acc_data));
503                 sei_area->request.length = 0x0010;
504                 sei_area->request.code = 0x000e;
505
506                 ccode = chsc(sei_area);
507                 if (ccode > 0)
508                         return 0;
509
510                 switch (sei_area->response.code) {
511                         /* for debug purposes, check for problems */
512                 case 0x0001:
513                         CIO_CRW_EVENT(4, "chsc_process_crw: event information "
514                                         "successfully stored\n");
515                         break; /* everything ok */
516                 case 0x0002:
517                         CIO_CRW_EVENT(2,
518                                       "chsc_process_crw: invalid command!\n");
519                         return 0;
520                 case 0x0003:
521                         CIO_CRW_EVENT(2, "chsc_process_crw: error in chsc "
522                                       "request block!\n");
523                         return 0;
524                 case 0x0005:
525                         CIO_CRW_EVENT(2, "chsc_process_crw: no event "
526                                       "information stored\n");
527                         return 0;
528                 default:
529                         CIO_CRW_EVENT(2, "chsc_process_crw: chsc response %d\n",
530                                       sei_area->response.code);
531                         return 0;
532                 }
533
534                 /* Check if we might have lost some information. */
535                 if (sei_area->flags & 0x40)
536                         CIO_CRW_EVENT(2, "chsc_process_crw: Event information "
537                                        "has been lost due to overflow!\n");
538
539                 if (sei_area->rs != 4) {
540                         CIO_CRW_EVENT(2, "chsc_process_crw: reporting source "
541                                       "(%04X) isn't a chpid!\n",
542                                       sei_area->rsid);
543                         continue;
544                 }
545
546                 /* which kind of information was stored? */
547                 switch (sei_area->cc) {
548                 case 1: /* link incident*/
549                         CIO_CRW_EVENT(4, "chsc_process_crw: "
550                                       "channel subsystem reports link incident,"
551                                       " reporting source is chpid %x\n",
552                                       sei_area->rsid);
553                         chpid = __get_chpid_from_lir(sei_area->ccdf);
554                         if (chpid < 0)
555                                 CIO_CRW_EVENT(4, "%s: Invalid LIR, skipping\n",
556                                               __FUNCTION__);
557                         else
558                                 s390_set_chpid_offline(chpid);
559                         break;
560                         
561                 case 2: /* i/o resource accessibiliy */
562                         CIO_CRW_EVENT(4, "chsc_process_crw: "
563                                       "channel subsystem reports some I/O "
564                                       "devices may have become accessible\n");
565                         pr_debug("Data received after sei: \n");
566                         pr_debug("Validity flags: %x\n", sei_area->vf);
567                         
568                         /* allocate a new channel path structure, if needed */
569                         status = get_chp_status(sei_area->rsid);
570                         if (status < 0)
571                                 new_channel_path(sei_area->rsid);
572                         else if (!status)
573                                 break;
574                         dev = get_device(&css[0]->chps[sei_area->rsid]->dev);
575                         res_data.chp = to_channelpath(dev);
576                         pr_debug("chpid: %x", sei_area->rsid);
577                         if ((sei_area->vf & 0xc0) != 0) {
578                                 res_data.fla = sei_area->fla;
579                                 if ((sei_area->vf & 0xc0) == 0xc0) {
580                                         pr_debug(" full link addr: %x",
581                                                  sei_area->fla);
582                                         res_data.fla_mask = 0xffff;
583                                 } else {
584                                         pr_debug(" link addr: %x",
585                                                  sei_area->fla);
586                                         res_data.fla_mask = 0xff00;
587                                 }
588                         }
589                         ret = s390_process_res_acc(&res_data);
590                         pr_debug("\n\n");
591                         put_device(dev);
592                         break;
