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13#include "modpost.h"
14
15
16
17#if KERNEL_ELFCLASS == ELFCLASS32
18typedef Elf32_Addr kernel_ulong_t;
19#define BITS_PER_LONG 32
20#else
21typedef Elf64_Addr kernel_ulong_t;
22#define BITS_PER_LONG 64
23#endif
24#ifdef __sun__
25#include <inttypes.h>
26#else
27#include <stdint.h>
28#endif
29
30#include <ctype.h>
31
32typedef uint32_t __u32;
33typedef uint16_t __u16;
34typedef unsigned char __u8;
35
36
37
38
39#include "../../include/linux/mod_devicetable.h"
40
41#define ADD(str, sep, cond, field) \
42do { \
43 strcat(str, sep); \
44 if (cond) \
45 sprintf(str + strlen(str), \
46 sizeof(field) == 1 ? "%02X" : \
47 sizeof(field) == 2 ? "%04X" : \
48 sizeof(field) == 4 ? "%08X" : "", \
49 field); \
50 else \
51 sprintf(str + strlen(str), "*"); \
52} while(0)
53
54
55static inline void add_wildcard(char *str)
56{
57 int len = strlen(str);
58
59 if (str[len - 1] != '*')
60 strcat(str + len, "*");
61}
62
63unsigned int cross_build = 0;
64
65
66
67
68
69
70
71static void device_id_check(const char *modname, const char *device_id,
72 unsigned long size, unsigned long id_size,
73 void *symval)
74{
75 int i;
76
77 if (size % id_size || size < id_size) {
78 if (cross_build != 0)
79 return;
80 fatal("%s: sizeof(struct %s_device_id)=%lu is not a modulo "
81 "of the size of section __mod_%s_device_table=%lu.\n"
82 "Fix definition of struct %s_device_id "
83 "in mod_devicetable.h\n",
84 modname, device_id, id_size, device_id, size, device_id);
85 }
86
87 for (i = 0; i < id_size; i++ ) {
88 if (*(uint8_t*)(symval+size-id_size+i)) {
89 fprintf(stderr,"%s: struct %s_device_id is %lu bytes. "
90 "The last of %lu is:\n",
91 modname, device_id, id_size, size / id_size);
92 for (i = 0; i < id_size; i++ )
93 fprintf(stderr,"0x%02x ",
94 *(uint8_t*)(symval+size-id_size+i) );
95 fprintf(stderr,"\n");
96 fatal("%s: struct %s_device_id is not terminated "
97 "with a NULL entry!\n", modname, device_id);
98 }
99 }
100}
101
102
103
104static void do_usb_entry(struct usb_device_id *id,
105 unsigned int bcdDevice_initial, int bcdDevice_initial_digits,
106 unsigned char range_lo, unsigned char range_hi,
107 unsigned char max, struct module *mod)
108{
109 char alias[500];
110 strcpy(alias, "usb:");
111 ADD(alias, "v", id->match_flags&USB_DEVICE_ID_MATCH_VENDOR,
112 id->idVendor);
113 ADD(alias, "p", id->match_flags&USB_DEVICE_ID_MATCH_PRODUCT,
114 id->idProduct);
115
116 strcat(alias, "d");
117 if (bcdDevice_initial_digits)
118 sprintf(alias + strlen(alias), "%0*X",
119 bcdDevice_initial_digits, bcdDevice_initial);
120 if (range_lo == range_hi)
121 sprintf(alias + strlen(alias), "%X", range_lo);
122 else if (range_lo > 0 || range_hi < max) {
123 if (range_lo > 0x9 || range_hi < 0xA)
124 sprintf(alias + strlen(alias),
125 "[%X-%X]",
126 range_lo,
127 range_hi);
128 else {
129 sprintf(alias + strlen(alias),
130 range_lo < 0x9 ? "[%X-9" : "[%X",
131 range_lo);
132 sprintf(alias + strlen(alias),
133 range_hi > 0xA ? "a-%X]" : "%X]",
134 range_lo);
135 }
136 }
137 if (bcdDevice_initial_digits < (sizeof(id->bcdDevice_lo) * 2 - 1))
138 strcat(alias, "*");
139
140 ADD(alias, "dc", id->match_flags&USB_DEVICE_ID_MATCH_DEV_CLASS,
141 id->bDeviceClass);
142 ADD(alias, "dsc",
143 id->match_flags&USB_DEVICE_ID_MATCH_DEV_SUBCLASS,
144 id->bDeviceSubClass);
145 ADD(alias, "dp",
146 id->match_flags&USB_DEVICE_ID_MATCH_DEV_PROTOCOL,
147 id->bDeviceProtocol);
148 ADD(alias, "ic",
149 id->match_flags&USB_DEVICE_ID_MATCH_INT_CLASS,
150 id->bInterfaceClass);
151 ADD(alias, "isc",
152 id->match_flags&USB_DEVICE_ID_MATCH_INT_SUBCLASS,
153 id->bInterfaceSubClass);
154 ADD(alias, "ip",
155 id->match_flags&USB_DEVICE_ID_MATCH_INT_PROTOCOL,
