PNP: remove extra 0x100 bit from option priority
[safe/jmp/linux-2.6] / drivers / pnp / isapnp / core.c
1 /*
2  *  ISA Plug & Play support
3  *  Copyright (c) by Jaroslav Kysela <perex@perex.cz>
4  *
5  *
6  *   This program is free software; you can redistribute it and/or modify
7  *   it under the terms of the GNU General Public License as published by
8  *   the Free Software Foundation; either version 2 of the License, or
9  *   (at your option) any later version.
10  *
11  *   This program is distributed in the hope that it will be useful,
12  *   but WITHOUT ANY WARRANTY; without even the implied warranty of
13  *   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14  *   GNU General Public License for more details.
15  *
16  *   You should have received a copy of the GNU General Public License
17  *   along with this program; if not, write to the Free Software
18  *   Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
19  *
20  *  Changelog:
21  *  2000-01-01  Added quirks handling for buggy hardware
22  *              Peter Denison <peterd@pnd-pc.demon.co.uk>
23  *  2000-06-14  Added isapnp_probe_devs() and isapnp_activate_dev()
24  *              Christoph Hellwig <hch@infradead.org>
25  *  2001-06-03  Added release_region calls to correspond with
26  *              request_region calls when a failure occurs.  Also
27  *              added KERN_* constants to printk() calls.
28  *  2001-11-07  Added isapnp_{,un}register_driver calls along the lines
29  *              of the pci driver interface
30  *              Kai Germaschewski <kai.germaschewski@gmx.de>
31  *  2002-06-06  Made the use of dma channel 0 configurable
32  *              Gerald Teschl <gerald.teschl@univie.ac.at>
33  *  2002-10-06  Ported to PnP Layer - Adam Belay <ambx1@neo.rr.com>
34  *  2003-08-11  Resource Management Updates - Adam Belay <ambx1@neo.rr.com>
35  */
36
37 #include <linux/module.h>
38 #include <linux/kernel.h>
39 #include <linux/errno.h>
40 #include <linux/slab.h>
41 #include <linux/delay.h>
42 #include <linux/init.h>
43 #include <linux/isapnp.h>
44 #include <linux/mutex.h>
45 #include <asm/io.h>
46
47 #include "../base.h"
48
49 #if 0
50 #define ISAPNP_REGION_OK
51 #endif
52
53 int isapnp_disable;             /* Disable ISA PnP */
54 static int isapnp_rdp;          /* Read Data Port */
55 static int isapnp_reset = 1;    /* reset all PnP cards (deactivate) */
56 static int isapnp_verbose = 1;  /* verbose mode */
57
58 MODULE_AUTHOR("Jaroslav Kysela <perex@perex.cz>");
59 MODULE_DESCRIPTION("Generic ISA Plug & Play support");
60 module_param(isapnp_disable, int, 0);
61 MODULE_PARM_DESC(isapnp_disable, "ISA Plug & Play disable");
62 module_param(isapnp_rdp, int, 0);
63 MODULE_PARM_DESC(isapnp_rdp, "ISA Plug & Play read data port");
64 module_param(isapnp_reset, int, 0);
65 MODULE_PARM_DESC(isapnp_reset, "ISA Plug & Play reset all cards");
66 module_param(isapnp_verbose, int, 0);
67 MODULE_PARM_DESC(isapnp_verbose, "ISA Plug & Play verbose mode");
68 MODULE_LICENSE("GPL");
69
70 #define _PIDXR          0x279
71 #define _PNPWRP         0xa79
72
73 /* short tags */
74 #define _STAG_PNPVERNO          0x01
75 #define _STAG_LOGDEVID          0x02
76 #define _STAG_COMPATDEVID       0x03
77 #define _STAG_IRQ               0x04
78 #define _STAG_DMA               0x05
79 #define _STAG_STARTDEP          0x06
80 #define _STAG_ENDDEP            0x07
81 #define _STAG_IOPORT            0x08
82 #define _STAG_FIXEDIO           0x09
83 #define _STAG_VENDOR            0x0e
84 #define _STAG_END               0x0f
85 /* long tags */
86 #define _LTAG_MEMRANGE          0x81
87 #define _LTAG_ANSISTR           0x82
88 #define _LTAG_UNICODESTR        0x83
89 #define _LTAG_VENDOR            0x84
90 #define _LTAG_MEM32RANGE        0x85
91 #define _LTAG_FIXEDMEM32RANGE   0x86
92
93 /* Logical device control and configuration registers */
94
95 #define ISAPNP_CFG_ACTIVATE     0x30    /* byte */
96 #define ISAPNP_CFG_MEM          0x40    /* 4 * dword */
97 #define ISAPNP_CFG_PORT         0x60    /* 8 * word */
98 #define ISAPNP_CFG_IRQ          0x70    /* 2 * word */
99 #define ISAPNP_CFG_DMA          0x74    /* 2 * byte */
100
101 /*
102  * Sizes of ISAPNP logical device configuration register sets.
103  * See PNP-ISA-v1.0a.pdf, Appendix A.