593                         
594                 default: /* other stuff */
595                         CIO_CRW_EVENT(4, "chsc_process_crw: event %d\n",
596                                       sei_area->cc);
597                         break;
598                 }
599         } while (sei_area->flags & 0x80);
600         return ret;
601 }
602
603 static inline int
604 __chp_add_new_sch(struct subchannel_id schid)
605 {
606         struct schib schib;
607         int ret;
608
609         if (stsch(schid, &schib))
610                 /* We're through */
611                 return need_rescan ? -EAGAIN : -ENXIO;
612
613         /* Put it on the slow path. */
614         ret = css_enqueue_subchannel_slow(schid);
615         if (ret) {
616                 css_clear_subchannel_slow_list();
617                 need_rescan = 1;
618                 return -EAGAIN;
619         }
620         return 0;
621 }
622
623
624 static int
625 __chp_add(struct subchannel_id schid, void *data)
626 {
627         int i, mask;
628         struct channel_path *chp;
629         struct subchannel *sch;
630
631         chp = data;
632         sch = get_subchannel_by_schid(schid);
633         if (!sch)
634                 /* Check if the subchannel is now available. */
635                 return __chp_add_new_sch(schid);
636         spin_lock_irq(&sch->lock);
637         for (i=0; i<8; i++) {
638                 mask = 0x80 >> i;
639                 if ((sch->schib.pmcw.pim & mask) &&
640                     (sch->schib.pmcw.chpid[i] == chp->id)) {
641                         if (stsch(sch->schid, &sch->schib) != 0) {
642                                 /* Endgame. */
643                                 spin_unlock_irq(&sch->lock);
644                                 return -ENXIO;
645                         }
646                         break;
647                 }
648         }
649         if (i==8) {
650                 spin_unlock_irq(&sch->lock);
651                 return 0;
652         }
653         sch->lpm = ((sch->schib.pmcw.pim &
654                      sch->schib.pmcw.pam &
655                      sch->schib.pmcw.pom)
656                     | mask) & sch->opm;
657
658         if (sch->driver && sch->driver->verify)
659                 sch->driver->verify(&sch->dev);
660
661         spin_unlock_irq(&sch->lock);
662         put_device(&sch->dev);
663         return 0;
664 }
665
666 static int
667 chp_add(int chpid)
668 {
669         int rc;
670         char dbf_txt[15];
671         struct device *dev;
672
673         if (!get_chp_status(chpid))
674                 return 0; /* no need to do the rest */
675         
676         sprintf(dbf_txt, "cadd%x", chpid);
677         CIO_TRACE_EVENT(2, dbf_txt);
678
679         dev = get_device(&css[0]->chps[chpid]->dev);
680         rc = for_each_subchannel(__chp_add, to_channelpath(dev));
681         if (css_slow_subchannels_exist())
682                 rc = -EAGAIN;
683         if (rc != -EAGAIN)
684                 rc = 0;
685         put_device(dev);
686         return rc;
687 }
688
689 /* 
690  * Handling of crw machine checks with channel path source.
691  */
692 int
693 chp_process_crw(int chpid, int on)
694 {
695         if (on == 0) {
696                 /* Path has gone. We use the link incident routine.*/
697                 s390_set_chpid_offline(chpid);
698                 return 0; /* De-register is async anyway. */
699         }
700         /*
701          * Path has come. Allocate a new channel path structure,
702          * if needed.
703          */
704         if (get_chp_status(chpid) < 0)
705                 new_channel_path(chpid);
706         /* Avoid the extra overhead in process_rec_acc. */
707         return chp_add(chpid);
708 }
709
710 static inline int check_for_io_on_path(struct subchannel *sch, int index)
711 {
712         int cc;
713
714         if (!device_is_online(sch))
715                 /* cio could be doing I/O. */
716                 return 0;
717         cc = stsch(sch->schid, &sch->schib);
718         if (cc)
719                 return 0;
720         if (sch->schib.scsw.actl && sch->schib.pmcw.lpum == (0x80 >> index))
721                 return 1;
722         return 0;
723 }
724
725 static inline void
726 __s390_subchannel_vary_chpid(struct subchannel *sch, __u8 chpid, int on)
727 {
728         int chp, old_lpm;
729         unsigned long flags;
730
731         if (!sch->ssd_info.valid)
732                 return;
733         
734         spin_lock_irqsave(&sch->lock, flags);
735         old_lpm = sch->lpm;
736         for (chp = 0; chp < 8; chp++) {
737                 if (sch->ssd_info.chpid[chp] != chpid)
738                         continue;
739
740                 if (on) {
741                         sch->opm |= (0x80 >> chp);
742                         sch->lpm |= (0x80 >> chp);
743                         if (!old_lpm)
744                                 device_trigger_reprobe(sch);