156 id->bInterfaceProtocol);
157
158 add_wildcard(alias);
159 buf_printf(&mod->dev_table_buf,
160 "MODULE_ALIAS(\"%s\");\n", alias);
161}
162
163
164
165static unsigned int incbcd(unsigned int *bcd,
166 int inc,
167 unsigned char max,
168 size_t chars)
169{
170 unsigned int init = *bcd, i, j;
171 unsigned long long c, dec = 0;
172
173
174 if (max > 0x9) {
175 *bcd += inc;
176 return init;
177 }
178
179
180 for (i=0 ; i < chars ; i++) {
181 c = (*bcd >> (i << 2)) & 0xf;
182 c = c > 9 ? 9 : c;
183 for (j=0 ; j < i ; j++)
184 c = c * 10;
185 dec += c;
186 }
187
188
189 dec += inc;
190 *bcd = 0;
191
192
193 for (i=0 ; i < chars ; i++) {
194 for (c=1,j=0 ; j < i ; j++)
195 c = c * 10;
196 c = (dec / c) % 10;
197 *bcd += c << (i << 2);
198 }
199 return init;
200}
201
202static void do_usb_entry_multi(struct usb_device_id *id, struct module *mod)
203{
204 unsigned int devlo, devhi;
205 unsigned char chi, clo, max;
206 int ndigits;
207
208 id->match_flags = TO_NATIVE(id->match_flags);
209 id->idVendor = TO_NATIVE(id->idVendor);
210 id->idProduct = TO_NATIVE(id->idProduct);
211
212 devlo = id->match_flags & USB_DEVICE_ID_MATCH_DEV_LO ?
213 TO_NATIVE(id->bcdDevice_lo) : 0x0U;
214 devhi = id->match_flags & USB_DEVICE_ID_MATCH_DEV_HI ?
215 TO_NATIVE(id->bcdDevice_hi) : ~0x0U;
216
217
218 max = 0x9;
219 for (ndigits = 0 ; ndigits < sizeof(id->bcdDevice_lo) * 2 ; ndigits++) {
220 clo = (devlo >> (ndigits << 2)) & 0xf;
221 chi = ((devhi > 0x9999 ? 0x9999 : devhi) >> (ndigits << 2)) & 0xf;
222 if (clo > max || chi > max) {
223 max = 0xf;
224 break;
225 }
226 }
227
228
229
230
231
232 if (!(id->idVendor | id->idProduct | id->bDeviceClass | id->bInterfaceClass))
233 return;
234
235
236 for (ndigits = sizeof(id->bcdDevice_lo) * 2 - 1; devlo <= devhi; ndigits--) {
237 clo = devlo & 0xf;
238 chi = devhi & 0xf;
239 if (chi > max)
240 chi = max;
241 devlo >>= 4;
242 devhi >>= 4;
243
244 if (devlo == devhi || !ndigits) {
245 do_usb_entry(id, devlo, ndigits, clo, chi, max, mod);
246 break;
247 }
248
249 if (clo > 0x0)
250 do_usb_entry(id,
251 incbcd(&devlo, 1, max,
252 sizeof(id->bcdDevice_lo) * 2),
253 ndigits, clo, max, max, mod);
254
255 if (chi < max)
256 do_usb_entry(id,
257 incbcd(&devhi, -1, max,
258 sizeof(id->bcdDevice_lo) * 2),
259 ndigits, 0x0, chi, max, mod);
260 }
261}
262
263static void do_usb_table(void *symval, unsigned long size,
264 struct module *mod)
265{
266 unsigned int i;
267 const unsigned long id_size = sizeof(struct usb_device_id);
268
269 device_id_check(mod->name, "usb", size, id_size, symval);
270
271
272 size -= id_size;
273
274 for (i = 0; i < size; i += id_size)
275 do_usb_entry_multi(symval + i, mod);
276}
277
278
279static int do_hid_entry(const char *filename,
280 struct hid_device_id *id, char *alias)
281{
282 id->bus = TO_NATIVE(id->bus);
283 id->vendor = TO_NATIVE(id->vendor);
284 id->product = TO_NATIVE(id->product);
285
286 sprintf(alias, "hid:b%04X", id->bus);
287 ADD(alias, "v", id->vendor != HID_ANY_ID, id->vendor);
288 ADD(alias, "p", id->product != HID_ANY_ID, id->product);
289
290 return 1;
291}
292
293
294static int do_ieee1394_entry(const char *filename,
295 struct ieee1394_device_id *id, char *alias)
296{
297 id->match_flags = TO_NATIVE(id->match_flags);
298 id->vendor_id = TO_NATIVE(id->vendor_id);
299 id->model_id = TO_NATIVE(id->model_id);
300 id->specifier_id = TO_NATIVE(id->specifier_id);
301 id->version = TO_NATIVE(id->version);
302
303 strcpy(alias, "ieee1394:");
304 ADD(alias, "ven", id->match_flags & IEEE1394_MATCH_VENDOR_ID,
305 id->vendor_id);
306 ADD(alias, "mo", id->match_flags & IEEE1394_MATCH_MODEL_ID,
307 id->model_id);
308 ADD(alias, "sp", id->match_flags & IEEE1394_MATCH_SPECIFIER_ID,