104  */
105 #define ISAPNP_MAX_MEM          4
106 #define ISAPNP_MAX_PORT         8
107 #define ISAPNP_MAX_IRQ          2
108 #define ISAPNP_MAX_DMA          2
109
110 static unsigned char isapnp_checksum_value;
111 static DEFINE_MUTEX(isapnp_cfg_mutex);
112 static int isapnp_csn_count;
113
114 /* some prototypes */
115
116 static inline void write_data(unsigned char x)
117 {
118         outb(x, _PNPWRP);
119 }
120
121 static inline void write_address(unsigned char x)
122 {
123         outb(x, _PIDXR);
124         udelay(20);
125 }
126
127 static inline unsigned char read_data(void)
128 {
129         unsigned char val = inb(isapnp_rdp);
130         return val;
131 }
132
133 unsigned char isapnp_read_byte(unsigned char idx)
134 {
135         write_address(idx);
136         return read_data();
137 }
138
139 static unsigned short isapnp_read_word(unsigned char idx)
140 {
141         unsigned short val;
142
143         val = isapnp_read_byte(idx);
144         val = (val << 8) + isapnp_read_byte(idx + 1);
145         return val;
146 }
147
148 void isapnp_write_byte(unsigned char idx, unsigned char val)
149 {
150         write_address(idx);
151         write_data(val);
152 }
153
154 static void isapnp_write_word(unsigned char idx, unsigned short val)
155 {
156         isapnp_write_byte(idx, val >> 8);
157         isapnp_write_byte(idx + 1, val);
158 }
159
160 static void isapnp_key(void)
161 {
162         unsigned char code = 0x6a, msb;
163         int i;
164
165         mdelay(1);
166         write_address(0x00);
167         write_address(0x00);
168
169         write_address(code);
170
171         for (i = 1; i < 32; i++) {
172                 msb = ((code & 0x01) ^ ((code & 0x02) >> 1)) << 7;
173                 code = (code >> 1) | msb;
174                 write_address(code);
175         }
176 }
177
178 /* place all pnp cards in wait-for-key state */
179 static void isapnp_wait(void)
180 {
181         isapnp_write_byte(0x02, 0x02);
182 }
183
184 static void isapnp_wake(unsigned char csn)
185 {
186         isapnp_write_byte(0x03, csn);
187 }
188
189 static void isapnp_device(unsigned char logdev)
190 {
191         isapnp_write_byte(0x07, logdev);
192 }
193
194 static void isapnp_activate(unsigned char logdev)
195 {
196         isapnp_device(logdev);
197         isapnp_write_byte(ISAPNP_CFG_ACTIVATE, 1);
198         udelay(250);
199 }
200
201 static void isapnp_deactivate(unsigned char logdev)
202 {
203         isapnp_device(logdev);
204         isapnp_write_byte(ISAPNP_CFG_ACTIVATE, 0);
205         udelay(500);
206 }
207
208 static void __init isapnp_peek(unsigned char *data, int bytes)
209 {
210         int i, j;
211         unsigned char d = 0;
212
213         for (i = 1; i <= bytes; i++) {
214                 for (j = 0; j < 20; j++) {
215                         d = isapnp_read_byte(0x05);
216                         if (d & 1)
217                                 break;
218                         udelay(100);
219                 }
220                 if (!(d & 1)) {
221                         if (data != NULL)
222                                 *data++ = 0xff;
223                         continue;
224                 }
225                 d = isapnp_read_byte(0x04);     /* PRESDI */
226                 isapnp_checksum_value += d;
227                 if (data != NULL)
228                         *data++ = d;
229         }
230 }
231
232 #define RDP_STEP        32      /* minimum is 4 */
233
234 static int isapnp_next_rdp(void)
235 {
236         int rdp = isapnp_rdp;
237         static int old_rdp = 0;
238
239         if (old_rdp) {
240                 release_region(old_rdp, 1);
241                 old_rdp = 0;
242         }
243         while (rdp <= 0x3ff) {
244                 /*
245                  *      We cannot use NE2000 probe spaces for ISAPnP or we
246                  *      will lock up machines.
247                  */
248                 if ((rdp < 0x280 || rdp > 0x380)
249                     && request_region(rdp, 1, "ISAPnP")) {
250                         isapnp_rdp = rdp;
251                         old_rdp = rdp;
252                         return 0;
253                 }
254                 rdp += RDP_STEP;
255         }
256         return -1;
257 }
258
259 /* Set read port address */
260 static inline void isapnp_set_rdp(void)
261 {
262         isapnp_write_byte(0x00, isapnp_rdp >> 2);
263         udelay(100);
264 }
265
266 /*
267  *      Perform an isolation. The port selection code now tries to avoid
268  *      "dangerous to read" ports.
269  */
270 static int __init isapnp_isolate_rdp_select(void)
271 {
272         isapnp_wait();
273         isapnp_key();
274
275         /* Control: reset CSN and conditionally everything else too */
276         isapnp_write_byte(0x02, isapnp_reset ? 0x05 : 0x04);
277         mdelay(2);
278
279         isapnp_wait();
280         isapnp_key();
281         isapnp_wake(0x00);
282
283         if (isapnp_next_rdp() < 0) {
284                 isapnp_wait();
285                 return -1;
286         }
287
288         isapnp_set_rdp();
289         udelay(1000);
290         write_address(0x01);
291         udelay(1000);
292         return 0;
293 }
294
295 /*
296  *  Isolate (assign uniqued CSN) to all ISA PnP devices.
