ibmphp_res.c 58 KB

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  1. /*
  2. * IBM Hot Plug Controller Driver
  3. *
  4. * Written By: Irene Zubarev, IBM Corporation
  5. *
  6. * Copyright (C) 2001 Greg Kroah-Hartman (greg@kroah.com)
  7. * Copyright (C) 2001,2002 IBM Corp.
  8. *
  9. * All rights reserved.
  10. *
  11. * This program is free software; you can redistribute it and/or modify
  12. * it under the terms of the GNU General Public License as published by
  13. * the Free Software Foundation; either version 2 of the License, or (at
  14. * your option) any later version.
  15. *
  16. * This program is distributed in the hope that it will be useful, but
  17. * WITHOUT ANY WARRANTY; without even the implied warranty of
  18. * MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE, GOOD TITLE or
  19. * NON INFRINGEMENT. See the GNU General Public License for more
  20. * details.
  21. *
  22. * You should have received a copy of the GNU General Public License
  23. * along with this program; if not, write to the Free Software
  24. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  25. *
  26. * Send feedback to <gregkh@us.ibm.com>
  27. *
  28. */
  29. #include <linux/module.h>
  30. #include <linux/slab.h>
  31. #include <linux/pci.h>
  32. #include <linux/list.h>
  33. #include <linux/init.h>
  34. #include "ibmphp.h"
  35. static int flags = 0; /* for testing */
  36. static void update_resources (struct bus_node *bus_cur, int type, int rangeno);
  37. static int once_over (void);
  38. static int remove_ranges (struct bus_node *, struct bus_node *);
  39. static int update_bridge_ranges (struct bus_node **);
  40. static int add_bus_range (int type, struct range_node *, struct bus_node *);
  41. static void fix_resources (struct bus_node *);
  42. static struct bus_node *find_bus_wprev (u8, struct bus_node **, u8);
  43. static LIST_HEAD(gbuses);
  44. static struct bus_node * __init alloc_error_bus (struct ebda_pci_rsrc *curr, u8 busno, int flag)
  45. {
  46. struct bus_node *newbus;
  47. if (!(curr) && !(flag)) {
  48. err ("NULL pointer passed\n");
  49. return NULL;
  50. }
  51. newbus = kzalloc(sizeof(struct bus_node), GFP_KERNEL);
  52. if (!newbus) {
  53. err ("out of system memory\n");
  54. return NULL;
  55. }
  56. if (flag)
  57. newbus->busno = busno;
  58. else
  59. newbus->busno = curr->bus_num;
  60. list_add_tail (&newbus->bus_list, &gbuses);
  61. return newbus;
  62. }
  63. static struct resource_node * __init alloc_resources (struct ebda_pci_rsrc *curr)
  64. {
  65. struct resource_node *rs;
  66. if (!curr) {
  67. err ("NULL passed to allocate\n");
  68. return NULL;
  69. }
  70. rs = kzalloc(sizeof(struct resource_node), GFP_KERNEL);
  71. if (!rs) {
  72. err ("out of system memory\n");
  73. return NULL;
  74. }
  75. rs->busno = curr->bus_num;
  76. rs->devfunc = curr->dev_fun;
  77. rs->start = curr->start_addr;
  78. rs->end = curr->end_addr;
  79. rs->len = curr->end_addr - curr->start_addr + 1;
  80. return rs;
  81. }
  82. static int __init alloc_bus_range (struct bus_node **new_bus, struct range_node **new_range, struct ebda_pci_rsrc *curr, int flag, u8 first_bus)
  83. {
  84. struct bus_node *newbus;
  85. struct range_node *newrange;
  86. u8 num_ranges = 0;
  87. if (first_bus) {
  88. newbus = kzalloc(sizeof(struct bus_node), GFP_KERNEL);
  89. if (!newbus) {
  90. err ("out of system memory.\n");
  91. return -ENOMEM;
  92. }
  93. newbus->busno = curr->bus_num;
  94. } else {
  95. newbus = *new_bus;
  96. switch (flag) {
  97. case MEM:
  98. num_ranges = newbus->noMemRanges;
  99. break;
  100. case PFMEM:
  101. num_ranges = newbus->noPFMemRanges;
  102. break;
  103. case IO:
  104. num_ranges = newbus->noIORanges;
  105. break;
  106. }
  107. }
  108. newrange = kzalloc(sizeof(struct range_node), GFP_KERNEL);
  109. if (!newrange) {
  110. if (first_bus)
  111. kfree (newbus);
  112. err ("out of system memory\n");
  113. return -ENOMEM;
  114. }
  115. newrange->start = curr->start_addr;
  116. newrange->end = curr->end_addr;
  117. if (first_bus || (!num_ranges))
  118. newrange->rangeno = 1;
  119. else {
  120. /* need to insert our range */
  121. add_bus_range (flag, newrange, newbus);
  122. debug ("%d resource Primary Bus inserted on bus %x [%x - %x]\n", flag, newbus->busno, newrange->start, newrange->end);
  123. }
  124. switch (flag) {
  125. case MEM:
  126. newbus->rangeMem = newrange;
  127. if (first_bus)
  128. newbus->noMemRanges = 1;
  129. else {
  130. debug ("First Memory Primary on bus %x, [%x - %x]\n", newbus->busno, newrange->start, newrange->end);
  131. ++newbus->noMemRanges;
  132. fix_resources (newbus);
  133. }
  134. break;
  135. case IO:
  136. newbus->rangeIO = newrange;
  137. if (first_bus)
  138. newbus->noIORanges = 1;
  139. else {
  140. debug ("First IO Primary on bus %x, [%x - %x]\n", newbus->busno, newrange->start, newrange->end);
  141. ++newbus->noIORanges;
  142. fix_resources (newbus);
  143. }
  144. break;
  145. case PFMEM:
  146. newbus->rangePFMem = newrange;
  147. if (first_bus)
  148. newbus->noPFMemRanges = 1;
  149. else {
  150. debug ("1st PFMemory Primary on Bus %x [%x - %x]\n", newbus->busno, newrange->start, newrange->end);
  151. ++newbus->noPFMemRanges;
  152. fix_resources (newbus);
  153. }
  154. break;
  155. }
  156. *new_bus = newbus;
  157. *new_range = newrange;
  158. return 0;
  159. }
  160. /* Notes:
  161. * 1. The ranges are ordered. The buses are not ordered. (First come)
  162. *
  163. * 2. If cannot allocate out of PFMem range, allocate from Mem ranges. PFmemFromMem
  164. * are not sorted. (no need since use mem node). To not change the entire code, we
  165. * also add mem node whenever this case happens so as not to change
  166. * ibmphp_check_mem_resource etc (and since it really is taking Mem resource)
  167. */
  168. /*****************************************************************************
  169. * This is the Resource Management initialization function. It will go through
  170. * the Resource list taken from EBDA and fill in this module's data structures
  171. *
  172. * THIS IS NOT TAKING INTO CONSIDERATION IO RESTRICTIONS OF PRIMARY BUSES,
  173. * SINCE WE'RE GOING TO ASSUME FOR NOW WE DON'T HAVE THOSE ON OUR BUSES FOR NOW
  174. *
  175. * Input: ptr to the head of the resource list from EBDA
  176. * Output: 0, -1 or error codes
  177. ***************************************************************************/
  178. int __init ibmphp_rsrc_init (void)
  179. {
  180. struct ebda_pci_rsrc *curr;
  181. struct range_node *newrange = NULL;
  182. struct bus_node *newbus = NULL;
  183. struct bus_node *bus_cur;
  184. struct bus_node *bus_prev;
  185. struct list_head *tmp;
  186. struct resource_node *new_io = NULL;
  187. struct resource_node *new_mem = NULL;
  188. struct resource_node *new_pfmem = NULL;
  189. int rc;
  190. struct list_head *tmp_ebda;
  191. list_for_each (tmp_ebda, &ibmphp_ebda_pci_rsrc_head) {
  192. curr = list_entry (tmp_ebda, struct ebda_pci_rsrc, ebda_pci_rsrc_list);
  193. if (!(curr->rsrc_type & PCIDEVMASK)) {
  194. /* EBDA still lists non PCI devices, so ignore... */
  195. debug ("this is not a PCI DEVICE in rsrc_init, please take care\n");
  196. // continue;
  197. }
  198. /* this is a primary bus resource */
  199. if (curr->rsrc_type & PRIMARYBUSMASK) {
  200. /* memory */
  201. if ((curr->rsrc_type & RESTYPE) == MMASK) {
  202. /* no bus structure exists in place yet */
  203. if (list_empty (&gbuses)) {
  204. rc = alloc_bus_range(&newbus, &newrange, curr, MEM, 1);
  205. if (rc)
  206. return rc;
  207. list_add_tail (&newbus->bus_list, &gbuses);
  208. debug ("gbuses = NULL, Memory Primary Bus %x [%x - %x]\n", newbus->busno, newrange->start, newrange->end);
  209. } else {
  210. bus_cur = find_bus_wprev (curr->bus_num, &bus_prev, 1);
  211. /* found our bus */
  212. if (bus_cur) {
  213. rc = alloc_bus_range (&bus_cur, &newrange, curr, MEM, 0);
  214. if (rc)
  215. return rc;
  216. } else {
  217. /* went through all the buses and didn't find ours, need to create a new bus node */
  218. rc = alloc_bus_range(&newbus, &newrange, curr, MEM, 1);
  219. if (rc)
  220. return rc;
  221. list_add_tail (&newbus->bus_list, &gbuses);
  222. debug ("New Bus, Memory Primary Bus %x [%x - %x]\n", newbus->busno, newrange->start, newrange->end);
  223. }
  224. }
  225. } else if ((curr->rsrc_type & RESTYPE) == PFMASK) {
  226. /* prefetchable memory */
  227. if (list_empty (&gbuses)) {
  228. /* no bus structure exists in place yet */
  229. rc = alloc_bus_range(&newbus, &newrange, curr, PFMEM, 1);
  230. if (rc)
  231. return rc;
  232. list_add_tail (&newbus->bus_list, &gbuses);
  233. debug ("gbuses = NULL, PFMemory Primary Bus %x [%x - %x]\n", newbus->busno, newrange->start, newrange->end);
  234. } else {
  235. bus_cur = find_bus_wprev (curr->bus_num, &bus_prev, 1);
  236. if (bus_cur) {
  237. /* found our bus */
  238. rc = alloc_bus_range (&bus_cur, &newrange, curr, PFMEM, 0);
  239. if (rc)
  240. return rc;
  241. } else {
  242. /* went through all the buses and didn't find ours, need to create a new bus node */
  243. rc = alloc_bus_range(&newbus, &newrange, curr, PFMEM, 1);
  244. if (rc)
  245. return rc;
  246. list_add_tail (&newbus->bus_list, &gbuses);
  247. debug ("1st Bus, PFMemory Primary Bus %x [%x - %x]\n", newbus->busno, newrange->start, newrange->end);
  248. }
  249. }
  250. } else if ((curr->rsrc_type & RESTYPE) == IOMASK) {
  251. /* IO */
  252. if (list_empty (&gbuses)) {
  253. /* no bus structure exists in place yet */
  254. rc = alloc_bus_range(&newbus, &newrange, curr, IO, 1);
  255. if (rc)
  256. return rc;
  257. list_add_tail (&newbus->bus_list, &gbuses);
  258. debug ("gbuses = NULL, IO Primary Bus %x [%x - %x]\n", newbus->busno, newrange->start, newrange->end);
  259. } else {
  260. bus_cur = find_bus_wprev (curr->bus_num, &bus_prev, 1);
  261. if (bus_cur) {
  262. rc = alloc_bus_range (&bus_cur, &newrange, curr, IO, 0);
  263. if (rc)
  264. return rc;
  265. } else {
  266. /* went through all the buses and didn't find ours, need to create a new bus node */
  267. rc = alloc_bus_range(&newbus, &newrange, curr, IO, 1);
  268. if (rc)
  269. return rc;
  270. list_add_tail (&newbus->bus_list, &gbuses);
  271. debug ("1st Bus, IO Primary Bus %x [%x - %x]\n", newbus->busno, newrange->start, newrange->end);
  272. }
  273. }
  274. } else {
  275. ; /* type is reserved WHAT TO DO IN THIS CASE???