309 id->specifier_id);
310 ADD(alias, "ver", id->match_flags & IEEE1394_MATCH_VERSION,
311 id->version);
312
313 add_wildcard(alias);
314 return 1;
315}
316
317
318static int do_pci_entry(const char *filename,
319 struct pci_device_id *id, char *alias)
320{
321
322 unsigned char baseclass, subclass, interface,
323 baseclass_mask, subclass_mask, interface_mask;
324
325 id->vendor = TO_NATIVE(id->vendor);
326 id->device = TO_NATIVE(id->device);
327 id->subvendor = TO_NATIVE(id->subvendor);
328 id->subdevice = TO_NATIVE(id->subdevice);
329 id->class = TO_NATIVE(id->class);
330 id->class_mask = TO_NATIVE(id->class_mask);
331
332 strcpy(alias, "pci:");
333 ADD(alias, "v", id->vendor != PCI_ANY_ID, id->vendor);
334 ADD(alias, "d", id->device != PCI_ANY_ID, id->device);
335 ADD(alias, "sv", id->subvendor != PCI_ANY_ID, id->subvendor);
336 ADD(alias, "sd", id->subdevice != PCI_ANY_ID, id->subdevice);
337
338 baseclass = (id->class) >> 16;
339 baseclass_mask = (id->class_mask) >> 16;
340 subclass = (id->class) >> 8;
341 subclass_mask = (id->class_mask) >> 8;
342 interface = id->class;
343 interface_mask = id->class_mask;
344
345 if ((baseclass_mask != 0 && baseclass_mask != 0xFF)
346 || (subclass_mask != 0 && subclass_mask != 0xFF)
347 || (interface_mask != 0 && interface_mask != 0xFF)) {
348 warn("Can't handle masks in %s:%04X\n",
349 filename, id->class_mask);
350 return 0;
351 }
352
353 ADD(alias, "bc", baseclass_mask == 0xFF, baseclass);
354 ADD(alias, "sc", subclass_mask == 0xFF, subclass);
355 ADD(alias, "i", interface_mask == 0xFF, interface);
356 add_wildcard(alias);
357 return 1;
358}
359
360
361static int do_ccw_entry(const char *filename,
362 struct ccw_device_id *id, char *alias)
363{
364 id->match_flags = TO_NATIVE(id->match_flags);
365 id->cu_type = TO_NATIVE(id->cu_type);
366 id->cu_model = TO_NATIVE(id->cu_model);
367 id->dev_type = TO_NATIVE(id->dev_type);
368 id->dev_model = TO_NATIVE(id->dev_model);
369
370 strcpy(alias, "ccw:");
371 ADD(alias, "t", id->match_flags&CCW_DEVICE_ID_MATCH_CU_TYPE,
372 id->cu_type);
373 ADD(alias, "m", id->match_flags&CCW_DEVICE_ID_MATCH_CU_MODEL,
374 id->cu_model);
375 ADD(alias, "dt", id->match_flags&CCW_DEVICE_ID_MATCH_DEVICE_TYPE,
376 id->dev_type);
377 ADD(alias, "dm", id->match_flags&CCW_DEVICE_ID_MATCH_DEVICE_MODEL,
378 id->dev_model);
379 add_wildcard(alias);
380 return 1;
381}
382
383
384static int do_ap_entry(const char *filename,
385 struct ap_device_id *id, char *alias)
386{
387 sprintf(alias, "ap:t%02X*", id->dev_type);
388 return 1;
389}
390
391
392static int do_css_entry(const char *filename,
393 struct css_device_id *id, char *alias)
394{
395 sprintf(alias, "css:t%01X", id->type);
396 return 1;
397}
398
399
400static int do_serio_entry(const char *filename,
401 struct serio_device_id *id, char *alias)
402{
403 id->type = TO_NATIVE(id->type);
404 id->proto = TO_NATIVE(id->proto);
405 id->id = TO_NATIVE(id->id);
406 id->extra = TO_NATIVE(id->extra);
407
408 strcpy(alias, "serio:");
409 ADD(alias, "ty", id->type != SERIO_ANY, id->type);
410 ADD(alias, "pr", id->proto != SERIO_ANY, id->proto);
411 ADD(alias, "id", id->id != SERIO_ANY, id->id);
412 ADD(alias, "ex", id->extra != SERIO_ANY, id->extra);
413
414 add_wildcard(alias);
415 return 1;
416}
417
418
419static int do_acpi_entry(const char *filename,
420 struct acpi_device_id *id, char *alias)
421{
422 sprintf(alias, "acpi*:%s:*", id->id);
423 return 1;
424}
425
426
427static void do_pnp_device_entry(void *symval, unsigned long size,
428 struct module *mod)
429{
430 const unsigned long id_size = sizeof(struct pnp_device_id);
431 const unsigned int count = (size / id_size)-1;
432 const struct pnp_device_id *devs = symval;