297  */
298 static int __init isapnp_isolate(void)
299 {
300         unsigned char checksum = 0x6a;
301         unsigned char chksum = 0x00;
302         unsigned char bit = 0x00;
303         int data;
304         int csn = 0;
305         int i;
306         int iteration = 1;
307
308         isapnp_rdp = 0x213;
309         if (isapnp_isolate_rdp_select() < 0)
310                 return -1;
311
312         while (1) {
313                 for (i = 1; i <= 64; i++) {
314                         data = read_data() << 8;
315                         udelay(250);
316                         data = data | read_data();
317                         udelay(250);
318                         if (data == 0x55aa)
319                                 bit = 0x01;
320                         checksum =
321                             ((((checksum ^ (checksum >> 1)) & 0x01) ^ bit) << 7)
322                             | (checksum >> 1);
323                         bit = 0x00;
324                 }
325                 for (i = 65; i <= 72; i++) {
326                         data = read_data() << 8;
327                         udelay(250);
328                         data = data | read_data();
329                         udelay(250);
330                         if (data == 0x55aa)
331                                 chksum |= (1 << (i - 65));
332                 }
333                 if (checksum != 0x00 && checksum == chksum) {
334                         csn++;
335
336                         isapnp_write_byte(0x06, csn);
337                         udelay(250);
338                         iteration++;
339                         isapnp_wake(0x00);
340                         isapnp_set_rdp();
341                         udelay(1000);
342                         write_address(0x01);
343                         udelay(1000);
344                         goto __next;
345                 }
346                 if (iteration == 1) {
347                         isapnp_rdp += RDP_STEP;
348                         if (isapnp_isolate_rdp_select() < 0)
349                                 return -1;
350                 } else if (iteration > 1) {
351                         break;
352                 }
353 __next:
354                 if (csn == 255)
355                         break;
356                 checksum = 0x6a;
357                 chksum = 0x00;
358                 bit = 0x00;
359         }
360         isapnp_wait();
361         isapnp_csn_count = csn;
362         return csn;
363 }
364
365 /*
366  *  Read one tag from stream.
367  */
368 static int __init isapnp_read_tag(unsigned char *type, unsigned short *size)
369 {
370         unsigned char tag, tmp[2];
371
372         isapnp_peek(&tag, 1);
373         if (tag == 0)           /* invalid tag */
374                 return -1;
375         if (tag & 0x80) {       /* large item */
376                 *type = tag;
377                 isapnp_peek(tmp, 2);
378                 *size = (tmp[1] << 8) | tmp[0];
379         } else {
380                 *type = (tag >> 3) & 0x0f;
381                 *size = tag & 0x07;
382         }
383 #if 0
384         printk(KERN_DEBUG "tag = 0x%x, type = 0x%x, size = %i\n", tag, *type,
385                *size);
386 #endif
387         if (*type == 0xff && *size == 0xffff)   /* probably invalid data */
388                 return -1;
389         return 0;
390 }
391
392 /*
393  *  Skip specified number of bytes from stream.
394  */
395 static void __init isapnp_skip_bytes(int count)
396 {
397         isapnp_peek(NULL, count);
398 }
399
400 /*
401  *  Parse logical device tag.
402  */
403 static struct pnp_dev *__init isapnp_parse_device(struct pnp_card *card,
404                                                   int size, int number)
405 {
406         unsigned char tmp[6];
407         struct pnp_dev *dev;
408         u32 eisa_id;
409         char id[8];
410
411         isapnp_peek(tmp, size);
412         eisa_id = tmp[0] | tmp[1] << 8 | tmp[2] << 16 | tmp[3] << 24;
413         pnp_eisa_id_to_string(eisa_id, id);
414
415         dev = pnp_alloc_dev(&isapnp_protocol, number, id);
416         if (!dev)
417                 return NULL;
418
419         dev->card = card;
420         dev->capabilities |= PNP_CONFIGURABLE;
421         dev->capabilities |= PNP_READ;
422         dev->capabilities |= PNP_WRITE;
423         dev->capabilities |= PNP_DISABLE;
424         pnp_init_resources(dev);
425         return dev;
426 }
427
428 /*
429  *  Add IRQ resource to resources list.
430  */
431 static void __init isapnp_parse_irq_resource(struct pnp_dev *dev,
432                                              struct pnp_option *option,
433                                              int size)
434 {
435         unsigned char tmp[3];
436         unsigned long bits;
437         pnp_irq_mask_t map;
438         unsigned char flags = IORESOURCE_IRQ_HIGHEDGE;
439
440         isapnp_peek(tmp, size);
441         bits = (tmp[1] << 8) | tmp[0];
442
443         bitmap_zero(map.bits, PNP_IRQ_NR);
444         bitmap_copy(map.bits, &bits, 16);
445
446         if (size > 2)
447                 flags = tmp[2];
448
449         pnp_register_irq_resource(dev, option, &map, flags);
450 }
451
452 /*
453  *  Add DMA resource to resources list.