745                         else if (sch->driver && sch->driver->verify)
746                                 sch->driver->verify(&sch->dev);
747                         break;
748                 }
749                 sch->opm &= ~(0x80 >> chp);
750                 sch->lpm &= ~(0x80 >> chp);
751                 if (check_for_io_on_path(sch, chp))
752                         /* Path verification is done after killing. */
753                         device_kill_io(sch);
754                 else if (!sch->lpm) {
755                         if (device_trigger_verify(sch) != 0) {
756                                 if (css_enqueue_subchannel_slow(sch->schid)) {
757                                         css_clear_subchannel_slow_list();
758                                         need_rescan = 1;
759                                 }
760                         }
761                 } else if (sch->driver && sch->driver->verify)
762                         sch->driver->verify(&sch->dev);
763                 break;
764         }
765         spin_unlock_irqrestore(&sch->lock, flags);
766 }
767
768 static int
769 s390_subchannel_vary_chpid_off(struct device *dev, void *data)
770 {
771         struct subchannel *sch;
772         __u8 *chpid;
773
774         sch = to_subchannel(dev);
775         chpid = data;
776
777         __s390_subchannel_vary_chpid(sch, *chpid, 0);
778         return 0;
779 }
780
781 static int
782 s390_subchannel_vary_chpid_on(struct device *dev, void *data)
783 {
784         struct subchannel *sch;
785         __u8 *chpid;
786
787         sch = to_subchannel(dev);
788         chpid = data;
789
790         __s390_subchannel_vary_chpid(sch, *chpid, 1);
791         return 0;
792 }
793
794 static int
795 __s390_vary_chpid_on(struct subchannel_id schid, void *data)
796 {
797         struct schib schib;
798         struct subchannel *sch;
799
800         sch = get_subchannel_by_schid(schid);
801         if (sch) {
802                 put_device(&sch->dev);
803                 return 0;
804         }
805         if (stsch_err(schid, &schib))
806                 /* We're through */
807                 return -ENXIO;
808         /* Put it on the slow path. */
809         if (css_enqueue_subchannel_slow(schid)) {
810                 css_clear_subchannel_slow_list();
811                 need_rescan = 1;
812                 return -EAGAIN;
813         }
814         return 0;
815 }
816
817 /*
818  * Function: s390_vary_chpid
819  * Varies the specified chpid online or offline
820  */
821 static int
822 s390_vary_chpid( __u8 chpid, int on)
823 {
824         char dbf_text[15];
825         int status;
826
827         sprintf(dbf_text, on?"varyon%x":"varyoff%x", chpid);
828         CIO_TRACE_EVENT( 2, dbf_text);
829
830         status = get_chp_status(chpid);
831         if (status < 0) {
832                 printk(KERN_ERR "Can't vary unknown chpid %02X\n", chpid);
833                 return -EINVAL;
834         }
835
836         if (!on && !status) {
837                 printk(KERN_ERR "chpid %x is already offline\n", chpid);
838                 return -EINVAL;
839         }
840
841         set_chp_logically_online(chpid, on);
842
843         /*
844          * Redo PathVerification on the devices the chpid connects to
845          */
846
847         bus_for_each_dev(&css_bus_type, NULL, &chpid, on ?
848                          s390_subchannel_vary_chpid_on :
849                          s390_subchannel_vary_chpid_off);
850         if (on)
851                 /* Scan for new devices on varied on path. */
852                 for_each_subchannel(__s390_vary_chpid_on, NULL);
853         if (need_rescan || css_slow_subchannels_exist())
854                 queue_work(slow_path_wq, &slow_path_work);
855         return 0;
856 }
857
858 /*
859  * Channel measurement related functions
860  */
861 static ssize_t
862 chp_measurement_chars_read(struct kobject *kobj, char *buf, loff_t off,
863                            size_t count)
864 {
865         struct channel_path *chp;
866         unsigned int size;
867
868         chp = to_channelpath(container_of(kobj, struct device, kobj));
869         if (!chp->cmg_chars)
870                 return 0;
871
872         size = sizeof(struct cmg_chars);
873
874         if (off > size)
875                 return 0;
876         if (off + count > size)
877                 count = size - off;
878         memcpy(buf, chp->cmg_chars + off, count);
879         return count;
880 }
881
882 static struct bin_attribute chp_measurement_chars_attr = {
883         .attr = {
884                 .name = "measurement_chars",
885                 .mode = S_IRUSR,
886                 .owner = THIS_MODULE,
887         },
888         .size = sizeof(struct cmg_chars),
889         .read = chp_measurement_chars_read,
890 };
891
892 static void
893 chp_measurement_copy_block(struct cmg_entry *buf,