  276. NOTHING TO DO??? */
  277. }
  278. } else {
  279. /* regular pci device resource */
  280. if ((curr->rsrc_type & RESTYPE) == MMASK) {
  281. /* Memory resource */
  282. new_mem = alloc_resources (curr);
  283. if (!new_mem)
  284. return -ENOMEM;
  285. new_mem->type = MEM;
  286. /*
  287. * if it didn't find the bus, means PCI dev
  288. * came b4 the Primary Bus info, so need to
  289. * create a bus rangeno becomes a problem...
  290. * assign a -1 and then update once the range
  291. * actually appears...
  292. */
  293. if (ibmphp_add_resource (new_mem) < 0) {
  294. newbus = alloc_error_bus (curr, 0, 0);
  295. if (!newbus)
  296. return -ENOMEM;
  297. newbus->firstMem = new_mem;
  298. ++newbus->needMemUpdate;
  299. new_mem->rangeno = -1;
  300. }
  301. debug ("Memory resource for device %x, bus %x, [%x - %x]\n", new_mem->devfunc, new_mem->busno, new_mem->start, new_mem->end);
  302. } else if ((curr->rsrc_type & RESTYPE) == PFMASK) {
  303. /* PFMemory resource */
  304. new_pfmem = alloc_resources (curr);
  305. if (!new_pfmem)
  306. return -ENOMEM;
  307. new_pfmem->type = PFMEM;
  308. new_pfmem->fromMem = 0;
  309. if (ibmphp_add_resource (new_pfmem) < 0) {
  310. newbus = alloc_error_bus (curr, 0, 0);
  311. if (!newbus)
  312. return -ENOMEM;
  313. newbus->firstPFMem = new_pfmem;
  314. ++newbus->needPFMemUpdate;
  315. new_pfmem->rangeno = -1;
  316. }
  317. debug ("PFMemory resource for device %x, bus %x, [%x - %x]\n", new_pfmem->devfunc, new_pfmem->busno, new_pfmem->start, new_pfmem->end);
  318. } else if ((curr->rsrc_type & RESTYPE) == IOMASK) {
  319. /* IO resource */
  320. new_io = alloc_resources (curr);
  321. if (!new_io)
  322. return -ENOMEM;
  323. new_io->type = IO;
  324. /*
  325. * if it didn't find the bus, means PCI dev
  326. * came b4 the Primary Bus info, so need to
  327. * create a bus rangeno becomes a problem...
  328. * Can assign a -1 and then update once the
  329. * range actually appears...
  330. */
  331. if (ibmphp_add_resource (new_io) < 0) {
  332. newbus = alloc_error_bus (curr, 0, 0);
  333. if (!newbus)
  334. return -ENOMEM;
  335. newbus->firstIO = new_io;
  336. ++newbus->needIOUpdate;
  337. new_io->rangeno = -1;
  338. }
  339. debug ("IO resource for device %x, bus %x, [%x - %x]\n", new_io->devfunc, new_io->busno, new_io->start, new_io->end);
  340. }
  341. }
  342. }
  343. list_for_each (tmp, &gbuses) {
  344. bus_cur = list_entry (tmp, struct bus_node, bus_list);
  345. /* This is to get info about PPB resources, since EBDA doesn't put this info into the primary bus info */
  346. rc = update_bridge_ranges (&bus_cur);
  347. if (rc)
  348. return rc;
  349. }
  350. rc = once_over (); /* This is to align ranges (so no -1) */
  351. if (rc)
  352. return rc;
  353. return 0;
  354. }
  355. /********************************************************************************
  356. * This function adds a range into a sorted list of ranges per bus for a particular
  357. * range type, it then calls another routine to update the range numbers on the
  358. * pci devices' resources for the appropriate resource
  359. *
  360. * Input: type of the resource, range to add, current bus
  361. * Output: 0 or -1, bus and range ptrs
  362. ********************************************************************************/
  363. static int add_bus_range (int type, struct range_node *range, struct bus_node *bus_cur)
  364. {
  365. struct range_node *range_cur = NULL;
  366. struct range_node *range_prev;
  367. int count = 0, i_init;
  368. int noRanges = 0;
  369. switch (type) {
  370. case MEM:
  371. range_cur = bus_cur->rangeMem;
  372. noRanges = bus_cur->noMemRanges;
  373. break;
  374. case PFMEM:
  375. range_cur = bus_cur->rangePFMem;
  376. noRanges = bus_cur->noPFMemRanges;
  377. break;
  378. case IO:
  379. range_cur = bus_cur->rangeIO;
  380. noRanges = bus_cur->noIORanges;
  381. break;
  382. }
  383. range_prev = NULL;
  384. while (range_cur) {
  385. if (range->start < range_cur->start)
  386. break;
  387. range_prev = range_cur;
  388. range_cur = range_cur->next;
  389. count = count + 1;
  390. }
  391. if (!count) {
  392. /* our range will go at the beginning of the list */
  393. switch (type) {
  394. case MEM:
  395. bus_cur->rangeMem = range;
  396. break;
  397. case PFMEM:
  398. bus_cur->rangePFMem = range;
  399. break;
  400. case IO:
  401. bus_cur->rangeIO = range;
  402. break;
  403. }
  404. range->next = range_cur;
  405. range->rangeno = 1;
  406. i_init = 0;
  407. } else if (!range_cur) {
  408. /* our range will go at the end of the list */
  409. range->next = NULL;
  410. range_prev->next = range;
  411. range->rangeno = range_prev->rangeno + 1;
  412. return 0;
  413. } else {
  414. /* the range is in the middle */
  415. range_prev->next = range;
  416. range->next = range_cur;
  417. range->rangeno = range_cur->rangeno;
  418. i_init = range_prev->rangeno;
  419. }
  420. for (count = i_init; count < noRanges; ++count) {
  421. ++range_cur->rangeno;
  422. range_cur = range_cur->next;
  423. }
  424. update_resources (bus_cur, type, i_init + 1);
  425. return 0;
  426. }
  427. /*******************************************************************************
  428. * This routine goes through the list of resources of type 'type' and updates
  429. * the range numbers that they correspond to. It was called from add_bus_range fnc
  430. *
  431. * Input: bus, type of the resource, the rangeno starting from which to update
  432. ******************************************************************************/
  433. static void update_resources (struct bus_node *bus_cur, int type, int rangeno)
  434. {
  435. struct resource_node *res = NULL;
  436. u8 eol = 0; /* end of list indicator */
  437. switch (type) {
  438. case MEM:
  439. if (bus_cur->firstMem)
  440. res = bus_cur->firstMem;
  441. break;
  442. case PFMEM:
  443. if (bus_cur->firstPFMem)
  444. res = bus_cur->firstPFMem;
  445. break;
  446. case IO:
  447. if (bus_cur->firstIO)
  448. res = bus_cur->firstIO;
  449. break;
  450. }
  451. if (res) {
  452. while (res) {
  453. if (res->rangeno == rangeno)
  454. break;
  455. if (res->next)
  456. res = res->next;
  457. else if (res->nextRange)
  458. res = res->nextRange;
  459. else {
  460. eol = 1;
  461. break;
  462. }
  463. }
  464. if (!eol) {
  465. /* found the range */
  466. while (res) {
  467. ++res->rangeno;
  468. res = res->next;
  469. }
  470. }
  471. }
  472. }
  473. static void fix_me (struct resource_node *res, struct bus_node *bus_cur, struct range_node *range)
  474. {
  475. char * str = "";
  476. switch (res->type) {
  477. case IO:
  478. str = "io";
  479. break;
  480. case MEM:
  481. str = "mem";
  482. break;
  483. case PFMEM:
  484. str = "pfmem";
  485. break;
  486. }
  487. while (res) {
  488. if (res->rangeno == -1) {
  489. while (range) {
  490. if ((res->start >= range->start) && (res->end <= range->end)) {
  491. res->rangeno = range->rangeno;
  492. debug ("%s->rangeno in fix_resources is %d\n", str, res->rangeno);
  493. switch (res->type) {
  494. case IO:
  495. --bus_cur->needIOUpdate;
  496. break;
  497. case MEM:
  498. --bus_cur->needMemUpdate;
  499. break;
  500. case PFMEM:
  501. --bus_cur->needPFMemUpdate;
  502. break;
  503. }
  504. break;
  505. }
  506. range = range->next;
  507. }
  508. }
  509. if (res->next)
  510. res = res->next;
  511. else
  512. res = res->nextRange;
  513. }
  514. }
  515. /*****************************************************************************
  516. * This routine reassigns the range numbers to the resources that had a -1
  517. * This case can happen only if upon initialization, resources taken by pci dev
  518. * appear in EBDA before the resources allocated for that bus, since we don't
  519. * know the range, we assign -1, and this routine is called after a new range
  520. * is assigned to see the resources with unknown range belong to the added range
  521. *
  522. * Input: current bus
  523. * Output: none, list of resources for that bus are fixed if can be
  524. *******************************************************************************/
  525. static void fix_resources (struct bus_node *bus_cur)
  526. {
  527. struct range_node *range;
  528. struct resource_node *res;
  529. debug ("%s - bus_cur->busno = %d\n", __func__, bus_cur->busno);
  530. if (bus_cur->needIOUpdate) {
  531. res = bus_cur->firstIO;
  532. range = bus_cur->rangeIO;
  533. fix_me (res, bus_cur, range);
  534. }
  535. if (bus_cur->needMemUpdate) {
  536. res = bus_cur->firstMem;
  537. range = bus_cur->rangeMem;
  538. fix_me (res, bus_cur, range);
  539. }
  540. if (bus_cur->needPFMemUpdate) {
  541. res = bus_cur->firstPFMem;
  542. range = bus_cur->rangePFMem;
  543. fix_me (res, bus_cur, range);
  544. }
  545. }
  546. /*******************************************************************************
  547. * This routine adds a resource to the list of resources to the appropriate bus
  548. * based on their resource type and sorted by their starting addresses. It assigns
  549. * the ptrs to next and nextRange if needed.