454  */
455 static void __init isapnp_parse_dma_resource(struct pnp_dev *dev,
456                                              struct pnp_option *option,
457                                              int size)
458 {
459         unsigned char tmp[2];
460
461         isapnp_peek(tmp, size);
462         pnp_register_dma_resource(dev, option, tmp[0], tmp[1]);
463 }
464
465 /*
466  *  Add port resource to resources list.
467  */
468 static void __init isapnp_parse_port_resource(struct pnp_dev *dev,
469                                               struct pnp_option *option,
470                                               int size)
471 {
472         unsigned char tmp[7];
473         resource_size_t min, max, align, len;
474         unsigned char flags;
475
476         isapnp_peek(tmp, size);
477         min = (tmp[2] << 8) | tmp[1];
478         max = (tmp[4] << 8) | tmp[3];
479         align = tmp[5];
480         len = tmp[6];
481         flags = tmp[0] ? IORESOURCE_IO_16BIT_ADDR : 0;
482         pnp_register_port_resource(dev, option, min, max, align, len, flags);
483 }
484
485 /*
486  *  Add fixed port resource to resources list.
487  */
488 static void __init isapnp_parse_fixed_port_resource(struct pnp_dev *dev,
489                                                     struct pnp_option *option,
490                                                     int size)
491 {
492         unsigned char tmp[3];
493         resource_size_t base, len;
494
495         isapnp_peek(tmp, size);
496         base = (tmp[1] << 8) | tmp[0];
497         len = tmp[2];
498         pnp_register_port_resource(dev, option, base, base, 0, len,
499                                    IORESOURCE_IO_FIXED);
500 }
501
502 /*
503  *  Add memory resource to resources list.
504  */
505 static void __init isapnp_parse_mem_resource(struct pnp_dev *dev,
506                                              struct pnp_option *option,
507                                              int size)
508 {
509         unsigned char tmp[9];
510         resource_size_t min, max, align, len;
511         unsigned char flags;
512
513         isapnp_peek(tmp, size);
514         min = ((tmp[2] << 8) | tmp[1]) << 8;
515         max = ((tmp[4] << 8) | tmp[3]) << 8;
516         align = (tmp[6] << 8) | tmp[5];
517         len = ((tmp[8] << 8) | tmp[7]) << 8;
518         flags = tmp[0];
519         pnp_register_mem_resource(dev, option, min, max, align, len, flags);
520 }
521
522 /*
523  *  Add 32-bit memory resource to resources list.
524  */
525 static void __init isapnp_parse_mem32_resource(struct pnp_dev *dev,
526                                                struct pnp_option *option,
527                                                int size)
528 {
529         unsigned char tmp[17];
530         resource_size_t min, max, align, len;
531         unsigned char flags;
532
533         isapnp_peek(tmp, size);
534         min = (tmp[4] << 24) | (tmp[3] << 16) | (tmp[2] << 8) | tmp[1];
535         max = (tmp[8] << 24) | (tmp[7] << 16) | (tmp[6] << 8) | tmp[5];
536         align = (tmp[12] << 24) | (tmp[11] << 16) | (tmp[10] << 8) | tmp[9];
537         len = (tmp[16] << 24) | (tmp[15] << 16) | (tmp[14] << 8) | tmp[13];
538         flags = tmp[0];
539         pnp_register_mem_resource(dev, option, min, max, align, len, flags);
540 }
541
542 /*
543  *  Add 32-bit fixed memory resource to resources list.
544  */
545 static void __init isapnp_parse_fixed_mem32_resource(struct pnp_dev *dev,
546                                                      struct pnp_option *option,
547                                                      int size)
548 {
549         unsigned char tmp[9];
550         resource_size_t base, len;
551         unsigned char flags;
552
553         isapnp_peek(tmp, size);
554         base = (tmp[4] << 24) | (tmp[3] << 16) | (tmp[2] << 8) | tmp[1];
555         len = (tmp[8] << 24) | (tmp[7] << 16) | (tmp[6] << 8) | tmp[5];
556         flags = tmp[0];
557         pnp_register_mem_resource(dev, option, base, base, 0, len, flags);
558 }
559
560 /*
561  *  Parse card name for ISA PnP device.
562  */
563 static void __init
564 isapnp_parse_name(char *name, unsigned int name_max, unsigned short *size)
565 {
566         if (name[0] == '\0') {
567                 unsigned short size1 =
568                     *size >= name_max ? (name_max - 1) : *size;
569                 isapnp_peek(name, size1);
570                 name[size1] = '\0';
571                 *size -= size1;
572
573                 /* clean whitespace from end of string */
574                 while (size1 > 0 && name[--size1] == ' ')
575                         name[size1] = '\0';
576         }
577 }
578
579 /*
580  *  Parse resource map for logical device.