894                            struct channel_subsystem *css, int chpid)
895 {
896         void *area;
897         struct cmg_entry *entry, reference_buf;
898         int idx;
899
900         if (chpid < 128) {
901                 area = css->cub_addr1;
902                 idx = chpid;
903         } else {
904                 area = css->cub_addr2;
905                 idx = chpid - 128;
906         }
907         entry = area + (idx * sizeof(struct cmg_entry));
908         do {
909                 memcpy(buf, entry, sizeof(*entry));
910                 memcpy(&reference_buf, entry, sizeof(*entry));
911         } while (reference_buf.values[0] != buf->values[0]);
912 }
913
914 static ssize_t
915 chp_measurement_read(struct kobject *kobj, char *buf, loff_t off, size_t count)
916 {
917         struct channel_path *chp;
918         struct channel_subsystem *css;
919         unsigned int size;
920
921         chp = to_channelpath(container_of(kobj, struct device, kobj));
922         css = to_css(chp->dev.parent);
923
924         size = sizeof(struct cmg_entry);
925
926         /* Only allow single reads. */
927         if (off || count < size)
928                 return 0;
929         chp_measurement_copy_block((struct cmg_entry *)buf, css, chp->id);
930         count = size;
931         return count;
932 }
933
934 static struct bin_attribute chp_measurement_attr = {
935         .attr = {
936                 .name = "measurement",
937                 .mode = S_IRUSR,
938                 .owner = THIS_MODULE,
939         },
940         .size = sizeof(struct cmg_entry),
941         .read = chp_measurement_read,
942 };
943
944 static void
945 chsc_remove_chp_cmg_attr(struct channel_path *chp)
946 {
947         sysfs_remove_bin_file(&chp->dev.kobj, &chp_measurement_chars_attr);
948         sysfs_remove_bin_file(&chp->dev.kobj, &chp_measurement_attr);
949 }
950
951 static int
952 chsc_add_chp_cmg_attr(struct channel_path *chp)
953 {
954         int ret;
955
956         ret = sysfs_create_bin_file(&chp->dev.kobj,
957                                     &chp_measurement_chars_attr);
958         if (ret)
959                 return ret;
960         ret = sysfs_create_bin_file(&chp->dev.kobj, &chp_measurement_attr);
961         if (ret)
962                 sysfs_remove_bin_file(&chp->dev.kobj,
963                                       &chp_measurement_chars_attr);
964         return ret;
965 }
966
967 static void
968 chsc_remove_cmg_attr(struct channel_subsystem *css)
969 {
970         int i;
971
972         for (i = 0; i <= __MAX_CHPID; i++) {
973                 if (!css->chps[i])
974                         continue;
975                 chsc_remove_chp_cmg_attr(css->chps[i]);
976         }
977 }
978
979 static int
980 chsc_add_cmg_attr(struct channel_subsystem *css)
981 {
982         int i, ret;
983
984         ret = 0;
985         for (i = 0; i <= __MAX_CHPID; i++) {
986                 if (!css->chps[i])
987                         continue;
988                 ret = chsc_add_chp_cmg_attr(css->chps[i]);
989                 if (ret)
990                         goto cleanup;
991         }
992         return ret;
993 cleanup:
994         for (--i; i >= 0; i--) {
995                 if (!css->chps[i])
996                         continue;
997                 chsc_remove_chp_cmg_attr(css->chps[i]);
998         }
999         return ret;
1000 }
1001
1002
1003 static int
1004 __chsc_do_secm(struct channel_subsystem *css, int enable, void *page)
1005 {
1006         struct {
1007                 struct chsc_header request;
1008                 u32 operation_code : 2;
1009                 u32 : 30;
1010                 u32 key : 4;
1011                 u32 : 28;
1012                 u32 zeroes1;
1013                 u32 cub_addr1;
1014                 u32 zeroes2;
1015                 u32 cub_addr2;
1016                 u32 reserved[13];
1017                 struct chsc_header response;
1018                 u32 status : 8;
1019                 u32 : 4;
1020                 u32 fmt : 4;
1021                 u32 : 16;
1022         } *secm_area;
1023         int ret, ccode;
1024
1025         secm_area = page;
1026         secm_area->request.length = 0x0050;
1027         secm_area->request.code = 0x0016;
1028
1029         secm_area->key = PAGE_DEFAULT_KEY;
1030         secm_area->cub_addr1 = (u64)(unsigned long)css->cub_addr1;
1031         secm_area->cub_addr2 = (u64)(unsigned long)css->cub_addr2;
1032
1033         secm_area->operation_code = enable ? 0 : 1;
1034
1035         ccode = chsc(secm_area);
1036         if (ccode > 0)
1037                 return (ccode == 3) ? -ENODEV : -EBUSY;
1038
1039         switch (secm_area->response.code) {
1040         case 0x0001: /* Success. */
1041                 ret = 0;
1042                 break;
1043         case 0x0003: /* Invalid block. */
1044         case 0x0007: /* Invalid format. */
1045         case 0x0008: /* Other invalid block. */