  550. *
  551. * Input: resource ptr
  552. * Output: ptrs assigned (to the node)
  553. * 0 or -1
  554. *******************************************************************************/
  555. int ibmphp_add_resource (struct resource_node *res)
  556. {
  557. struct resource_node *res_cur;
  558. struct resource_node *res_prev;
  559. struct bus_node *bus_cur;
  560. struct range_node *range_cur = NULL;
  561. struct resource_node *res_start = NULL;
  562. debug ("%s - enter\n", __func__);
  563. if (!res) {
  564. err ("NULL passed to add\n");
  565. return -ENODEV;
  566. }
  567. bus_cur = find_bus_wprev (res->busno, NULL, 0);
  568. if (!bus_cur) {
  569. /* didn't find a bus, something's wrong!!! */
  570. debug ("no bus in the system, either pci_dev's wrong or allocation failed\n");
  571. return -ENODEV;
  572. }
  573. /* Normal case */
  574. switch (res->type) {
  575. case IO:
  576. range_cur = bus_cur->rangeIO;
  577. res_start = bus_cur->firstIO;
  578. break;
  579. case MEM:
  580. range_cur = bus_cur->rangeMem;
  581. res_start = bus_cur->firstMem;
  582. break;
  583. case PFMEM:
  584. range_cur = bus_cur->rangePFMem;
  585. res_start = bus_cur->firstPFMem;
  586. break;
  587. default:
  588. err ("cannot read the type of the resource to add... problem\n");
  589. return -EINVAL;
  590. }
  591. while (range_cur) {
  592. if ((res->start >= range_cur->start) && (res->end <= range_cur->end)) {
  593. res->rangeno = range_cur->rangeno;
  594. break;
  595. }
  596. range_cur = range_cur->next;
  597. }
  598. /* !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
  599. * this is again the case of rangeno = -1
  600. * !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
  601. */
  602. if (!range_cur) {
  603. switch (res->type) {
  604. case IO:
  605. ++bus_cur->needIOUpdate;
  606. break;
  607. case MEM:
  608. ++bus_cur->needMemUpdate;
  609. break;
  610. case PFMEM:
  611. ++bus_cur->needPFMemUpdate;
  612. break;
  613. }
  614. res->rangeno = -1;
  615. }
  616. debug ("The range is %d\n", res->rangeno);
  617. if (!res_start) {
  618. /* no first{IO,Mem,Pfmem} on the bus, 1st IO/Mem/Pfmem resource ever */
  619. switch (res->type) {
  620. case IO:
  621. bus_cur->firstIO = res;
  622. break;
  623. case MEM:
  624. bus_cur->firstMem = res;
  625. break;
  626. case PFMEM:
  627. bus_cur->firstPFMem = res;
  628. break;
  629. }
  630. res->next = NULL;
  631. res->nextRange = NULL;
  632. } else {
  633. res_cur = res_start;
  634. res_prev = NULL;
  635. debug ("res_cur->rangeno is %d\n", res_cur->rangeno);
  636. while (res_cur) {
  637. if (res_cur->rangeno >= res->rangeno)
  638. break;
  639. res_prev = res_cur;
  640. if (res_cur->next)
  641. res_cur = res_cur->next;
  642. else
  643. res_cur = res_cur->nextRange;
  644. }
  645. if (!res_cur) {
  646. /* at the end of the resource list */
  647. debug ("i should be here, [%x - %x]\n", res->start, res->end);
  648. res_prev->nextRange = res;
  649. res->next = NULL;
  650. res->nextRange = NULL;
  651. } else if (res_cur->rangeno == res->rangeno) {
  652. /* in the same range */
  653. while (res_cur) {
  654. if (res->start < res_cur->start)
  655. break;
  656. res_prev = res_cur;
  657. res_cur = res_cur->next;
  658. }
  659. if (!res_cur) {
  660. /* the last resource in this range */
  661. res_prev->next = res;
  662. res->next = NULL;
  663. res->nextRange = res_prev->nextRange;
  664. res_prev->nextRange = NULL;
  665. } else if (res->start < res_cur->start) {
  666. /* at the beginning or middle of the range */
  667. if (!res_prev) {
  668. switch (res->type) {
  669. case IO:
  670. bus_cur->firstIO = res;
  671. break;
  672. case MEM:
  673. bus_cur->firstMem = res;
  674. break;
  675. case PFMEM:
  676. bus_cur->firstPFMem = res;
  677. break;
  678. }
  679. } else if (res_prev->rangeno == res_cur->rangeno)
  680. res_prev->next = res;
  681. else
  682. res_prev->nextRange = res;
  683. res->next = res_cur;
  684. res->nextRange = NULL;
  685. }
  686. } else {
  687. /* this is the case where it is 1st occurrence of the range */
  688. if (!res_prev) {
  689. /* at the beginning of the resource list */
  690. res->next = NULL;
  691. switch (res->type) {
  692. case IO:
  693. res->nextRange = bus_cur->firstIO;
  694. bus_cur->firstIO = res;
  695. break;
  696. case MEM:
  697. res->nextRange = bus_cur->firstMem;
  698. bus_cur->firstMem = res;
  699. break;
  700. case PFMEM:
  701. res->nextRange = bus_cur->firstPFMem;
  702. bus_cur->firstPFMem = res;
  703. break;
  704. }
  705. } else if (res_cur->rangeno > res->rangeno) {
  706. /* in the middle of the resource list */
  707. res_prev->nextRange = res;
  708. res->next = NULL;
  709. res->nextRange = res_cur;
  710. }
  711. }
  712. }
  713. debug ("%s - exit\n", __func__);
  714. return 0;
  715. }
  716. /****************************************************************************
  717. * This routine will remove the resource from the list of resources
  718. *
  719. * Input: io, mem, and/or pfmem resource to be deleted
  720. * Output: modified resource list
  721. * 0 or error code
  722. ****************************************************************************/
  723. int ibmphp_remove_resource (struct resource_node *res)
  724. {
  725. struct bus_node *bus_cur;
  726. struct resource_node *res_cur = NULL;
  727. struct resource_node *res_prev;
  728. struct resource_node *mem_cur;
  729. char * type = "";
  730. if (!res) {
  731. err ("resource to remove is NULL\n");
  732. return -ENODEV;
  733. }
  734. bus_cur = find_bus_wprev (res->busno, NULL, 0);
  735. if (!bus_cur) {
  736. err ("cannot find corresponding bus of the io resource to remove bailing out...\n");
  737. return -ENODEV;
  738. }
  739. switch (res->type) {
  740. case IO:
  741. res_cur = bus_cur->firstIO;
  742. type = "io";
  743. break;
  744. case MEM:
  745. res_cur = bus_cur->firstMem;
  746. type = "mem";
  747. break;
  748. case PFMEM:
  749. res_cur = bus_cur->firstPFMem;
  750. type = "pfmem";
  751. break;
  752. default:
  753. err ("unknown type for resource to remove\n");
  754. return -EINVAL;
  755. }
  756. res_prev = NULL;
  757. while (res_cur) {
  758. if ((res_cur->start == res->start) && (res_cur->end == res->end))
  759. break;
  760. res_prev = res_cur;
  761. if (res_cur->next)
  762. res_cur = res_cur->next;
  763. else
  764. res_cur = res_cur->nextRange;
  765. }
  766. if (!res_cur) {
  767. if (res->type == PFMEM) {
  768. /*
  769. * case where pfmem might be in the PFMemFromMem list
  770. * so will also need to remove the corresponding mem
  771. * entry
  772. */
  773. res_cur = bus_cur->firstPFMemFromMem;
  774. res_prev = NULL;
  775. while (res_cur) {
  776. if ((res_cur->start == res->start) && (res_cur->end == res->end)) {
  777. mem_cur = bus_cur->firstMem;
  778. while (mem_cur) {
  779. if ((mem_cur->start == res_cur->start)
  780. && (mem_cur->end == res_cur->end))
  781. break;
  782. if (mem_cur->next)
  783. mem_cur = mem_cur->next;
  784. else
  785. mem_cur = mem_cur->nextRange;
  786. }
  787. if (!mem_cur) {
  788. err ("cannot find corresponding mem node for pfmem...\n");