581  */
582 static int __init isapnp_create_device(struct pnp_card *card,
583                                        unsigned short size)
584 {
585         int number = 0, skip = 0, priority, compat = 0;
586         unsigned char type, tmp[17];
587         struct pnp_option *option;
588         struct pnp_dev *dev;
589         u32 eisa_id;
590         char id[8];
591
592         if ((dev = isapnp_parse_device(card, size, number++)) == NULL)
593                 return 1;
594         option = pnp_register_independent_option(dev);
595         if (!option) {
596                 kfree(dev);
597                 return 1;
598         }
599         pnp_add_card_device(card, dev);
600
601         while (1) {
602                 if (isapnp_read_tag(&type, &size) < 0)
603                         return 1;
604                 if (skip && type != _STAG_LOGDEVID && type != _STAG_END)
605                         goto __skip;
606                 switch (type) {
607                 case _STAG_LOGDEVID:
608                         if (size >= 5 && size <= 6) {
609                                 if ((dev =
610                                      isapnp_parse_device(card, size,
611                                                          number++)) == NULL)
612                                         return 1;
613                                 size = 0;
614                                 skip = 0;
615                                 option = pnp_register_independent_option(dev);
616                                 if (!option) {
617                                         kfree(dev);
618                                         return 1;
619                                 }
620                                 pnp_add_card_device(card, dev);
621                         } else {
622                                 skip = 1;
623                         }
624                         compat = 0;
625                         break;
626                 case _STAG_COMPATDEVID:
627                         if (size == 4 && compat < DEVICE_COUNT_COMPATIBLE) {
628                                 isapnp_peek(tmp, 4);
629                                 eisa_id = tmp[0] | tmp[1] << 8 |
630                                           tmp[2] << 16 | tmp[3] << 24;
631                                 pnp_eisa_id_to_string(eisa_id, id);
632                                 pnp_add_id(dev, id);
633                                 compat++;
634                                 size = 0;
635                         }
636                         break;
637                 case _STAG_IRQ:
638                         if (size < 2 || size > 3)
639                                 goto __skip;
640                         isapnp_parse_irq_resource(dev, option, size);
641                         size = 0;
642                         break;
643                 case _STAG_DMA:
644                         if (size != 2)
645                                 goto __skip;
646                         isapnp_parse_dma_resource(dev, option, size);
647                         size = 0;
648                         break;
649                 case _STAG_STARTDEP:
650                         if (size > 1)
651                                 goto __skip;
652                         priority = PNP_RES_PRIORITY_ACCEPTABLE;
653                         if (size > 0) {
654                                 isapnp_peek(tmp, size);
655                                 priority = tmp[0];
656                                 size = 0;
657                         }
658                         option = pnp_register_dependent_option(dev, priority);
659                         if (!option)
660                                 return 1;
661                         break;
662                 case _STAG_ENDDEP:
663                         if (size != 0)
664                                 goto __skip;
665                         dev_dbg(&dev->dev, "end dependent options\n");
666                         break;
667                 case _STAG_IOPORT:
668                         if (size != 7)
669                                 goto __skip;
670                         isapnp_parse_port_resource(dev, option, size);
671                         size = 0;
672                         break;
673                 case _STAG_FIXEDIO:
674                         if (size != 3)
675                                 goto __skip;
676                         isapnp_parse_fixed_port_resource(dev, option, size);
677                         size = 0;
678                         break;
679                 case _STAG_VENDOR:
680                         break;
681                 case _LTAG_MEMRANGE:
682                         if (size != 9)
683                                 goto __skip;
684                         isapnp_parse_mem_resource(dev, option, size);
685                         size = 0;
686                         break;
687                 case _LTAG_ANSISTR:
688                         isapnp_parse_name(dev->name, sizeof(dev->name), &size);
689                         break;
690                 case _LTAG_UNICODESTR:
691                         /* silently ignore */
692                         /* who use unicode for hardware identification? */
693                         break;
694                 case _LTAG_VENDOR:
695                         break;
696                 case _LTAG_MEM32RANGE:
697                         if (size != 17)
698                                 goto __skip;
699                         isapnp_parse_mem32_resource(dev, option, size);
700                         size = 0;
701                         break;
702                 case _LTAG_FIXEDMEM32RANGE:
703                         if (size != 9)
704                                 goto __skip;
705                         isapnp_parse_fixed_mem32_resource(dev, option, size);
706                         size = 0;
707                         break;
708                 case _STAG_END:
709                         if (size > 0)
710                                 isapnp_skip_bytes(size);
711                         return 1;
712                 default:
713                         dev_err(&dev->dev, "unknown tag %#x (card %i), "
714                                 "ignored\n", type, card->number);
715                 }
716 __skip:
717                 if (size > 0)
718                         isapnp_skip_bytes(size);
719         }
720         return 0;
721 }
722
723 /*
724  *  Parse resource map for ISA PnP card.