433 unsigned int i;
434
435 device_id_check(mod->name, "pnp", size, id_size, symval);
436
437 for (i = 0; i < count; i++) {
438 const char *id = (char *)devs[i].id;
439 char acpi_id[sizeof(devs[0].id)];
440 int j;
441
442 buf_printf(&mod->dev_table_buf,
443 "MODULE_ALIAS(\"pnp:d%s*\");\n", id);
444
445
446 for (j = 0; j < sizeof(acpi_id); j++)
447 acpi_id[j] = toupper(id[j]);
448 buf_printf(&mod->dev_table_buf,
449 "MODULE_ALIAS(\"acpi*:%s:*\");\n", acpi_id);
450 }
451}
452
453
454static void do_pnp_card_entries(void *symval, unsigned long size,
455 struct module *mod)
456{
457 const unsigned long id_size = sizeof(struct pnp_card_device_id);
458 const unsigned int count = (size / id_size)-1;
459 const struct pnp_card_device_id *cards = symval;
460 unsigned int i;
461
462 device_id_check(mod->name, "pnp", size, id_size, symval);
463
464 for (i = 0; i < count; i++) {
465 unsigned int j;
466 const struct pnp_card_device_id *card = &cards[i];
467
468 for (j = 0; j < PNP_MAX_DEVICES; j++) {
469 const char *id = (char *)card->devs[j].id;
470 int i2, j2;
471 int dup = 0;
472
473 if (!id[0])
474 break;
475
476
477 for (i2 = 0; i2 < i && !dup; i2++) {
478 const struct pnp_card_device_id *card2 = &cards[i2];
479
480 for (j2 = 0; j2 < PNP_MAX_DEVICES; j2++) {
481 const char *id2 = (char *)card2->devs[j2].id;
482
483 if (!id2[0])
484 break;
485
486 if (!strcmp(id, id2)) {
487 dup = 1;
488 break;
489 }
490 }
491 }
492
493
494 if (!dup) {
495 char acpi_id[sizeof(card->devs[0].id)];
496 int k;
497
498 buf_printf(&mod->dev_table_buf,
499 "MODULE_ALIAS(\"pnp:d%s*\");\n", id);
500
501
502 for (k = 0; k < sizeof(acpi_id); k++)
503 acpi_id[k] = toupper(id[k]);
504 buf_printf(&mod->dev_table_buf,
505 "MODULE_ALIAS(\"acpi*:%s:*\");\n", acpi_id);
506 }
507 }
508 }
509}
510
511
512static int do_pcmcia_entry(const char *filename,
513 struct pcmcia_device_id *id, char *alias)
514{
515 unsigned int i;
516
517 id->match_flags = TO_NATIVE(id->match_flags);
518 id->manf_id = TO_NATIVE(id->manf_id);
519 id->card_id = TO_NATIVE(id->card_id);
520 id->func_id = TO_NATIVE(id->func_id);
521 id->function = TO_NATIVE(id->function);
522 id->device_no = TO_NATIVE(id->device_no);
523
524 for (i=0; i<4; i++) {
525 id->prod_id_hash[i] = TO_NATIVE(id->prod_id_hash[i]);
526 }
527
528 strcpy(alias, "pcmcia:");
529 ADD(alias, "m", id->match_flags & PCMCIA_DEV_ID_MATCH_MANF_ID,
530 id->manf_id);
531 ADD(alias, "c", id->match_flags & PCMCIA_DEV_ID_MATCH_CARD_ID,
532 id->card_id);
533 ADD(alias, "f", id->match_flags & PCMCIA_DEV_ID_MATCH_FUNC_ID,
534 id->func_id);
535 ADD(alias, "fn", id->match_flags & PCMCIA_DEV_ID_MATCH_FUNCTION,
536 id->function);
537 ADD(alias, "pfn", id->match_flags & PCMCIA_DEV_ID_MATCH_DEVICE_NO,
538 id->device_no);
539 ADD(alias, "pa", id->match_flags & PCMCIA_DEV_ID_MATCH_PROD_ID1, id->prod_id_hash[0]);
540 ADD(alias, "pb", id->match_flags & PCMCIA_DEV_ID_MATCH_PROD_ID2, id->prod_id_hash[1]);
541 ADD(alias, "pc", id->match_flags & PCMCIA_DEV_ID_MATCH_PROD_ID3, id->prod_id_hash[2]);
542 ADD(alias, "pd", id->match_flags & PCMCIA_DEV_ID_MATCH_PROD_ID4, id->prod_id_hash[3]);
543
544 add_wildcard(alias);
545 return 1;
546}
547
548
549
550static int do_of_entry (const char *filename, struct of_device_id *of, char *alias)
551{
552 int len;
553 char *tmp;
554 len = sprintf (alias, "of:N%sT%s",
555 of->name[0] ? of->name : "*",
556 of->type[0] ? of->type : "*");
557
558 if (of->compatible[0])
559 sprintf (&alias[len], "%sC%s",
560 of->type[0] ? "*" : "",
561 of->compatible);
562
563
564 for (tmp = alias; tmp && *tmp; tmp++)
565 if (isspace (*tmp))
566 *tmp = '_';
567
568 add_wildcard(alias);
569 return 1;
570}
571
572static int do_vio_entry(const char *filename, struct vio_device_id *vio,