1046                 CIO_CRW_EVENT(2, "Error in chsc request block!\n");
1047                 ret = -EINVAL;
1048                 break;
1049         case 0x0004: /* Command not provided in model. */
1050                 CIO_CRW_EVENT(2, "Model does not provide secm\n");
1051                 ret = -EOPNOTSUPP;
1052                 break;
1053         case 0x0102: /* cub adresses incorrect */
1054                 CIO_CRW_EVENT(2, "Invalid addresses in chsc request block\n");
1055                 ret = -EINVAL;
1056                 break;
1057         case 0x0103: /* key error */
1058                 CIO_CRW_EVENT(2, "Access key error in secm\n");
1059                 ret = -EINVAL;
1060                 break;
1061         case 0x0105: /* error while starting */
1062                 CIO_CRW_EVENT(2, "Error while starting channel measurement\n");
1063                 ret = -EIO;
1064                 break;
1065         default:
1066                 CIO_CRW_EVENT(2, "Unknown CHSC response %d\n",
1067                               secm_area->response.code);
1068                 ret = -EIO;
1069         }
1070         return ret;
1071 }
1072
1073 int
1074 chsc_secm(struct channel_subsystem *css, int enable)
1075 {
1076         void  *secm_area;
1077         int ret;
1078
1079         secm_area = (void *)get_zeroed_page(GFP_KERNEL |  GFP_DMA);
1080         if (!secm_area)
1081                 return -ENOMEM;
1082
1083         mutex_lock(&css->mutex);
1084         if (enable && !css->cm_enabled) {
1085                 css->cub_addr1 = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
1086                 css->cub_addr2 = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
1087                 if (!css->cub_addr1 || !css->cub_addr2) {
1088                         free_page((unsigned long)css->cub_addr1);
1089                         free_page((unsigned long)css->cub_addr2);
1090                         free_page((unsigned long)secm_area);
1091                         mutex_unlock(&css->mutex);
1092                         return -ENOMEM;
1093                 }
1094         }
1095         ret = __chsc_do_secm(css, enable, secm_area);
1096         if (!ret) {
1097                 css->cm_enabled = enable;
1098                 if (css->cm_enabled) {
1099                         ret = chsc_add_cmg_attr(css);
1100                         if (ret) {
1101                                 memset(secm_area, 0, PAGE_SIZE);
1102                                 __chsc_do_secm(css, 0, secm_area);
1103                                 css->cm_enabled = 0;
1104                         }
1105                 } else
1106                         chsc_remove_cmg_attr(css);
1107         }
1108         if (enable && !css->cm_enabled) {
1109                 free_page((unsigned long)css->cub_addr1);
1110                 free_page((unsigned long)css->cub_addr2);
1111         }
1112         mutex_unlock(&css->mutex);
1113         free_page((unsigned long)secm_area);
1114         return ret;
1115 }
1116
1117 /*
1118  * Files for the channel path entries.
1119  */
1120 static ssize_t
1121 chp_status_show(struct device *dev, struct device_attribute *attr, char *buf)
1122 {
1123         struct channel_path *chp = container_of(dev, struct channel_path, dev);
1124
1125         if (!chp)
1126                 return 0;
1127         return (get_chp_status(chp->id) ? sprintf(buf, "online\n") :
1128                 sprintf(buf, "offline\n"));
1129 }
1130
1131 static ssize_t
1132 chp_status_write(struct device *dev, struct device_attribute *attr, const char *buf, size_t count)
1133 {
1134         struct channel_path *cp = container_of(dev, struct channel_path, dev);
1135         char cmd[10];
1136         int num_args;
1137         int error;
1138
1139         num_args = sscanf(buf, "%5s", cmd);
1140         if (!num_args)
1141                 return count;
1142
1143         if (!strnicmp(cmd, "on", 2))
1144                 error = s390_vary_chpid(cp->id, 1);
1145         else if (!strnicmp(cmd, "off", 3))
1146                 error = s390_vary_chpid(cp->id, 0);
1147         else
1148                 error = -EINVAL;
1149
1150         return error < 0 ? error : count;
1151
1152 }
1153
1154 static DEVICE_ATTR(status, 0644, chp_status_show, chp_status_write);
1155
1156 static ssize_t
1157 chp_type_show(struct device *dev, struct device_attribute *attr, char *buf)
1158 {
1159         struct channel_path *chp = container_of(dev, struct channel_path, dev);
1160
1161         if (!chp)
1162                 return 0;
1163         return sprintf(buf, "%x\n", chp->desc.desc);
1164 }
1165
1166 static DEVICE_ATTR(type, 0444, chp_type_show, NULL);
1167
1168 static ssize_t
1169 chp_cmg_show(struct device *dev, struct device_attribute *attr, char *buf)
1170 {
1171         struct channel_path *chp = to_channelpath(dev);
1172
1173         if (!chp)
1174                 return 0;