  789. return -EINVAL;
  790. }
  791. ibmphp_remove_resource (mem_cur);
  792. if (!res_prev)
  793. bus_cur->firstPFMemFromMem = res_cur->next;
  794. else
  795. res_prev->next = res_cur->next;
  796. kfree (res_cur);
  797. return 0;
  798. }
  799. res_prev = res_cur;
  800. if (res_cur->next)
  801. res_cur = res_cur->next;
  802. else
  803. res_cur = res_cur->nextRange;
  804. }
  805. if (!res_cur) {
  806. err ("cannot find pfmem to delete...\n");
  807. return -EINVAL;
  808. }
  809. } else {
  810. err ("the %s resource is not in the list to be deleted...\n", type);
  811. return -EINVAL;
  812. }
  813. }
  814. if (!res_prev) {
  815. /* first device to be deleted */
  816. if (res_cur->next) {
  817. switch (res->type) {
  818. case IO:
  819. bus_cur->firstIO = res_cur->next;
  820. break;
  821. case MEM:
  822. bus_cur->firstMem = res_cur->next;
  823. break;
  824. case PFMEM:
  825. bus_cur->firstPFMem = res_cur->next;
  826. break;
  827. }
  828. } else if (res_cur->nextRange) {
  829. switch (res->type) {
  830. case IO:
  831. bus_cur->firstIO = res_cur->nextRange;
  832. break;
  833. case MEM:
  834. bus_cur->firstMem = res_cur->nextRange;
  835. break;
  836. case PFMEM:
  837. bus_cur->firstPFMem = res_cur->nextRange;
  838. break;
  839. }
  840. } else {
  841. switch (res->type) {
  842. case IO:
  843. bus_cur->firstIO = NULL;
  844. break;
  845. case MEM:
  846. bus_cur->firstMem = NULL;
  847. break;
  848. case PFMEM:
  849. bus_cur->firstPFMem = NULL;
  850. break;
  851. }
  852. }
  853. kfree (res_cur);
  854. return 0;
  855. } else {
  856. if (res_cur->next) {
  857. if (res_prev->rangeno == res_cur->rangeno)
  858. res_prev->next = res_cur->next;
  859. else
  860. res_prev->nextRange = res_cur->next;
  861. } else if (res_cur->nextRange) {
  862. res_prev->next = NULL;
  863. res_prev->nextRange = res_cur->nextRange;
  864. } else {
  865. res_prev->next = NULL;
  866. res_prev->nextRange = NULL;
  867. }
  868. kfree (res_cur);
  869. return 0;
  870. }
  871. return 0;
  872. }
  873. static struct range_node *find_range (struct bus_node *bus_cur, struct resource_node *res)
  874. {
  875. struct range_node *range = NULL;
  876. switch (res->type) {
  877. case IO:
  878. range = bus_cur->rangeIO;
  879. break;
  880. case MEM:
  881. range = bus_cur->rangeMem;
  882. break;
  883. case PFMEM:
  884. range = bus_cur->rangePFMem;
  885. break;
  886. default:
  887. err ("cannot read resource type in find_range\n");
  888. }
  889. while (range) {
  890. if (res->rangeno == range->rangeno)
  891. break;
  892. range = range->next;
  893. }
  894. return range;
  895. }
  896. /*****************************************************************************
  897. * This routine will check to make sure the io/mem/pfmem->len that the device asked for
  898. * can fit w/i our list of available IO/MEM/PFMEM resources. If cannot, returns -EINVAL,
  899. * otherwise, returns 0
  900. *
  901. * Input: resource
  902. * Output: the correct start and end address are inputted into the resource node,
  903. * 0 or -EINVAL
  904. *****************************************************************************/
  905. int ibmphp_check_resource (struct resource_node *res, u8 bridge)
  906. {
  907. struct bus_node *bus_cur;
  908. struct range_node *range = NULL;
  909. struct resource_node *res_prev;
  910. struct resource_node *res_cur = NULL;
  911. u32 len_cur = 0, start_cur = 0, len_tmp = 0;
  912. int noranges = 0;
  913. u32 tmp_start; /* this is to make sure start address is divisible by the length needed */
  914. u32 tmp_divide;
  915. u8 flag = 0;
  916. if (!res)
  917. return -EINVAL;
  918. if (bridge) {
  919. /* The rules for bridges are different, 4K divisible for IO, 1M for (pf)mem*/
  920. if (res->type == IO)
  921. tmp_divide = IOBRIDGE;
  922. else
  923. tmp_divide = MEMBRIDGE;
  924. } else
  925. tmp_divide = res->len;
  926. bus_cur = find_bus_wprev (res->busno, NULL, 0);
  927. if (!bus_cur) {
  928. /* didn't find a bus, something's wrong!!! */
  929. debug ("no bus in the system, either pci_dev's wrong or allocation failed\n");
  930. return -EINVAL;
  931. }
  932. debug ("%s - enter\n", __func__);
  933. debug ("bus_cur->busno is %d\n", bus_cur->busno);
  934. /* This is a quick fix to not mess up with the code very much. i.e.,
  935. * 2000-2fff, len = 1000, but when we compare, we need it to be fff */
  936. res->len -= 1;
  937. switch (res->type) {
  938. case IO:
  939. res_cur = bus_cur->firstIO;
  940. noranges = bus_cur->noIORanges;
  941. break;
  942. case MEM:
  943. res_cur = bus_cur->firstMem;
  944. noranges = bus_cur->noMemRanges;
  945. break;
  946. case PFMEM:
  947. res_cur = bus_cur->firstPFMem;
  948. noranges = bus_cur->noPFMemRanges;
  949. break;
  950. default:
  951. err ("wrong type of resource to check\n");
  952. return -EINVAL;
  953. }
  954. res_prev = NULL;
  955. while (res_cur) {
  956. range = find_range (bus_cur, res_cur);
  957. debug ("%s - rangeno = %d\n", __func__, res_cur->rangeno);
  958. if (!range) {
  959. err ("no range for the device exists... bailing out...\n");
  960. return -EINVAL;
  961. }
  962. /* found our range */
  963. if (!res_prev) {
  964. /* first time in the loop */
  965. len_tmp = res_cur->start - 1 - range->start;
  966. if ((res_cur->start != range->start) && (len_tmp >= res->len)) {
  967. debug ("len_tmp = %x\n", len_tmp);
  968. if ((len_tmp < len_cur) || (len_cur == 0)) {
  969. if ((range->start % tmp_divide) == 0) {
  970. /* just perfect, starting address is divisible by length */
  971. flag = 1;
  972. len_cur = len_tmp;
  973. start_cur = range->start;
  974. } else {
  975. /* Needs adjusting */
  976. tmp_start = range->start;
  977. flag = 0;
  978. while ((len_tmp = res_cur->start - 1 - tmp_start) >= res->len) {
  979. if ((tmp_start % tmp_divide) == 0) {
  980. flag = 1;
  981. len_cur = len_tmp;
  982. start_cur = tmp_start;
  983. break;
  984. }
  985. tmp_start += tmp_divide - tmp_start % tmp_divide;
  986. if (tmp_start >= res_cur->start - 1)
  987. break;
  988. }
  989. }
  990. if (flag && len_cur == res->len) {
  991. debug ("but we are not here, right?\n");
  992. res->start = start_cur;
  993. res->len += 1; /* To restore the balance */
  994. res->end = res->start + res->len - 1;
  995. return 0;
  996. }
  997. }
  998. }
  999. }
  1000. if (!res_cur->next) {
  1001. /* last device on the range */
  1002. len_tmp = range->end - (res_cur->end + 1);
  1003. if ((range->end != res_cur->end) && (len_tmp >= res->len)) {
  1004. debug ("len_tmp = %x\n", len_tmp);
  1005. if ((len_tmp < len_cur) || (len_cur == 0)) {
  1006. if (((res_cur->end + 1) % tmp_divide) == 0) {
  1007. /* just perfect, starting address is divisible by length */
  1008. flag = 1;
  1009. len_cur = len_tmp;
  1010. start_cur = res_cur->end + 1;
  1011. } else {
  1012. /* Needs adjusting */
  1013. tmp_start = res_cur->end + 1;
  1014. flag = 0;
  1015. while ((len_tmp = range->end - tmp_start) >= res->len) {
  1016. if ((tmp_start % tmp_divide) == 0) {
  1017. flag = 1;
  1018. len_cur = len_tmp;
  1019. start_cur = tmp_start;
  1020. break;
  1021. }