573 char *alias)
574{
575 char *tmp;
576
577 sprintf(alias, "vio:T%sS%s", vio->type[0] ? vio->type : "*",
578 vio->compat[0] ? vio->compat : "*");
579
580
581 for (tmp = alias; tmp && *tmp; tmp++)
582 if (isspace (*tmp))
583 *tmp = '_';
584
585 add_wildcard(alias);
586 return 1;
587}
588
589#define ARRAY_SIZE(x) (sizeof(x) / sizeof((x)[0]))
590
591static void do_input(char *alias,
592 kernel_ulong_t *arr, unsigned int min, unsigned int max)
593{
594 unsigned int i;
595
596 for (i = min; i < max; i++)
597 if (arr[i / BITS_PER_LONG] & (1L << (i%BITS_PER_LONG)))
598 sprintf(alias + strlen(alias), "%X,*", i);
599}
600
601
602static int do_input_entry(const char *filename, struct input_device_id *id,
603 char *alias)
604{
605 sprintf(alias, "input:");
606
607 ADD(alias, "b", id->flags & INPUT_DEVICE_ID_MATCH_BUS, id->bustype);
608 ADD(alias, "v", id->flags & INPUT_DEVICE_ID_MATCH_VENDOR, id->vendor);
609 ADD(alias, "p", id->flags & INPUT_DEVICE_ID_MATCH_PRODUCT, id->product);
610 ADD(alias, "e", id->flags & INPUT_DEVICE_ID_MATCH_VERSION, id->version);
611
612 sprintf(alias + strlen(alias), "-e*");
613 if (id->flags & INPUT_DEVICE_ID_MATCH_EVBIT)
614 do_input(alias, id->evbit, 0, INPUT_DEVICE_ID_EV_MAX);
615 sprintf(alias + strlen(alias), "k*");
616 if (id->flags & INPUT_DEVICE_ID_MATCH_KEYBIT)
617 do_input(alias, id->keybit,
618 INPUT_DEVICE_ID_KEY_MIN_INTERESTING,
619 INPUT_DEVICE_ID_KEY_MAX);
620 sprintf(alias + strlen(alias), "r*");
621 if (id->flags & INPUT_DEVICE_ID_MATCH_RELBIT)
622 do_input(alias, id->relbit, 0, INPUT_DEVICE_ID_REL_MAX);
623 sprintf(alias + strlen(alias), "a*");
624 if (id->flags & INPUT_DEVICE_ID_MATCH_ABSBIT)
625 do_input(alias, id->absbit, 0, INPUT_DEVICE_ID_ABS_MAX);
626 sprintf(alias + strlen(alias), "m*");
627 if (id->flags & INPUT_DEVICE_ID_MATCH_MSCIT)
628 do_input(alias, id->mscbit, 0, INPUT_DEVICE_ID_MSC_MAX);
629 sprintf(alias + strlen(alias), "l*");
630 if (id->flags & INPUT_DEVICE_ID_MATCH_LEDBIT)
631 do_input(alias, id->ledbit, 0, INPUT_DEVICE_ID_LED_MAX);
632 sprintf(alias + strlen(alias), "s*");
633 if (id->flags & INPUT_DEVICE_ID_MATCH_SNDBIT)
634 do_input(alias, id->sndbit, 0, INPUT_DEVICE_ID_SND_MAX);
635 sprintf(alias + strlen(alias), "f*");
636 if (id->flags & INPUT_DEVICE_ID_MATCH_FFBIT)
637 do_input(alias, id->ffbit, 0, INPUT_DEVICE_ID_FF_MAX);
638 sprintf(alias + strlen(alias), "w*");
639 if (id->flags & INPUT_DEVICE_ID_MATCH_SWBIT)
640 do_input(alias, id->swbit, 0, INPUT_DEVICE_ID_SW_MAX);
641 return 1;
642}
643
644static int do_eisa_entry(const char *filename, struct eisa_device_id *eisa,
645 char *alias)
646{
647 if (eisa->sig[0])
648 sprintf(alias, EISA_DEVICE_MODALIAS_FMT "*", eisa->sig);
649 else
650 strcat(alias, "*");
651 return 1;
652}
653
654
655static int do_parisc_entry(const char *filename, struct parisc_device_id *id,
656 char *alias)
657{
658 id->hw_type = TO_NATIVE(id->hw_type);
659 id->hversion = TO_NATIVE(id->hversion);
660 id->hversion_rev = TO_NATIVE(id->hversion_rev);
661 id->sversion = TO_NATIVE(id->sversion);
662
663 strcpy(alias, "parisc:");
664 ADD(alias, "t", id->hw_type != PA_HWTYPE_ANY_ID, id->hw_type);
665 ADD(alias, "hv", id->hversion != PA_HVERSION_ANY_ID, id->hversion);
666 ADD(alias, "rev", id->hversion_rev != PA_HVERSION_REV_ANY_ID, id->hversion_rev);
667 ADD(alias, "sv", id->sversion != PA_SVERSION_ANY_ID, id->sversion);
668
669 add_wildcard(alias);
670 return 1;
671}
672
673
674static int do_sdio_entry(const char *filename,
675 struct sdio_device_id *id, char *alias)
676{
677 id->class = TO_NATIVE(id->class);
678 id->vendor = TO_NATIVE(id->vendor);
679 id->device = TO_NATIVE(id->device);
680
681 strcpy(alias, "sdio:");