1175         if (chp->cmg == -1) /* channel measurements not available */
1176                 return sprintf(buf, "unknown\n");
1177         return sprintf(buf, "%x\n", chp->cmg);
1178 }
1179
1180 static DEVICE_ATTR(cmg, 0444, chp_cmg_show, NULL);
1181
1182 static ssize_t
1183 chp_shared_show(struct device *dev, struct device_attribute *attr, char *buf)
1184 {
1185         struct channel_path *chp = to_channelpath(dev);
1186
1187         if (!chp)
1188                 return 0;
1189         if (chp->shared == -1) /* channel measurements not available */
1190                 return sprintf(buf, "unknown\n");
1191         return sprintf(buf, "%x\n", chp->shared);
1192 }
1193
1194 static DEVICE_ATTR(shared, 0444, chp_shared_show, NULL);
1195
1196 static struct attribute * chp_attrs[] = {
1197         &dev_attr_status.attr,
1198         &dev_attr_type.attr,
1199         &dev_attr_cmg.attr,
1200         &dev_attr_shared.attr,
1201         NULL,
1202 };
1203
1204 static struct attribute_group chp_attr_group = {
1205         .attrs = chp_attrs,
1206 };
1207
1208 static void
1209 chp_release(struct device *dev)
1210 {
1211         struct channel_path *cp;
1212         
1213         cp = container_of(dev, struct channel_path, dev);
1214         kfree(cp);
1215 }
1216
1217 static int
1218 chsc_determine_channel_path_description(int chpid,
1219                                         struct channel_path_desc *desc)
1220 {
1221         int ccode, ret;
1222
1223         struct {
1224                 struct chsc_header request;
1225                 u32 : 24;
1226                 u32 first_chpid : 8;
1227                 u32 : 24;
1228                 u32 last_chpid : 8;
1229                 u32 zeroes1;
1230                 struct chsc_header response;
1231                 u32 zeroes2;
1232                 struct channel_path_desc desc;
1233         } *scpd_area;
1234
1235         scpd_area = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
1236         if (!scpd_area)
1237                 return -ENOMEM;
1238
1239         scpd_area->request.length = 0x0010;
1240         scpd_area->request.code = 0x0002;
1241
1242         scpd_area->first_chpid = chpid;
1243         scpd_area->last_chpid = chpid;
1244
1245         ccode = chsc(scpd_area);
1246         if (ccode > 0) {
1247                 ret = (ccode == 3) ? -ENODEV : -EBUSY;
1248                 goto out;
1249         }
1250
1251         switch (scpd_area->response.code) {
1252         case 0x0001: /* Success. */
1253                 memcpy(desc, &scpd_area->desc,
1254                        sizeof(struct channel_path_desc));
1255                 ret = 0;
1256                 break;
1257         case 0x0003: /* Invalid block. */
1258         case 0x0007: /* Invalid format. */
1259         case 0x0008: /* Other invalid block. */
1260                 CIO_CRW_EVENT(2, "Error in chsc request block!\n");
1261                 ret = -EINVAL;
1262                 break;
1263         case 0x0004: /* Command not provided in model. */
1264                 CIO_CRW_EVENT(2, "Model does not provide scpd\n");
1265                 ret = -EOPNOTSUPP;
1266                 break;
1267         default:
1268                 CIO_CRW_EVENT(2, "Unknown CHSC response %d\n",
1269                               scpd_area->response.code);
1270                 ret = -EIO;
1271         }
1272 out:
1273         free_page((unsigned long)scpd_area);
1274         return ret;
1275 }
1276
1277 static void
1278 chsc_initialize_cmg_chars(struct channel_path *chp, u8 cmcv,
1279                           struct cmg_chars *chars)
1280 {
1281         switch (chp->cmg) {
1282         case 2:
1283         case 3:
1284                 chp->cmg_chars = kmalloc(sizeof(struct cmg_chars),
1285                                          GFP_KERNEL);
1286                 if (chp->cmg_chars) {
1287                         int i, mask;
1288                         struct cmg_chars *cmg_chars;
1289
1290                         cmg_chars = chp->cmg_chars;
1291                         for (i = 0; i < NR_MEASUREMENT_CHARS; i++) {
1292                                 mask = 0x80 >> (i + 3);
1293                                 if (cmcv & mask)
1294                                         cmg_chars->values[i] = chars->values[i];
1295                                 else
1296                                         cmg_chars->values[i] = 0;
1297                         }
1298                 }
1299                 break;
1300         default:
1301                 /* No cmg-dependent data. */
1302                 break;
1303         }
1304 }
1305
1306 static int
1307 chsc_get_channel_measurement_chars(struct channel_path *chp)
1308 {
1309         int ccode, ret;
1310
1311         struct {
1312                 struct chsc_header request;
1313                 u32 : 24;
1314                 u32 first_chpid : 8;
1315                 u32 : 24;
1316                 u32 last_chpid : 8;