  1022. tmp_start += tmp_divide - tmp_start % tmp_divide;
  1023. if (tmp_start >= range->end)
  1024. break;
  1025. }
  1026. }
  1027. if (flag && len_cur == res->len) {
  1028. res->start = start_cur;
  1029. res->len += 1; /* To restore the balance */
  1030. res->end = res->start + res->len - 1;
  1031. return 0;
  1032. }
  1033. }
  1034. }
  1035. }
  1036. if (res_prev) {
  1037. if (res_prev->rangeno != res_cur->rangeno) {
  1038. /* 1st device on this range */
  1039. len_tmp = res_cur->start - 1 - range->start;
  1040. if ((res_cur->start != range->start) && (len_tmp >= res->len)) {
  1041. if ((len_tmp < len_cur) || (len_cur == 0)) {
  1042. if ((range->start % tmp_divide) == 0) {
  1043. /* just perfect, starting address is divisible by length */
  1044. flag = 1;
  1045. len_cur = len_tmp;
  1046. start_cur = range->start;
  1047. } else {
  1048. /* Needs adjusting */
  1049. tmp_start = range->start;
  1050. flag = 0;
  1051. while ((len_tmp = res_cur->start - 1 - tmp_start) >= res->len) {
  1052. if ((tmp_start % tmp_divide) == 0) {
  1053. flag = 1;
  1054. len_cur = len_tmp;
  1055. start_cur = tmp_start;
  1056. break;
  1057. }
  1058. tmp_start += tmp_divide - tmp_start % tmp_divide;
  1059. if (tmp_start >= res_cur->start - 1)
  1060. break;
  1061. }
  1062. }
  1063. if (flag && len_cur == res->len) {
  1064. res->start = start_cur;
  1065. res->len += 1; /* To restore the balance */
  1066. res->end = res->start + res->len - 1;
  1067. return 0;
  1068. }
  1069. }
  1070. }
  1071. } else {
  1072. /* in the same range */
  1073. len_tmp = res_cur->start - 1 - res_prev->end - 1;
  1074. if (len_tmp >= res->len) {
  1075. if ((len_tmp < len_cur) || (len_cur == 0)) {
  1076. if (((res_prev->end + 1) % tmp_divide) == 0) {
  1077. /* just perfect, starting address's divisible by length */
  1078. flag = 1;
  1079. len_cur = len_tmp;
  1080. start_cur = res_prev->end + 1;
  1081. } else {
  1082. /* Needs adjusting */
  1083. tmp_start = res_prev->end + 1;
  1084. flag = 0;
  1085. while ((len_tmp = res_cur->start - 1 - tmp_start) >= res->len) {
  1086. if ((tmp_start % tmp_divide) == 0) {
  1087. flag = 1;
  1088. len_cur = len_tmp;
  1089. start_cur = tmp_start;
  1090. break;
  1091. }
  1092. tmp_start += tmp_divide - tmp_start % tmp_divide;
  1093. if (tmp_start >= res_cur->start - 1)
  1094. break;
  1095. }
  1096. }
  1097. if (flag && len_cur == res->len) {
  1098. res->start = start_cur;
  1099. res->len += 1; /* To restore the balance */
  1100. res->end = res->start + res->len - 1;
  1101. return 0;
  1102. }
  1103. }
  1104. }
  1105. }
  1106. }
  1107. /* end if (res_prev) */
  1108. res_prev = res_cur;
  1109. if (res_cur->next)
  1110. res_cur = res_cur->next;
  1111. else
  1112. res_cur = res_cur->nextRange;
  1113. } /* end of while */
  1114. if (!res_prev) {
  1115. /* 1st device ever */
  1116. /* need to find appropriate range */
  1117. switch (res->type) {
  1118. case IO:
  1119. range = bus_cur->rangeIO;
  1120. break;
  1121. case MEM:
  1122. range = bus_cur->rangeMem;
  1123. break;
  1124. case PFMEM:
  1125. range = bus_cur->rangePFMem;
  1126. break;
  1127. }
  1128. while (range) {
  1129. len_tmp = range->end - range->start;
  1130. if (len_tmp >= res->len) {
  1131. if ((len_tmp < len_cur) || (len_cur == 0)) {
  1132. if ((range->start % tmp_divide) == 0) {
  1133. /* just perfect, starting address's divisible by length */
  1134. flag = 1;
  1135. len_cur = len_tmp;
  1136. start_cur = range->start;
  1137. } else {
  1138. /* Needs adjusting */
  1139. tmp_start = range->start;
  1140. flag = 0;
  1141. while ((len_tmp = range->end - tmp_start) >= res->len) {
  1142. if ((tmp_start % tmp_divide) == 0) {
  1143. flag = 1;
  1144. len_cur = len_tmp;
  1145. start_cur = tmp_start;
  1146. break;
  1147. }
  1148. tmp_start += tmp_divide - tmp_start % tmp_divide;
  1149. if (tmp_start >= range->end)
  1150. break;
  1151. }
  1152. }
  1153. if (flag && len_cur == res->len) {
  1154. res->start = start_cur;
  1155. res->len += 1; /* To restore the balance */
  1156. res->end = res->start + res->len - 1;
  1157. return 0;
  1158. }
  1159. }
  1160. }
  1161. range = range->next;
  1162. } /* end of while */
  1163. if ((!range) && (len_cur == 0)) {
  1164. /* have gone through the list of devices and ranges and haven't found n.e.thing */
  1165. err ("no appropriate range.. bailing out...\n");
  1166. return -EINVAL;
  1167. } else if (len_cur) {
  1168. res->start = start_cur;
  1169. res->len += 1; /* To restore the balance */
  1170. res->end = res->start + res->len - 1;
  1171. return 0;
  1172. }
  1173. }
  1174. if (!res_cur) {
  1175. debug ("prev->rangeno = %d, noranges = %d\n", res_prev->rangeno, noranges);
  1176. if (res_prev->rangeno < noranges) {
  1177. /* if there're more ranges out there to check */
  1178. switch (res->type) {
  1179. case IO:
  1180. range = bus_cur->rangeIO;
  1181. break;
  1182. case MEM:
  1183. range = bus_cur->rangeMem;
  1184. break;
  1185. case PFMEM:
  1186. range = bus_cur->rangePFMem;
  1187. break;
  1188. }
  1189. while (range) {
  1190. len_tmp = range->end - range->start;
  1191. if (len_tmp >= res->len) {
  1192. if ((len_tmp < len_cur) || (len_cur == 0)) {
  1193. if ((range->start % tmp_divide) == 0) {
  1194. /* just perfect, starting address's divisible by length */
  1195. flag = 1;
  1196. len_cur = len_tmp;
  1197. start_cur = range->start;
  1198. } else {
  1199. /* Needs adjusting */
  1200. tmp_start = range->start;
  1201. flag = 0;
  1202. while ((len_tmp = range->end - tmp_start) >= res->len) {
  1203. if ((tmp_start % tmp_divide) == 0) {
  1204. flag = 1;
  1205. len_cur = len_tmp;
  1206. start_cur = tmp_start;
  1207. break;
  1208. }
  1209. tmp_start += tmp_divide - tmp_start % tmp_divide;
  1210. if (tmp_start >= range->end)
  1211. break;
  1212. }
  1213. }
  1214. if (flag && len_cur == res->len) {
  1215. res->start = start_cur;
  1216. res->len += 1; /* To restore the balance */
  1217. res->end = res->start + res->len - 1;
  1218. return 0;
  1219. }
  1220. }
  1221. }
  1222. range = range->next;
  1223. } /* end of while */
  1224. if ((!range) && (len_cur == 0)) {
  1225. /* have gone through the list of devices and ranges and haven't found n.e.thing */
  1226. err ("no appropriate range.. bailing out...\n");
  1227. return -EINVAL;
  1228. } else if (len_cur) {
  1229. res->start = start_cur;
  1230. res->len += 1; /* To restore the balance */
  1231. res->end = res->start + res->len - 1;
  1232. return 0;
  1233. }
  1234. } else {
  1235. /* no more ranges to check on */
  1236. if (len_cur) {
  1237. res->start = start_cur;
  1238. res->len += 1; /* To restore the balance */
  1239. res->end = res->start + res->len - 1;
  1240. return 0;
  1241. } else {
  1242. /* have gone through the list of devices and haven't found n.e.thing */
  1243. err ("no appropriate range.. bailing out...\n");
  1244. return -EINVAL;
  1245. }
  1246. }
  1247. } /* end if (!res_cur) */
  1248. return -EINVAL;
  1249. }
  1250. /********************************************************************************
  1251. * This routine is called from remove_card if the card contained PPB.