682 ADD(alias, "c", id->class != (__u8)SDIO_ANY_ID, id->class);
683 ADD(alias, "v", id->vendor != (__u16)SDIO_ANY_ID, id->vendor);
684 ADD(alias, "d", id->device != (__u16)SDIO_ANY_ID, id->device);
685 add_wildcard(alias);
686 return 1;
687}
688
689
690static int do_ssb_entry(const char *filename,
691 struct ssb_device_id *id, char *alias)
692{
693 id->vendor = TO_NATIVE(id->vendor);
694 id->coreid = TO_NATIVE(id->coreid);
695 id->revision = TO_NATIVE(id->revision);
696
697 strcpy(alias, "ssb:");
698 ADD(alias, "v", id->vendor != SSB_ANY_VENDOR, id->vendor);
699 ADD(alias, "id", id->coreid != SSB_ANY_ID, id->coreid);
700 ADD(alias, "rev", id->revision != SSB_ANY_REV, id->revision);
701 add_wildcard(alias);
702 return 1;
703}
704
705
706static int do_bcma_entry(const char *filename,
707 struct bcma_device_id *id, char *alias)
708{
709 id->manuf = TO_NATIVE(id->manuf);
710 id->id = TO_NATIVE(id->id);
711 id->rev = TO_NATIVE(id->rev);
712 id->class = TO_NATIVE(id->class);
713
714 strcpy(alias, "bcma:");
715 ADD(alias, "m", id->manuf != BCMA_ANY_MANUF, id->manuf);
716 ADD(alias, "id", id->id != BCMA_ANY_ID, id->id);
717 ADD(alias, "rev", id->rev != BCMA_ANY_REV, id->rev);
718 ADD(alias, "cl", id->class != BCMA_ANY_CLASS, id->class);
719 add_wildcard(alias);
720 return 1;
721}
722
723
724static int do_virtio_entry(const char *filename, struct virtio_device_id *id,
725 char *alias)
726{
727 id->device = TO_NATIVE(id->device);
728 id->vendor = TO_NATIVE(id->vendor);
729
730 strcpy(alias, "virtio:");
731 ADD(alias, "d", id->device != VIRTIO_DEV_ANY_ID, id->device);
732 ADD(alias, "v", id->vendor != VIRTIO_DEV_ANY_ID, id->vendor);
733
734 add_wildcard(alias);
735 return 1;
736}
737
738
739
740
741
742
743
744static int do_vmbus_entry(const char *filename, struct hv_vmbus_device_id *id,
745 char *alias)
746{
747 int i;
748 char guid_name[((sizeof(id->guid) + 1)) * 2];
749
750 for (i = 0; i < (sizeof(id->guid) * 2); i += 2)
751 sprintf(&guid_name[i], "%02x", id->guid[i/2]);
752
753 strcpy(alias, "vmbus:");
754 strcat(alias, guid_name);
755
756 return 1;
757}
758
759
760static int do_i2c_entry(const char *filename, struct i2c_device_id *id,
761 char *alias)
762{
763 sprintf(alias, I2C_MODULE_PREFIX "%s", id->name);
764
765 return 1;
766}
767
768
769static int do_spi_entry(const char *filename, struct spi_device_id *id,
770 char *alias)
771{
772 sprintf(alias, SPI_MODULE_PREFIX "%s", id->name);
773
774 return 1;
775}
776
777static const struct dmifield {
778 const char *prefix;
779 int field;
780} dmi_fields[] = {
781 { "bvn", DMI_BIOS_VENDOR },
782 { "bvr", DMI_BIOS_VERSION },
783 { "bd", DMI_BIOS_DATE },
784 { "svn", DMI_SYS_VENDOR },
785 { "pn", DMI_PRODUCT_NAME },
786 { "pvr", DMI_PRODUCT_VERSION },
787 { "rvn", DMI_BOARD_VENDOR },
788 { "rn", DMI_BOARD_NAME },
789 { "rvr", DMI_BOARD_VERSION },
790 { "cvn", DMI_CHASSIS_VENDOR },
791 { "ct", DMI_CHASSIS_TYPE },
792 { "cvr", DMI_CHASSIS_VERSION },
793 { NULL, DMI_NONE }
794};
795
796static void dmi_ascii_filter(char *d, const char *s)
797{
798
799 for (; *s; s++)
800 if (*s > ' ' && *s < 127 && *s != ':')
801 *(d++) = *s;
802
803 *d = 0;
804}
805
806
807static int do_dmi_entry(const char *filename, struct dmi_system_id *id,
808 char *alias)
809{
810 int i, j;
811
812 sprintf(alias, "dmi*");
813
814 for (i = 0; i < ARRAY_SIZE(dmi_fields); i++) {
815 for (j = 0; j < 4; j++) {
816 if (id->matches[j].slot &&
817 id->matches[j].slot == dmi_fields[i].field) {
818 sprintf(alias + strlen(alias), ":%s*",
819 dmi_fields[i].prefix);
820 dmi_ascii_filter(alias + strlen(alias),
821 id->matches[j].substr);
822 strcat(alias, "*");
823 }
824 }
825 }
826
827 strcat(alias, ":");
828 return 1;
829}
830