725  */
726 static void __init isapnp_parse_resource_map(struct pnp_card *card)
727 {
728         unsigned char type, tmp[17];
729         unsigned short size;
730
731         while (1) {
732                 if (isapnp_read_tag(&type, &size) < 0)
733                         return;
734                 switch (type) {
735                 case _STAG_PNPVERNO:
736                         if (size != 2)
737                                 goto __skip;
738                         isapnp_peek(tmp, 2);
739                         card->pnpver = tmp[0];
740                         card->productver = tmp[1];
741                         size = 0;
742                         break;
743                 case _STAG_LOGDEVID:
744                         if (size >= 5 && size <= 6) {
745                                 if (isapnp_create_device(card, size) == 1)
746                                         return;
747                                 size = 0;
748                         }
749                         break;
750                 case _STAG_VENDOR:
751                         break;
752                 case _LTAG_ANSISTR:
753                         isapnp_parse_name(card->name, sizeof(card->name),
754                                           &size);
755                         break;
756                 case _LTAG_UNICODESTR:
757                         /* silently ignore */
758                         /* who use unicode for hardware identification? */
759                         break;
760                 case _LTAG_VENDOR:
761                         break;
762                 case _STAG_END:
763                         if (size > 0)
764                                 isapnp_skip_bytes(size);
765                         return;
766                 default:
767                         dev_err(&card->dev, "unknown tag %#x, ignored\n",
768                                type);
769                 }
770 __skip:
771                 if (size > 0)
772                         isapnp_skip_bytes(size);
773         }
774 }
775
776 /*
777  *  Compute ISA PnP checksum for first eight bytes.
778  */
779 static unsigned char __init isapnp_checksum(unsigned char *data)
780 {
781         int i, j;
782         unsigned char checksum = 0x6a, bit, b;
783
784         for (i = 0; i < 8; i++) {
785                 b = data[i];
786                 for (j = 0; j < 8; j++) {
787                         bit = 0;
788                         if (b & (1 << j))
789                                 bit = 1;
790                         checksum =
791                             ((((checksum ^ (checksum >> 1)) & 0x01) ^ bit) << 7)
792                             | (checksum >> 1);
793                 }
794         }
795         return checksum;
796 }
797
798 /*
799  *  Build device list for all present ISA PnP devices.
800  */
801 static int __init isapnp_build_device_list(void)
802 {
803         int csn;
804         unsigned char header[9], checksum;
805         struct pnp_card *card;
806         u32 eisa_id;
807         char id[8];
808
809         isapnp_wait();
810         isapnp_key();
811         for (csn = 1; csn <= isapnp_csn_count; csn++) {
812                 isapnp_wake(csn);
813                 isapnp_peek(header, 9);
814                 checksum = isapnp_checksum(header);
815                 eisa_id = header[0] | header[1] << 8 |
816                           header[2] << 16 | header[3] << 24;
817                 pnp_eisa_id_to_string(eisa_id, id);
818                 card = pnp_alloc_card(&isapnp_protocol, csn, id);
819                 if (!card)
820                         continue;
821
822 #if 0
823                 dev_info(&card->dev,
824                        "vendor: %02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x\n",
825                        header[0], header[1], header[2], header[3], header[4],
826                        header[5], header[6], header[7], header[8]);
827                 dev_info(&card->dev, "checksum = %#x\n", checksum);
828 #endif
829                 INIT_LIST_HEAD(&card->devices);
830                 card->serial =
831                     (header[7] << 24) | (header[6] << 16) | (header[5] << 8) |
832                     header[4];
833                 isapnp_checksum_value = 0x00;
834                 isapnp_parse_resource_map(card);
835                 if (isapnp_checksum_value != 0x00)
836                         dev_err(&card->dev, "invalid checksum %#x\n",
837                                 isapnp_checksum_value);
838                 card->checksum = isapnp_checksum_value;
839
840                 pnp_add_card(card);
841         }
842         isapnp_wait();
843         return 0;
844 }
845
846 /*
847  *  Basic configuration routines.
848  */
849
850 int isapnp_present(void)
851 {
852         struct pnp_card *card;
853
854         pnp_for_each_card(card) {
855                 if (card->protocol == &isapnp_protocol)
856                         return 1;
857         }
858         return 0;
859 }
860
861 int isapnp_cfg_begin(int csn, int logdev)
862 {
863         if (csn < 1 || csn > isapnp_csn_count || logdev > 10)
864                 return -EINVAL;
865         mutex_lock(&isapnp_cfg_mutex);
866         isapnp_wait();
867         isapnp_key();
868         isapnp_wake(csn);
869 #if 0
870         /* to avoid malfunction when the isapnptools package is used */
871         /* we must set RDP to our value again */
872         /* it is possible to set RDP only in the isolation phase */
873         /*   Jens Thoms Toerring <Jens.Toerring@physik.fu-berlin.de> */
874         isapnp_write_byte(0x02, 0x04);  /* clear CSN of card */
875         mdelay(2);              /* is this necessary? */
876         isapnp_wake(csn);       /* bring card into sleep state */
877         isapnp_wake(0);         /* bring card into isolation state */
878         isapnp_set_rdp();       /* reset the RDP port */
879         udelay(1000);           /* delay 1000us */
880         isapnp_write_byte(0x06, csn);   /* reset CSN to previous value */
881         udelay(250);            /* is this necessary? */
882 #endif
883         if (logdev >= 0)
884                 isapnp_device(logdev);
885         return 0;
886 }
887
888 int isapnp_cfg_end(void)
889 {
890         isapnp_wait();
891         mutex_unlock(&isapnp_cfg_mutex);
892         return 0;
893 }
894
895 /*
896  *  Initialization.