  1252. * It will remove all the resources on the bus as well as the bus itself
  1253. * Input: Bus
  1254. * Output: 0, -ENODEV
  1255. ********************************************************************************/
  1256. int ibmphp_remove_bus (struct bus_node *bus, u8 parent_busno)
  1257. {
  1258. struct resource_node *res_cur;
  1259. struct resource_node *res_tmp;
  1260. struct bus_node *prev_bus;
  1261. int rc;
  1262. prev_bus = find_bus_wprev (parent_busno, NULL, 0);
  1263. if (!prev_bus) {
  1264. debug ("something terribly wrong. Cannot find parent bus to the one to remove\n");
  1265. return -ENODEV;
  1266. }
  1267. debug ("In ibmphp_remove_bus... prev_bus->busno is %x\n", prev_bus->busno);
  1268. rc = remove_ranges (bus, prev_bus);
  1269. if (rc)
  1270. return rc;
  1271. if (bus->firstIO) {
  1272. res_cur = bus->firstIO;
  1273. while (res_cur) {
  1274. res_tmp = res_cur;
  1275. if (res_cur->next)
  1276. res_cur = res_cur->next;
  1277. else
  1278. res_cur = res_cur->nextRange;
  1279. kfree (res_tmp);
  1280. res_tmp = NULL;
  1281. }
  1282. bus->firstIO = NULL;
  1283. }
  1284. if (bus->firstMem) {
  1285. res_cur = bus->firstMem;
  1286. while (res_cur) {
  1287. res_tmp = res_cur;
  1288. if (res_cur->next)
  1289. res_cur = res_cur->next;
  1290. else
  1291. res_cur = res_cur->nextRange;
  1292. kfree (res_tmp);
  1293. res_tmp = NULL;
  1294. }
  1295. bus->firstMem = NULL;
  1296. }
  1297. if (bus->firstPFMem) {
  1298. res_cur = bus->firstPFMem;
  1299. while (res_cur) {
  1300. res_tmp = res_cur;
  1301. if (res_cur->next)
  1302. res_cur = res_cur->next;
  1303. else
  1304. res_cur = res_cur->nextRange;
  1305. kfree (res_tmp);
  1306. res_tmp = NULL;
  1307. }
  1308. bus->firstPFMem = NULL;
  1309. }
  1310. if (bus->firstPFMemFromMem) {
  1311. res_cur = bus->firstPFMemFromMem;
  1312. while (res_cur) {
  1313. res_tmp = res_cur;
  1314. res_cur = res_cur->next;
  1315. kfree (res_tmp);
  1316. res_tmp = NULL;
  1317. }
  1318. bus->firstPFMemFromMem = NULL;
  1319. }
  1320. list_del (&bus->bus_list);
  1321. kfree (bus);
  1322. return 0;
  1323. }
  1324. /******************************************************************************
  1325. * This routine deletes the ranges from a given bus, and the entries from the
  1326. * parent's bus in the resources
  1327. * Input: current bus, previous bus
  1328. * Output: 0, -EINVAL
  1329. ******************************************************************************/
  1330. static int remove_ranges (struct bus_node *bus_cur, struct bus_node *bus_prev)
  1331. {
  1332. struct range_node *range_cur;
  1333. struct range_node *range_tmp;
  1334. int i;
  1335. struct resource_node *res = NULL;
  1336. if (bus_cur->noIORanges) {
  1337. range_cur = bus_cur->rangeIO;
  1338. for (i = 0; i < bus_cur->noIORanges; i++) {
  1339. if (ibmphp_find_resource (bus_prev, range_cur->start, &res, IO) < 0)
  1340. return -EINVAL;
  1341. ibmphp_remove_resource (res);
  1342. range_tmp = range_cur;
  1343. range_cur = range_cur->next;
  1344. kfree (range_tmp);
  1345. range_tmp = NULL;
  1346. }
  1347. bus_cur->rangeIO = NULL;
  1348. }
  1349. if (bus_cur->noMemRanges) {
  1350. range_cur = bus_cur->rangeMem;
  1351. for (i = 0; i < bus_cur->noMemRanges; i++) {
  1352. if (ibmphp_find_resource (bus_prev, range_cur->start, &res, MEM) < 0)
  1353. return -EINVAL;
  1354. ibmphp_remove_resource (res);
  1355. range_tmp = range_cur;
  1356. range_cur = range_cur->next;
  1357. kfree (range_tmp);
  1358. range_tmp = NULL;
  1359. }
  1360. bus_cur->rangeMem = NULL;
  1361. }
  1362. if (bus_cur->noPFMemRanges) {
  1363. range_cur = bus_cur->rangePFMem;
  1364. for (i = 0; i < bus_cur->noPFMemRanges; i++) {
  1365. if (ibmphp_find_resource (bus_prev, range_cur->start, &res, PFMEM) < 0)
  1366. return -EINVAL;
  1367. ibmphp_remove_resource (res);
  1368. range_tmp = range_cur;
  1369. range_cur = range_cur->next;
  1370. kfree (range_tmp);
  1371. range_tmp = NULL;
  1372. }
  1373. bus_cur->rangePFMem = NULL;
  1374. }
  1375. return 0;
  1376. }
  1377. /*
  1378. * find the resource node in the bus
  1379. * Input: Resource needed, start address of the resource, type of resource
  1380. */
  1381. int ibmphp_find_resource (struct bus_node *bus, u32 start_address, struct resource_node **res, int flag)
  1382. {
  1383. struct resource_node *res_cur = NULL;
  1384. char * type = "";
  1385. if (!bus) {
  1386. err ("The bus passed in NULL to find resource\n");
  1387. return -ENODEV;
  1388. }
  1389. switch (flag) {
  1390. case IO:
  1391. res_cur = bus->firstIO;
  1392. type = "io";
  1393. break;
  1394. case MEM:
  1395. res_cur = bus->firstMem;
  1396. type = "mem";
  1397. break;
  1398. case PFMEM:
  1399. res_cur = bus->firstPFMem;
  1400. type = "pfmem";
  1401. break;
  1402. default:
  1403. err ("wrong type of flag\n");
  1404. return -EINVAL;
  1405. }
  1406. while (res_cur) {
  1407. if (res_cur->start == start_address) {
  1408. *res = res_cur;
  1409. break;
  1410. }
  1411. if (res_cur->next)
  1412. res_cur = res_cur->next;
  1413. else
  1414. res_cur = res_cur->nextRange;
  1415. }
  1416. if (!res_cur) {
  1417. if (flag == PFMEM) {
  1418. res_cur = bus->firstPFMemFromMem;
  1419. while (res_cur) {
  1420. if (res_cur->start == start_address) {
  1421. *res = res_cur;
  1422. break;
  1423. }
  1424. res_cur = res_cur->next;
  1425. }
  1426. if (!res_cur) {
  1427. debug ("SOS...cannot find %s resource in the bus.\n", type);
  1428. return -EINVAL;
  1429. }
  1430. } else {
  1431. debug ("SOS... cannot find %s resource in the bus.\n", type);
  1432. return -EINVAL;
  1433. }
  1434. }
  1435. if (*res)
  1436. debug ("*res->start = %x\n", (*res)->start);
  1437. return 0;
  1438. }
  1439. /***********************************************************************
  1440. * This routine will free the resource structures used by the
  1441. * system. It is called from cleanup routine for the module
  1442. * Parameters: none
  1443. * Returns: none
  1444. ***********************************************************************/
  1445. void ibmphp_free_resources (void)
  1446. {
  1447. struct bus_node *bus_cur = NULL;
  1448. struct bus_node *bus_tmp;
  1449. struct range_node *range_cur;
  1450. struct range_node *range_tmp;
  1451. struct resource_node *res_cur;
  1452. struct resource_node *res_tmp;
  1453. struct list_head *tmp;
  1454. struct list_head *next;
  1455. int i = 0;
  1456. flags = 1;
  1457. list_for_each_safe (tmp, next, &gbuses) {
  1458. bus_cur = list_entry (tmp, struct bus_node, bus_list);
  1459. if (bus_cur->noIORanges) {
  1460. range_cur = bus_cur->rangeIO;
  1461. for (i = 0; i < bus_cur->noIORanges; i++) {
  1462. if (!range_cur)
  1463. break;
  1464. range_tmp = range_cur;
  1465. range_cur = range_cur->next;
  1466. kfree (range_tmp);
  1467. range_tmp = NULL;
  1468. }
  1469. }
  1470. if (bus_cur->noMemRanges) {
  1471. range_cur = bus_cur->rangeMem;
  1472. for (i = 0; i < bus_cur->noMemRanges; i++) {
  1473. if (!range_cur)
  1474. break;
  1475. range_tmp = range_cur;
  1476. range_cur = range_cur->next;
  1477. kfree (range_tmp);
  1478. range_tmp = NULL;
  1479. }
  1480. }
  1481. if (bus_cur->noPFMemRanges) {
  1482. range_cur = bus_cur->rangePFMem;
  1483. for (i = 0; i < bus_cur->noPFMemRanges; i++) {
  1484. if (!range_cur)
  1485. break;
  1486. range_tmp = range_cur;
  1487. range_cur = range_cur->next;
  1488. kfree (range_tmp);
  1489. range_tmp = NULL;
  1490. }
  1491. }
  1492. if (bus_cur->firstIO) {
  1493. res_cur = bus_cur->firstIO;
  1494. while (res_cur) {
  1495. res_tmp = res_cur;
  1496. if (res_cur->next)
  1497. res_cur = res_cur->next;
  1498. else
  1499. res_cur = res_cur->nextRange;
  1500. kfree (res_tmp);
  1501. res_tmp = NULL;
  1502. }
  1503. bus_cur->firstIO = NULL;
  1504. }
  1505. if (bus_cur->firstMem) {
  1506. res_cur = bus_cur->firstMem;
  1507. while (res_cur) {
  1508. res_tmp = res_cur;
  1509. if (res_cur->next)
  1510. res_cur = res_cur->next;
  1511. else
  1512. res_cur = res_cur->nextRange;
  1513. kfree (res_tmp);
  1514. res_tmp = NULL;
  1515. }
  1516. bus_cur->firstMem = NULL;
  1517. }
  1518. if (bus_cur->firstPFMem) {
  1519. res_cur = bus_cur->firstPFMem;
  1520. while (res_cur) {
  1521. res_tmp = res_cur;
  1522. if (res_cur->next)
  1523. res_cur = res_cur->next;
  1524. else
  1525. res_cur = res_cur->nextRange;
  1526. kfree (res_tmp);
  1527. res_tmp = NULL;
  1528. }
  1529. bus_cur->firstPFMem = NULL;
  1530. }
  1531. if (bus_cur->firstPFMemFromMem) {
  1532. res_cur = bus_cur->firstPFMemFromMem;
  1533. while (res_cur) {
  1534. res_tmp = res_cur;
  1535. res_cur = res_cur->next;
  1536. kfree (res_tmp);
  1537. res_tmp = NULL;
  1538. }
  1539. bus_cur->firstPFMemFromMem = NULL;
  1540. }
  1541. bus_tmp = bus_cur;
  1542. list_del (&bus_cur->bus_list);
  1543. kfree (bus_tmp);
  1544. bus_tmp = NULL;
  1545. }
  1546. }
  1547. /*********************************************************************************
  1548. * This function will go over the PFmem resources to check if the EBDA allocated
  1549. * pfmem out of memory buckets of the bus. If so, it will change the range numbers
  1550. * and a flag to indicate that this resource is out of memory. It will also move the
  1551. * Pfmem out of the pfmem resource list to the PFMemFromMem list, and will create
  1552. * a new Mem node
  1553. * This routine is called right after initialization
  1554. *******************************************************************************/
  1555. static int __init once_over (void)
  1556. {
  1557. struct resource_node *pfmem_cur;
  1558. struct resource_node *pfmem_prev;
  1559. struct resource_node *mem;
  1560. struct bus_node *bus_cur;
  1561. struct list_head *tmp;
  1562. list_for_each (tmp, &gbuses) {
  1563. bus_cur = list_entry (tmp, struct bus_node, bus_list);
  1564. if ((!bus_cur->rangePFMem) && (bus_cur->firstPFMem)) {
  1565. for (pfmem_cur = bus_cur->firstPFMem, pfmem_prev = NULL; pfmem_cur; pfmem_prev = pfmem_cur, pfmem_cur = pfmem_cur->next) {
  1566. pfmem_cur->fromMem = 1;
  1567. if (pfmem_prev)
  1568. pfmem_prev->next = pfmem_cur->next;
  1569. else
  1570. bus_cur->firstPFMem = pfmem_cur->next;
  1571. if (!bus_cur->firstPFMemFromMem)
  1572. pfmem_cur->next = NULL;
  1573. else
  1574. /* we don't need to sort PFMemFromMem since we're using mem node for
  1575. all the real work anyways, so just insert at the beginning of the
  1576. list
  1577. */
  1578. pfmem_cur->next = bus_cur->firstPFMemFromMem;
  1579. bus_cur->firstPFMemFromMem = pfmem_cur;
  1580. mem = kzalloc(sizeof(struct resource_node), GFP_KERNEL);
  1581. if (!mem) {
  1582. err ("out of system memory\n");
  1583. return -ENOMEM;
  1584. }
  1585. mem->type = MEM;
  1586. mem->busno = pfmem_cur->busno;
  1587. mem->devfunc = pfmem_cur->devfunc;
  1588. mem->start = pfmem_cur->start;
  1589. mem->end = pfmem_cur->end;
  1590. mem->len = pfmem_cur->len;
  1591. if (ibmphp_add_resource (mem) < 0)
  1592. err ("Trouble...trouble... EBDA allocated pfmem from mem, but system doesn't display it has this space... unless not PCI device...\n");
  1593. pfmem_cur->rangeno = mem->rangeno;
  1594. } /* end for pfmem */
  1595. } /* end if */
  1596. } /* end list_for_each bus */
  1597. return 0;
  1598. }
  1599. int ibmphp_add_pfmem_from_mem (struct resource_node *pfmem)
  1600. {
  1601. struct bus_node *bus_cur = find_bus_wprev (pfmem->busno, NULL, 0);
  1602. if (!bus_cur) {
  1603. err ("cannot find bus of pfmem to add...\n");
  1604. return -ENODEV;
  1605. }
  1606. if (bus_cur->firstPFMemFromMem)
  1607. pfmem->next = bus_cur->firstPFMemFromMem;
  1608. else
  1609. pfmem->next = NULL;
  1610. bus_cur->firstPFMemFromMem = pfmem;
  1611. return 0;
  1612. }
  1613. /* This routine just goes through the buses to see if the bus already exists.