831static int do_platform_entry(const char *filename,
832 struct platform_device_id *id, char *alias)
833{
834 sprintf(alias, PLATFORM_MODULE_PREFIX "%s", id->name);
835 return 1;
836}
837
838static int do_mdio_entry(const char *filename,
839 struct mdio_device_id *id, char *alias)
840{
841 int i;
842
843 alias += sprintf(alias, MDIO_MODULE_PREFIX);
844
845 for (i = 0; i < 32; i++) {
846 if (!((id->phy_id_mask >> (31-i)) & 1))
847 *(alias++) = '?';
848 else if ((id->phy_id >> (31-i)) & 1)
849 *(alias++) = '1';
850 else
851 *(alias++) = '0';
852 }
853
854
855 *alias = 0;
856
857 return 1;
858}
859
860
861static int do_zorro_entry(const char *filename, struct zorro_device_id *id,
862 char *alias)
863{
864 id->id = TO_NATIVE(id->id);
865 strcpy(alias, "zorro:");
866 ADD(alias, "i", id->id != ZORRO_WILDCARD, id->id);
867 return 1;
868}
869
870
871static int do_isapnp_entry(const char *filename,
872 struct isapnp_device_id *id, char *alias)
873{
874 sprintf(alias, "pnp:d%c%c%c%x%x%x%x*",
875 'A' + ((id->vendor >> 2) & 0x3f) - 1,
876 'A' + (((id->vendor & 3) << 3) | ((id->vendor >> 13) & 7)) - 1,
877 'A' + ((id->vendor >> 8) & 0x1f) - 1,
878 (id->function >> 4) & 0x0f, id->function & 0x0f,
879 (id->function >> 12) & 0x0f, (id->function >> 8) & 0x0f);
880 return 1;
881}
882
883
884static inline int sym_is(const char *symbol, const char *name)
885{
886 const char *match;
887
888 match = strstr(symbol, name);
889 if (!match)
890 return 0;
891 return match[strlen(name)] == '\0';
892}
893
894static void do_table(void *symval, unsigned long size,
895 unsigned long id_size,
896 const char *device_id,
897 void *function,
898 struct module *mod)
899{
900 unsigned int i;
901 char alias[500];
902 int (*do_entry)(const char *, void *entry, char *alias) = function;
903
904 device_id_check(mod->name, device_id, size, id_size, symval);
905
906 size -= id_size;
907
908 for (i = 0; i < size; i += id_size) {
909 if (do_entry(mod->name, symval+i, alias)) {
910 buf_printf(&mod->dev_table_buf,
911 "MODULE_ALIAS(\"%s\");\n", alias);
912 }
913 }
914}
915
916
917
918
919void handle_moddevtable(struct module *mod, struct elf_info *info,
920 Elf_Sym *sym, const char *symname)
921{
922 void *symval;
923 char *zeros = NULL;
924
925
926 if (!sym->st_shndx || get_secindex(info, sym) >= info->num_sections)
927 return;
928
929
930 if (info->sechdrs[get_secindex(info, sym)].sh_type & SHT_NOBITS) {
931 zeros = calloc(1, sym->st_size);
932 symval = zeros;
933 } else {
934 symval = (void *)info->hdr
935 + info->sechdrs[get_secindex(info, sym)].sh_offset
936 + sym->st_value;
937 }
938
939 if (sym_is(symname, "__mod_pci_device_table"))
940 do_table(symval, sym->st_size,
941 sizeof(struct pci_device_id), "pci",
942 do_pci_entry, mod);
943 else if (sym_is(symname, "__mod_usb_device_table"))
944
945 do_usb_table(symval, sym->st_size, mod);
946 else if (sym_is(symname, "__mod_hid_device_table"))
947 do_table(symval, sym->st_size,
948 sizeof(struct hid_device_id), "hid",
949 do_hid_entry, mod);
950 else if (sym_is(symname, "__mod_ieee1394_device_table"))
951 do_table(symval, sym->st_size,
952 sizeof(struct ieee1394_device_id), "ieee1394",
953 do_ieee1394_entry, mod);
954 else if (sym_is(symname, "__mod_ccw_device_table"))
955 do_table(symval, sym->st_size,
956 sizeof(struct ccw_device_id), "ccw",
957 do_ccw_entry, mod);
958 else if (sym_is(symname, "__mod_ap_device_table"))
959 do_table(symval, sym->st_size,
960 sizeof(struct ap_device_id), "ap",
961 do_ap_entry, mod);
962 else if (sym_is(symname, "__mod_css_device_table"))
963 do_table(symval, sym->st_size,
964 sizeof(struct css_device_id), "css",
965 do_css_entry, mod);
966 else if (sym_is(symname, "__mod_serio_device_table"))