897  */
898
899 EXPORT_SYMBOL(isapnp_protocol);
900 EXPORT_SYMBOL(isapnp_present);
901 EXPORT_SYMBOL(isapnp_cfg_begin);
902 EXPORT_SYMBOL(isapnp_cfg_end);
903 EXPORT_SYMBOL(isapnp_write_byte);
904
905 static int isapnp_get_resources(struct pnp_dev *dev)
906 {
907         int i, ret;
908
909         dev_dbg(&dev->dev, "get resources\n");
910         pnp_init_resources(dev);
911         isapnp_cfg_begin(dev->card->number, dev->number);
912         dev->active = isapnp_read_byte(ISAPNP_CFG_ACTIVATE);
913         if (!dev->active)
914                 goto __end;
915
916         for (i = 0; i < ISAPNP_MAX_PORT; i++) {
917                 ret = isapnp_read_word(ISAPNP_CFG_PORT + (i << 1));
918                 pnp_add_io_resource(dev, ret, ret,
919                                     ret == 0 ? IORESOURCE_DISABLED : 0);
920         }
921         for (i = 0; i < ISAPNP_MAX_MEM; i++) {
922                 ret = isapnp_read_word(ISAPNP_CFG_MEM + (i << 3)) << 8;
923                 pnp_add_mem_resource(dev, ret, ret,
924                                      ret == 0 ? IORESOURCE_DISABLED : 0);
925         }
926         for (i = 0; i < ISAPNP_MAX_IRQ; i++) {
927                 ret = isapnp_read_word(ISAPNP_CFG_IRQ + (i << 1)) >> 8;
928                 pnp_add_irq_resource(dev, ret,
929                                      ret == 0 ? IORESOURCE_DISABLED : 0);
930         }
931         for (i = 0; i < ISAPNP_MAX_DMA; i++) {
932                 ret = isapnp_read_byte(ISAPNP_CFG_DMA + i);
933                 pnp_add_dma_resource(dev, ret,
934                                      ret == 4 ? IORESOURCE_DISABLED : 0);
935         }
936
937 __end:
938         isapnp_cfg_end();
939         return 0;
940 }
941
942 static int isapnp_set_resources(struct pnp_dev *dev)
943 {
944         struct resource *res;
945         int tmp;
946
947         dev_dbg(&dev->dev, "set resources\n");
948         isapnp_cfg_begin(dev->card->number, dev->number);
949         dev->active = 1;
950         for (tmp = 0; tmp < ISAPNP_MAX_PORT; tmp++) {
951                 res = pnp_get_resource(dev, IORESOURCE_IO, tmp);
952                 if (pnp_resource_enabled(res)) {
953                         dev_dbg(&dev->dev, "  set io  %d to %#llx\n",
954                                 tmp, (unsigned long long) res->start);
955                         isapnp_write_word(ISAPNP_CFG_PORT + (tmp << 1),
956                                           res->start);
957                 }
958         }
959         for (tmp = 0; tmp < ISAPNP_MAX_IRQ; tmp++) {
960                 res = pnp_get_resource(dev, IORESOURCE_IRQ, tmp);
961                 if (pnp_resource_enabled(res)) {
962                         int irq = res->start;
963                         if (irq == 2)
964                                 irq = 9;
965                         dev_dbg(&dev->dev, "  set irq %d to %d\n", tmp, irq);
966                         isapnp_write_byte(ISAPNP_CFG_IRQ + (tmp << 1), irq);
967                 }
968         }
969         for (tmp = 0; tmp < ISAPNP_MAX_DMA; tmp++) {
970                 res = pnp_get_resource(dev, IORESOURCE_DMA, tmp);
971                 if (pnp_resource_enabled(res)) {
972                         dev_dbg(&dev->dev, "  set dma %d to %lld\n",
973                                 tmp, (unsigned long long) res->start);
974                         isapnp_write_byte(ISAPNP_CFG_DMA + tmp, res->start);
975                 }
976         }
977         for (tmp = 0; tmp < ISAPNP_MAX_MEM; tmp++) {
978                 res = pnp_get_resource(dev, IORESOURCE_MEM, tmp);
979                 if (pnp_resource_enabled(res)) {
980                         dev_dbg(&dev->dev, "  set mem %d to %#llx\n",
981                                 tmp, (unsigned long long) res->start);
982                         isapnp_write_word(ISAPNP_CFG_MEM + (tmp << 3),
983                                           (res->start >> 8) & 0xffff);
984                 }
985         }
986         /* FIXME: We aren't handling 32bit mems properly here */
987         isapnp_activate(dev->number);
988         isapnp_cfg_end();
989         return 0;
990 }
991
992 static int isapnp_disable_resources(struct pnp_dev *dev)
993 {
994         if (!dev->active)
995                 return -EINVAL;
996         isapnp_cfg_begin(dev->card->number, dev->number);
997         isapnp_deactivate(dev->number);
998         dev->active = 0;
999         isapnp_cfg_end();
1000         return 0;
1001 }
1002
1003 struct pnp_protocol isapnp_protocol = {
1004         .name = "ISA Plug and Play",