1317                 u32 zeroes1;
1318                 struct chsc_header response;
1319                 u32 zeroes2;
1320                 u32 not_valid : 1;
1321                 u32 shared : 1;
1322                 u32 : 22;
1323                 u32 chpid : 8;
1324                 u32 cmcv : 5;
1325                 u32 : 11;
1326                 u32 cmgq : 8;
1327                 u32 cmg : 8;
1328                 u32 zeroes3;
1329                 u32 data[NR_MEASUREMENT_CHARS];
1330         } *scmc_area;
1331
1332         scmc_area = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
1333         if (!scmc_area)
1334                 return -ENOMEM;
1335
1336         scmc_area->request.length = 0x0010;
1337         scmc_area->request.code = 0x0022;
1338
1339         scmc_area->first_chpid = chp->id;
1340         scmc_area->last_chpid = chp->id;
1341
1342         ccode = chsc(scmc_area);
1343         if (ccode > 0) {
1344                 ret = (ccode == 3) ? -ENODEV : -EBUSY;
1345                 goto out;
1346         }
1347
1348         switch (scmc_area->response.code) {
1349         case 0x0001: /* Success. */
1350                 if (!scmc_area->not_valid) {
1351                         chp->cmg = scmc_area->cmg;
1352                         chp->shared = scmc_area->shared;
1353                         chsc_initialize_cmg_chars(chp, scmc_area->cmcv,
1354                                                   (struct cmg_chars *)
1355                                                   &scmc_area->data);
1356                 } else {
1357                         chp->cmg = -1;
1358                         chp->shared = -1;
1359                 }
1360                 ret = 0;
1361                 break;
1362         case 0x0003: /* Invalid block. */
1363         case 0x0007: /* Invalid format. */
1364         case 0x0008: /* Invalid bit combination. */
1365                 CIO_CRW_EVENT(2, "Error in chsc request block!\n");
1366                 ret = -EINVAL;
1367                 break;
1368         case 0x0004: /* Command not provided. */
1369                 CIO_CRW_EVENT(2, "Model does not provide scmc\n");
1370                 ret = -EOPNOTSUPP;
1371                 break;
1372         default:
1373                 CIO_CRW_EVENT(2, "Unknown CHSC response %d\n",
1374                               scmc_area->response.code);
1375                 ret = -EIO;
1376         }
1377 out:
1378         free_page((unsigned long)scmc_area);
1379         return ret;
1380 }
1381
1382 /*
1383  * Entries for chpids on the system bus.
1384  * This replaces /proc/chpids.
1385  */
1386 static int
1387 new_channel_path(int chpid)
1388 {
1389         struct channel_path *chp;
1390         int ret;
1391
1392         chp = kzalloc(sizeof(struct channel_path), GFP_KERNEL);
1393         if (!chp)
1394                 return -ENOMEM;
1395
1396         /* fill in status, etc. */
1397         chp->id = chpid;
1398         chp->state = 1;
1399         chp->dev.parent = &css[0]->device;
1400         chp->dev.release = chp_release;
1401         snprintf(chp->dev.bus_id, BUS_ID_SIZE, "chp0.%x", chpid);
1402
1403         /* Obtain channel path description and fill it in. */
1404         ret = chsc_determine_channel_path_description(chpid, &chp->desc);
1405         if (ret)
1406                 goto out_free;
1407         /* Get channel-measurement characteristics. */
1408         if (css_characteristics_avail && css_chsc_characteristics.scmc
1409             && css_chsc_characteristics.secm) {
1410                 ret = chsc_get_channel_measurement_chars(chp);
1411                 if (ret)
1412                         goto out_free;
1413         } else {
1414                 static int msg_done;
1415
1416                 if (!msg_done) {
1417                         printk(KERN_WARNING "cio: Channel measurements not "
1418                                "available, continuing.\n");
1419                         msg_done = 1;
1420                 }
1421                 chp->cmg = -1;
1422         }
1423
1424         /* make it known to the system */
1425         ret = device_register(&chp->dev);
1426         if (ret) {
1427                 printk(KERN_WARNING "%s: could not register %02x\n",
1428                        __func__, chpid);
1429                 goto out_free;
1430         }
1431         ret = sysfs_create_group(&chp->dev.kobj, &chp_attr_group);
1432         if (ret) {
1433                 device_unregister(&chp->dev);
1434                 goto out_free;
1435         }
1436         mutex_lock(&css[0]->mutex);
1437         if (css[0]->cm_enabled) {
1438                 ret = chsc_add_chp_cmg_attr(chp);
1439                 if (ret) {
1440                         sysfs_remove_group(&chp->dev.kobj, &chp_attr_group);
1441                         device_unregister(&chp->dev);
1442                         mutex_unlock(&css[0]->mutex);
1443                         goto out_free;