967 do_table(symval, sym->st_size,
968 sizeof(struct serio_device_id), "serio",
969 do_serio_entry, mod);
970 else if (sym_is(symname, "__mod_acpi_device_table"))
971 do_table(symval, sym->st_size,
972 sizeof(struct acpi_device_id), "acpi",
973 do_acpi_entry, mod);
974 else if (sym_is(symname, "__mod_pnp_device_table"))
975 do_pnp_device_entry(symval, sym->st_size, mod);
976 else if (sym_is(symname, "__mod_pnp_card_device_table"))
977 do_pnp_card_entries(symval, sym->st_size, mod);
978 else if (sym_is(symname, "__mod_pcmcia_device_table"))
979 do_table(symval, sym->st_size,
980 sizeof(struct pcmcia_device_id), "pcmcia",
981 do_pcmcia_entry, mod);
982 else if (sym_is(symname, "__mod_of_device_table"))
983 do_table(symval, sym->st_size,
984 sizeof(struct of_device_id), "of",
985 do_of_entry, mod);
986 else if (sym_is(symname, "__mod_vio_device_table"))
987 do_table(symval, sym->st_size,
988 sizeof(struct vio_device_id), "vio",
989 do_vio_entry, mod);
990 else if (sym_is(symname, "__mod_input_device_table"))
991 do_table(symval, sym->st_size,
992 sizeof(struct input_device_id), "input",
993 do_input_entry, mod);
994 else if (sym_is(symname, "__mod_eisa_device_table"))
995 do_table(symval, sym->st_size,
996 sizeof(struct eisa_device_id), "eisa",
997 do_eisa_entry, mod);
998 else if (sym_is(symname, "__mod_parisc_device_table"))
999 do_table(symval, sym->st_size,
1000 sizeof(struct parisc_device_id), "parisc",
1001 do_parisc_entry, mod);
1002 else if (sym_is(symname, "__mod_sdio_device_table"))
1003 do_table(symval, sym->st_size,
1004 sizeof(struct sdio_device_id), "sdio",
1005 do_sdio_entry, mod);
1006 else if (sym_is(symname, "__mod_ssb_device_table"))
1007 do_table(symval, sym->st_size,
1008 sizeof(struct ssb_device_id), "ssb",
1009 do_ssb_entry, mod);
1010 else if (sym_is(symname, "__mod_bcma_device_table"))
1011 do_table(symval, sym->st_size,
1012 sizeof(struct bcma_device_id), "bcma",
1013 do_bcma_entry, mod);
1014 else if (sym_is(symname, "__mod_virtio_device_table"))
1015 do_table(symval, sym->st_size,
1016 sizeof(struct virtio_device_id), "virtio",
1017 do_virtio_entry, mod);
1018 else if (sym_is(symname, "__mod_vmbus_device_table"))
1019 do_table(symval, sym->st_size,
1020 sizeof(struct hv_vmbus_device_id), "vmbus",
1021 do_vmbus_entry, mod);
1022 else if (sym_is(symname, "__mod_i2c_device_table"))
1023 do_table(symval, sym->st_size,
1024 sizeof(struct i2c_device_id), "i2c",
1025 do_i2c_entry, mod);
1026 else if (sym_is(symname, "__mod_spi_device_table"))
1027 do_table(symval, sym->st_size,
1028 sizeof(struct spi_device_id), "spi",
1029 do_spi_entry, mod);
1030 else if (sym_is(symname, "__mod_dmi_device_table"))
1031 do_table(symval, sym->st_size,
1032 sizeof(struct dmi_system_id), "dmi",
1033 do_dmi_entry, mod);
1034 else if (sym_is(symname, "__mod_platform_device_table"))
1035 do_table(symval, sym->st_size,
1036 sizeof(struct platform_device_id), "platform",
1037 do_platform_entry, mod);
1038 else if (sym_is(symname, "__mod_mdio_device_table"))
1039 do_table(symval, sym->st_size,
1040 sizeof(struct mdio_device_id), "mdio",
1041 do_mdio_entry, mod);
1042 else if (sym_is(symname, "__mod_zorro_device_table"))
1043 do_table(symval, sym->st_size,
1044 sizeof(struct zorro_device_id), "zorro",
1045 do_zorro_entry, mod);
1046 else if (sym_is(symname, "__mod_isapnp_device_table"))
1047 do_table(symval, sym->st_size,
1048 sizeof(struct isapnp_device_id), "isa",
1049 do_isapnp_entry, mod);
1050 free(zeros);
1051}
1052
1053
1054void add_moddevtable(struct buffer *buf, struct module *mod)
1055{
1056 buf_printf(buf, "\n");
1057 buf_write(buf, mod->dev_table_buf.p, mod->dev_table_buf.pos);
1058 free(mod->dev_table_buf.p);
1059}
1060