1005         .get = isapnp_get_resources,
1006         .set = isapnp_set_resources,
1007         .disable = isapnp_disable_resources,
1008 };
1009
1010 static int __init isapnp_init(void)
1011 {
1012         int cards;
1013         struct pnp_card *card;
1014         struct pnp_dev *dev;
1015
1016         if (isapnp_disable) {
1017                 printk(KERN_INFO "isapnp: ISA Plug & Play support disabled\n");
1018                 return 0;
1019         }
1020 #ifdef CONFIG_PPC_MERGE
1021         if (check_legacy_ioport(_PIDXR) || check_legacy_ioport(_PNPWRP))
1022                 return -EINVAL;
1023 #endif
1024 #ifdef ISAPNP_REGION_OK
1025         if (!request_region(_PIDXR, 1, "isapnp index")) {
1026                 printk(KERN_ERR "isapnp: Index Register 0x%x already used\n",
1027                        _PIDXR);
1028                 return -EBUSY;
1029         }
1030 #endif
1031         if (!request_region(_PNPWRP, 1, "isapnp write")) {
1032                 printk(KERN_ERR
1033                        "isapnp: Write Data Register 0x%x already used\n",
1034                        _PNPWRP);
1035 #ifdef ISAPNP_REGION_OK
1036                 release_region(_PIDXR, 1);
1037 #endif
1038                 return -EBUSY;
1039         }
1040
1041         if (pnp_register_protocol(&isapnp_protocol) < 0)
1042                 return -EBUSY;
1043
1044         /*
1045          *      Print a message. The existing ISAPnP code is hanging machines
1046          *      so let the user know where.
1047          */
1048
1049         printk(KERN_INFO "isapnp: Scanning for PnP cards...\n");
1050         if (isapnp_rdp >= 0x203 && isapnp_rdp <= 0x3ff) {
1051                 isapnp_rdp |= 3;
1052                 if (!request_region(isapnp_rdp, 1, "isapnp read")) {
1053                         printk(KERN_ERR
1054                                "isapnp: Read Data Register 0x%x already used\n",
1055                                isapnp_rdp);
1056 #ifdef ISAPNP_REGION_OK
1057                         release_region(_PIDXR, 1);
1058 #endif
1059                         release_region(_PNPWRP, 1);
1060                         return -EBUSY;
1061                 }
1062                 isapnp_set_rdp();
1063         }
1064         if (isapnp_rdp < 0x203 || isapnp_rdp > 0x3ff) {
1065                 cards = isapnp_isolate();
1066                 if (cards < 0 || (isapnp_rdp < 0x203 || isapnp_rdp > 0x3ff)) {
1067 #ifdef ISAPNP_REGION_OK
1068                         release_region(_PIDXR, 1);
1069 #endif
1070                         release_region(_PNPWRP, 1);
1071                         printk(KERN_INFO
1072                                "isapnp: No Plug & Play device found\n");
1073                         return 0;
1074                 }
1075                 request_region(isapnp_rdp, 1, "isapnp read");
1076         }
1077         isapnp_build_device_list();
1078         cards = 0;
1079
1080         protocol_for_each_card(&isapnp_protocol, card) {
1081                 cards++;
1082                 if (isapnp_verbose) {
1083                         dev_info(&card->dev, "card '%s'\n",
1084                                card->name[0] ? card->name : "unknown");
1085                         if (isapnp_verbose < 2)
1086                                 continue;
1087                         card_for_each_dev(card, dev) {
1088                                 dev_info(&card->dev, "device '%s'\n",
1089                                        dev->name[0] ? dev->name : "unknown");
1090                         }
1091                 }
1092         }
1093         if (cards)
1094                 printk(KERN_INFO
1095                        "isapnp: %i Plug & Play card%s detected total\n", cards,
1096                        cards > 1 ? "s" : "");
1097         else
1098                 printk(KERN_INFO "isapnp: No Plug & Play card found\n");
1099
1100         isapnp_proc_init();
1101         return 0;
1102 }
1103
1104 device_initcall(isapnp_init);
1105
1106 /* format is: noisapnp */
1107
1108 static int __init isapnp_setup_disable(char *str)
1109 {
1110         isapnp_disable = 1;
1111         return 1;
1112 }
1113
1114 __setup("noisapnp", isapnp_setup_disable);
1115
1116 /* format is: isapnp=rdp,reset,skip_pci_scan,verbose */
1117
1118 static int __init isapnp_setup_isapnp(char *str)
1119 {
1120         (void)((get_option(&str, &isapnp_rdp) == 2) &&
1121                (get_option(&str, &isapnp_reset) == 2) &&
1122                (get_option(&str, &isapnp_verbose) == 2));
1123         return 1;
1124 }
1125
1126 __setup("isapnp=", isapnp_setup_isapnp);