1444                 }
1445         }
1446         css[0]->chps[chpid] = chp;
1447         mutex_unlock(&css[0]->mutex);
1448         return ret;
1449 out_free:
1450         kfree(chp);
1451         return ret;
1452 }
1453
1454 void *
1455 chsc_get_chp_desc(struct subchannel *sch, int chp_no)
1456 {
1457         struct channel_path *chp;
1458         struct channel_path_desc *desc;
1459
1460         chp = css[0]->chps[sch->schib.pmcw.chpid[chp_no]];
1461         if (!chp)
1462                 return NULL;
1463         desc = kmalloc(sizeof(struct channel_path_desc), GFP_KERNEL);
1464         if (!desc)
1465                 return NULL;
1466         memcpy(desc, &chp->desc, sizeof(struct channel_path_desc));
1467         return desc;
1468 }
1469
1470 static int __init
1471 chsc_alloc_sei_area(void)
1472 {
1473         sei_page = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
1474         if (!sei_page)
1475                 printk(KERN_WARNING"Can't allocate page for processing of " \
1476                        "chsc machine checks!\n");
1477         return (sei_page ? 0 : -ENOMEM);
1478 }
1479
1480 int __init
1481 chsc_enable_facility(int operation_code)
1482 {
1483         int ret;
1484         struct {
1485                 struct chsc_header request;
1486                 u8 reserved1:4;
1487                 u8 format:4;
1488                 u8 reserved2;
1489                 u16 operation_code;
1490                 u32 reserved3;
1491                 u32 reserved4;
1492                 u32 operation_data_area[252];
1493                 struct chsc_header response;
1494                 u32 reserved5:4;
1495                 u32 format2:4;
1496                 u32 reserved6:24;
1497         } *sda_area;
1498
1499         sda_area = (void *)get_zeroed_page(GFP_KERNEL|GFP_DMA);
1500         if (!sda_area)
1501                 return -ENOMEM;
1502         sda_area->request.length = 0x0400;
1503         sda_area->request.code = 0x0031;
1504         sda_area->operation_code = operation_code;
1505
1506         ret = chsc(sda_area);
1507         if (ret > 0) {
1508                 ret = (ret == 3) ? -ENODEV : -EBUSY;
1509                 goto out;
1510         }
1511         switch (sda_area->response.code) {
1512         case 0x0001: /* everything ok */
1513                 ret = 0;
1514                 break;
1515         case 0x0003: /* invalid request block */
1516         case 0x0007:
1517                 ret = -EINVAL;
1518                 break;
1519         case 0x0004: /* command not provided */
1520         case 0x0101: /* facility not provided */
1521                 ret = -EOPNOTSUPP;
1522                 break;
1523         default: /* something went wrong */
1524                 ret = -EIO;
1525         }
1526  out:
1527         free_page((unsigned long)sda_area);
1528         return ret;
1529 }
1530
1531 subsys_initcall(chsc_alloc_sei_area);
1532
1533 struct css_general_char css_general_characteristics;
1534 struct css_chsc_char css_chsc_characteristics;
1535
1536 int __init
1537 chsc_determine_css_characteristics(void)
1538 {
1539         int result;
1540         struct {
1541                 struct chsc_header request;
1542                 u32 reserved1;
1543                 u32 reserved2;
1544                 u32 reserved3;
1545                 struct chsc_header response;
1546                 u32 reserved4;
1547                 u32 general_char[510];
1548                 u32 chsc_char[518];
1549         } *scsc_area;
1550
1551         scsc_area = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
1552         if (!scsc_area) {
1553                 printk(KERN_WARNING"cio: Was not able to determine available" \
1554                        "CHSCs due to no memory.\n");
1555                 return -ENOMEM;
1556         }
1557
1558         scsc_area->request.length = 0x0010;
1559         scsc_area->request.code = 0x0010;
1560
1561         result = chsc(scsc_area);
1562         if (result) {
1563                 printk(KERN_WARNING"cio: Was not able to determine " \
1564                        "available CHSCs, cc=%i.\n", result);
1565                 result = -EIO;
1566                 goto exit;
1567         }
1568
1569         if (scsc_area->response.code != 1) {
1570                 printk(KERN_WARNING"cio: Was not able to determine " \
1571                        "available CHSCs.\n");
1572                 result = -EIO;
1573                 goto exit;
1574         }
1575         memcpy(&css_general_characteristics, scsc_area->general_char,
1576                sizeof(css_general_characteristics));
1577         memcpy(&css_chsc_characteristics, scsc_area->chsc_char,
1578                sizeof(css_chsc_characteristics));
1579 exit:
1580         free_page ((unsigned long) scsc_area);
1581         return result;
1582 }
1583
1584 EXPORT_SYMBOL_GPL(css_general_characteristics);
1585 EXPORT_SYMBOL_GPL(css_chsc_characteristics);