  1614. * It is called from ibmphp_find_sec_number, to find out a secondary bus number for
  1615. * bridged cards
  1616. * Parameters: bus_number
  1617. * Returns: Bus pointer or NULL
  1618. */
  1619. struct bus_node *ibmphp_find_res_bus (u8 bus_number)
  1620. {
  1621. return find_bus_wprev (bus_number, NULL, 0);
  1622. }
  1623. static struct bus_node *find_bus_wprev (u8 bus_number, struct bus_node **prev, u8 flag)
  1624. {
  1625. struct bus_node *bus_cur;
  1626. struct list_head *tmp;
  1627. struct list_head *tmp_prev;
  1628. list_for_each (tmp, &gbuses) {
  1629. tmp_prev = tmp->prev;
  1630. bus_cur = list_entry (tmp, struct bus_node, bus_list);
  1631. if (flag)
  1632. *prev = list_entry (tmp_prev, struct bus_node, bus_list);
  1633. if (bus_cur->busno == bus_number)
  1634. return bus_cur;
  1635. }
  1636. return NULL;
  1637. }
  1638. void ibmphp_print_test (void)
  1639. {
  1640. int i = 0;
  1641. struct bus_node *bus_cur = NULL;
  1642. struct range_node *range;
  1643. struct resource_node *res;
  1644. struct list_head *tmp;
  1645. debug_pci ("*****************START**********************\n");
  1646. if ((!list_empty(&gbuses)) && flags) {
  1647. err ("The GBUSES is not NULL?!?!?!?!?\n");
  1648. return;
  1649. }
  1650. list_for_each (tmp, &gbuses) {
  1651. bus_cur = list_entry (tmp, struct bus_node, bus_list);
  1652. debug_pci ("This is bus # %d. There are\n", bus_cur->busno);
  1653. debug_pci ("IORanges = %d\t", bus_cur->noIORanges);
  1654. debug_pci ("MemRanges = %d\t", bus_cur->noMemRanges);
  1655. debug_pci ("PFMemRanges = %d\n", bus_cur->noPFMemRanges);
  1656. debug_pci ("The IO Ranges are as follows:\n");
  1657. if (bus_cur->rangeIO) {
  1658. range = bus_cur->rangeIO;
  1659. for (i = 0; i < bus_cur->noIORanges; i++) {
  1660. debug_pci ("rangeno is %d\n", range->rangeno);
  1661. debug_pci ("[%x - %x]\n", range->start, range->end);
  1662. range = range->next;
  1663. }
  1664. }
  1665. debug_pci ("The Mem Ranges are as follows:\n");
  1666. if (bus_cur->rangeMem) {
  1667. range = bus_cur->rangeMem;
  1668. for (i = 0; i < bus_cur->noMemRanges; i++) {
  1669. debug_pci ("rangeno is %d\n", range->rangeno);
  1670. debug_pci ("[%x - %x]\n", range->start, range->end);
  1671. range = range->next;
  1672. }
  1673. }
  1674. debug_pci ("The PFMem Ranges are as follows:\n");
  1675. if (bus_cur->rangePFMem) {
  1676. range = bus_cur->rangePFMem;
  1677. for (i = 0; i < bus_cur->noPFMemRanges; i++) {
  1678. debug_pci ("rangeno is %d\n", range->rangeno);
  1679. debug_pci ("[%x - %x]\n", range->start, range->end);
  1680. range = range->next;
  1681. }
  1682. }
  1683. debug_pci ("The resources on this bus are as follows\n");
  1684. debug_pci ("IO...\n");
  1685. if (bus_cur->firstIO) {
  1686. res = bus_cur->firstIO;
  1687. while (res) {
  1688. debug_pci ("The range # is %d\n", res->rangeno);
  1689. debug_pci ("The bus, devfnc is %d, %x\n", res->busno, res->devfunc);
  1690. debug_pci ("[%x - %x], len=%x\n", res->start, res->end, res->len);
  1691. if (res->next)
  1692. res = res->next;
  1693. else if (res->nextRange)
  1694. res = res->nextRange;
  1695. else
  1696. break;
  1697. }
  1698. }
  1699. debug_pci ("Mem...\n");
  1700. if (bus_cur->firstMem) {
  1701. res = bus_cur->firstMem;
  1702. while (res) {
  1703. debug_pci ("The range # is %d\n", res->rangeno);
  1704. debug_pci ("The bus, devfnc is %d, %x\n", res->busno, res->devfunc);
  1705. debug_pci ("[%x - %x], len=%x\n", res->start, res->end, res->len);
  1706. if (res->next)
  1707. res = res->next;
  1708. else if (res->nextRange)
  1709. res = res->nextRange;
  1710. else
  1711. break;
  1712. }
  1713. }
  1714. debug_pci ("PFMem...\n");
  1715. if (bus_cur->firstPFMem) {
  1716. res = bus_cur->firstPFMem;
  1717. while (res) {
  1718. debug_pci ("The range # is %d\n", res->rangeno);
  1719. debug_pci ("The bus, devfnc is %d, %x\n", res->busno, res->devfunc);
  1720. debug_pci ("[%x - %x], len=%x\n", res->start, res->end, res->len);
  1721. if (res->next)
  1722. res = res->next;
  1723. else if (res->nextRange)
  1724. res = res->nextRange;
  1725. else
  1726. break;
  1727. }
  1728. }
  1729. debug_pci ("PFMemFromMem...\n");
  1730. if (bus_cur->firstPFMemFromMem) {
  1731. res = bus_cur->firstPFMemFromMem;
  1732. while (res) {
  1733. debug_pci ("The range # is %d\n", res->rangeno);
  1734. debug_pci ("The bus, devfnc is %d, %x\n", res->busno, res->devfunc);
  1735. debug_pci ("[%x - %x], len=%x\n", res->start, res->end, res->len);
  1736. res = res->next;
  1737. }
  1738. }
  1739. }
  1740. debug_pci ("***********************END***********************\n");
  1741. }
  1742. static int range_exists_already (struct range_node * range, struct bus_node * bus_cur, u8 type)
  1743. {
  1744. struct range_node * range_cur = NULL;
  1745. switch (type) {
  1746. case IO:
  1747. range_cur = bus_cur->rangeIO;
  1748. break;
  1749. case MEM:
  1750. range_cur = bus_cur->rangeMem;
  1751. break;
  1752. case PFMEM:
  1753. range_cur = bus_cur->rangePFMem;
  1754. break;
  1755. default:
  1756. err ("wrong type passed to find out if range already exists\n");
  1757. return -ENODEV;
  1758. }
  1759. while (range_cur) {
  1760. if ((range_cur->start == range->start) && (range_cur->end == range->end))
  1761. return 1;
  1762. range_cur = range_cur->next;
  1763. }
  1764. return 0;
  1765. }
  1766. /* This routine will read the windows for any PPB we have and update the
  1767. * range info for the secondary bus, and will also input this info into
  1768. * primary bus, since BIOS doesn't. This is for PPB that are in the system
  1769. * on bootup. For bridged cards that were added during previous load of the
  1770. * driver, only the ranges and the bus structure are added, the devices are
  1771. * added from NVRAM
  1772. * Input: primary busno
  1773. * Returns: none
  1774. * Note: this function doesn't take into account IO restrictions etc,
  1775. * so will only work for bridges with no video/ISA devices behind them It
  1776. * also will not work for onboard PPBs that can have more than 1 *bus
  1777. * behind them All these are TO DO.
  1778. * Also need to add more error checkings... (from fnc returns etc)
  1779. */
  1780. static int __init update_bridge_ranges (struct bus_node **bus)
  1781. {
  1782. u8 sec_busno, device, function, hdr_type, start_io_address, end_io_address;
  1783. u16 vendor_id, upper_io_start, upper_io_end, start_mem_address, end_mem_address;
  1784. u32 start_address, end_address, upper_start, upper_end;
  1785. struct bus_node *bus_sec;
  1786. struct bus_node *bus_cur;
  1787. struct resource_node *io;
  1788. struct resource_node *mem;
  1789. struct resource_node *pfmem;
  1790. struct range_node *range;
  1791. unsigned int devfn;
  1792. bus_cur = *bus;
  1793. if (!bus_cur)
  1794. return -ENODEV;
  1795. ibmphp_pci_bus->number = bus_cur->busno;
  1796. debug ("inside %s\n", __func__);
  1797. debug ("bus_cur->busno = %x\n", bus_cur->busno);
  1798. for (device = 0; device < 32; device++) {
  1799. for (function = 0x00; function < 0x08; function++) {
  1800. devfn = PCI_DEVFN(device, function);
  1801. pci_bus_read_config_word (ibmphp_pci_bus, devfn, PCI_VENDOR_ID, &vendor_id);
  1802. if (vendor_id != PCI_VENDOR_ID_NOTVALID) {
  1803. /* found correct device!!! */
  1804. pci_bus_read_config_byte (ibmphp_pci_bus, devfn, PCI_HEADER_TYPE, &hdr_type);
  1805. switch (hdr_type) {
  1806. case PCI_HEADER_TYPE_NORMAL:
  1807. function = 0x8;
  1808. break;
  1809. case PCI_HEADER_TYPE_MULTIDEVICE:
  1810. break;
  1811. case PCI_HEADER_TYPE_BRIDGE:
  1812. function = 0x8;
  1813. case PCI_HEADER_TYPE_MULTIBRIDGE:
  1814. /* We assume here that only 1 bus behind the bridge
  1815. TO DO: add functionality for several:
  1816. temp = secondary;
  1817. while (temp < subordinate) {
  1818. ...
  1819. temp++;
  1820. }
  1821. */
  1822. pci_bus_read_config_byte (ibmphp_pci_bus, devfn, PCI_SECONDARY_BUS, &sec_busno);
  1823. bus_sec = find_bus_wprev (sec_busno, NULL, 0);
  1824. /* this bus structure doesn't exist yet, PPB was configured during previous loading of ibmphp */
  1825. if (!bus_sec) {
  1826. bus_sec = alloc_error_bus (NULL, sec_busno, 1);
  1827. /* the rest will be populated during NVRAM call */
  1828. return 0;
  1829. }
  1830. pci_bus_read_config_byte (ibmphp_pci_bus, devfn, PCI_IO_BASE, &start_io_address);
  1831. pci_bus_read_config_byte (ibmphp_pci_bus, devfn, PCI_IO_LIMIT, &end_io_address);
  1832. pci_bus_read_config_word (ibmphp_pci_bus, devfn, PCI_IO_BASE_UPPER16, &upper_io_start);
  1833. pci_bus_read_config_word (ibmphp_pci_bus, devfn, PCI_IO_LIMIT_UPPER16, &upper_io_end);
  1834. start_address = (start_io_address & PCI_IO_RANGE_MASK) << 8;
  1835. start_address |= (upper_io_start << 16);
  1836. end_address = (end_io_address & PCI_IO_RANGE_MASK) << 8;
  1837. end_address |= (upper_io_end << 16);
  1838. if ((start_address) && (start_address <= end_address)) {
  1839. range = kzalloc(sizeof(struct range_node), GFP_KERNEL);
  1840. if (!range) {
  1841. err ("out of system memory\n");
  1842. return -ENOMEM;
  1843. }
  1844. range->start = start_address;
  1845. range->end = end_address + 0xfff;
  1846. if (bus_sec->noIORanges > 0) {
  1847. if (!range_exists_already (range, bus_sec, IO)) {
  1848. add_bus_range (IO, range, bus_sec);
  1849. ++bus_sec->noIORanges;
  1850. } else {
  1851. kfree (range);
  1852. range = NULL;
  1853. }
  1854. } else {
  1855. /* 1st IO Range on the bus */
  1856. range->rangeno = 1;
  1857. bus_sec->rangeIO = range;
  1858. ++bus_sec->noIORanges;
  1859. }
  1860. fix_resources (bus_sec);
  1861. if (ibmphp_find_resource (bus_cur, start_address, &io, IO)) {
  1862. io = kzalloc(sizeof(struct resource_node), GFP_KERNEL);
  1863. if (!io) {
  1864. kfree (range);
  1865. err ("out of system memory\n");
  1866. return -ENOMEM;
  1867. }
  1868. io->type = IO;
  1869. io->busno = bus_cur->busno;
  1870. io->devfunc = ((device << 3) | (function & 0x7));
  1871. io->start = start_address;
  1872. io->end = end_address + 0xfff;
  1873. io->len = io->end - io->start + 1;
  1874. ibmphp_add_resource (io);
  1875. }
  1876. }
  1877. pci_bus_read_config_word (ibmphp_pci_bus, devfn, PCI_MEMORY_BASE, &start_mem_address);
  1878. pci_bus_read_config_word (ibmphp_pci_bus, devfn, PCI_MEMORY_LIMIT, &end_mem_address);
  1879. start_address = 0x00000000 | (start_mem_address & PCI_MEMORY_RANGE_MASK) << 16;
  1880. end_address = 0x00000000 | (end_mem_address & PCI_MEMORY_RANGE_MASK) << 16;
  1881. if ((start_address) && (start_address <= end_address)) {
  1882. range = kzalloc(sizeof(struct range_node), GFP_KERNEL);
  1883. if (!range) {
  1884. err ("out of system memory\n");
  1885. return -ENOMEM;
  1886. }
  1887. range->start = start_address;
  1888. range->end = end_address + 0xfffff;
  1889. if (bus_sec->noMemRanges > 0) {
  1890. if (!range_exists_already (range, bus_sec, MEM)) {
  1891. add_bus_range (MEM, range, bus_sec);
  1892. ++bus_sec->noMemRanges;
  1893. } else {
  1894. kfree (range);
  1895. range = NULL;
  1896. }
  1897. } else {
  1898. /* 1st Mem Range on the bus */
  1899. range->rangeno = 1;
  1900. bus_sec->rangeMem = range;
  1901. ++bus_sec->noMemRanges;
  1902. }
  1903. fix_resources (bus_sec);
  1904. if (ibmphp_find_resource (bus_cur, start_address, &mem, MEM)) {
  1905. mem = kzalloc(sizeof(struct resource_node), GFP_KERNEL);
  1906. if (!mem) {
  1907. kfree (range);
  1908. err ("out of system memory\n");
  1909. return -ENOMEM;
  1910. }
  1911. mem->type = MEM;
  1912. mem->busno = bus_cur->busno;
  1913. mem->devfunc = ((device << 3) | (function & 0x7));
  1914. mem->start = start_address;
  1915. mem->end = end_address + 0xfffff;
  1916. mem->len = mem->end - mem->start + 1;
  1917. ibmphp_add_resource (mem);
  1918. }
  1919. }
  1920. pci_bus_read_config_word (ibmphp_pci_bus, devfn, PCI_PREF_MEMORY_BASE, &start_mem_address);
  1921. pci_bus_read_config_word (ibmphp_pci_bus, devfn, PCI_PREF_MEMORY_LIMIT, &end_mem_address);
  1922. pci_bus_read_config_dword (ibmphp_pci_bus, devfn, PCI_PREF_BASE_UPPER32, &upper_start);
  1923. pci_bus_read_config_dword (ibmphp_pci_bus, devfn, PCI_PREF_LIMIT_UPPER32, &upper_end);
  1924. start_address = 0x00000000 | (start_mem_address & PCI_MEMORY_RANGE_MASK) << 16;
  1925. end_address = 0x00000000 | (end_mem_address & PCI_MEMORY_RANGE_MASK) << 16;
  1926. #if BITS_PER_LONG == 64
  1927. start_address |= ((long) upper_start) << 32;
  1928. end_address |= ((long) upper_end) << 32;
  1929. #endif
  1930. if ((start_address) && (start_address <= end_address)) {
  1931. range = kzalloc(sizeof(struct range_node), GFP_KERNEL);
  1932. if (!range) {
  1933. err ("out of system memory\n");
  1934. return -ENOMEM;
  1935. }
  1936. range->start = start_address;
  1937. range->end = end_address + 0xfffff;
  1938. if (bus_sec->noPFMemRanges > 0) {
  1939. if (!range_exists_already (range, bus_sec, PFMEM)) {
  1940. add_bus_range (PFMEM, range, bus_sec);
  1941. ++bus_sec->noPFMemRanges;
  1942. } else {
  1943. kfree (range);
  1944. range = NULL;
  1945. }
  1946. } else {
  1947. /* 1st PFMem Range on the bus */
  1948. range->rangeno = 1;
  1949. bus_sec->rangePFMem = range;
  1950. ++bus_sec->noPFMemRanges;
  1951. }
  1952. fix_resources (bus_sec);
  1953. if (ibmphp_find_resource (bus_cur, start_address, &pfmem, PFMEM)) {
  1954. pfmem = kzalloc(sizeof(struct resource_node), GFP_KERNEL);
  1955. if (!pfmem) {
  1956. kfree (range);
  1957. err ("out of system memory\n");
  1958. return -ENOMEM;
  1959. }
  1960. pfmem->type = PFMEM;
  1961. pfmem->busno = bus_cur->busno;
  1962. pfmem->devfunc = ((device << 3) | (function & 0x7));
  1963. pfmem->start = start_address;
  1964. pfmem->end = end_address + 0xfffff;
  1965. pfmem->len = pfmem->end - pfmem->start + 1;
  1966. pfmem->fromMem = 0;
  1967. ibmphp_add_resource (pfmem);
  1968. }
  1969. }
  1970. break;
  1971. } /* end of switch */
  1972. } /* end if vendor */
  1973. } /* end for function */
  1974. } /* end for device */
  1975. bus = &bus_cur;
  1976. return 0;
  1977. }