generic.c 37 KB

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  1. /*
  2. * AGPGART driver.
  3. * Copyright (C) 2004 Silicon Graphics, Inc.
  4. * Copyright (C) 2002-2005 Dave Jones.
  5. * Copyright (C) 1999 Jeff Hartmann.
  6. * Copyright (C) 1999 Precision Insight, Inc.
  7. * Copyright (C) 1999 Xi Graphics, Inc.
  8. *
  9. * Permission is hereby granted, free of charge, to any person obtaining a
  10. * copy of this software and associated documentation files (the "Software"),
  11. * to deal in the Software without restriction, including without limitation
  12. * the rights to use, copy, modify, merge, publish, distribute, sublicense,
  13. * and/or sell copies of the Software, and to permit persons to whom the
  14. * Software is furnished to do so, subject to the following conditions:
  15. *
  16. * The above copyright notice and this permission notice shall be included
  17. * in all copies or substantial portions of the Software.
  18. *
  19. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
  20. * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  21. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
  22. * JEFF HARTMANN, OR ANY OTHER CONTRIBUTORS BE LIABLE FOR ANY CLAIM,
  23. * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
  24. * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE
  25. * OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
  26. *
  27. * TODO:
  28. * - Allocate more than order 0 pages to avoid too much linear map splitting.
  29. */
  30. #include <linux/module.h>
  31. #include <linux/pci.h>
  32. #include <linux/pagemap.h>
  33. #include <linux/miscdevice.h>
  34. #include <linux/pm.h>
  35. #include <linux/agp_backend.h>
  36. #include <linux/vmalloc.h>
  37. #include <linux/dma-mapping.h>
  38. #include <linux/mm.h>
  39. #include <linux/sched.h>
  40. #include <linux/slab.h>
  41. #include <asm/io.h>
  42. #include <asm/cacheflush.h>
  43. #include <asm/pgtable.h>
  44. #include "agp.h"
  45. __u32 *agp_gatt_table;
  46. int agp_memory_reserved;
  47. /*
  48. * Needed by the Nforce GART driver for the time being. Would be
  49. * nice to do this some other way instead of needing this export.
  50. */
  51. EXPORT_SYMBOL_GPL(agp_memory_reserved);
  52. /*
  53. * Generic routines for handling agp_memory structures -
  54. * They use the basic page allocation routines to do the brunt of the work.
  55. */
  56. void agp_free_key(int key)
  57. {
  58. if (key < 0)
  59. return;
  60. if (key < MAXKEY)
  61. clear_bit(key, agp_bridge->key_list);
  62. }
  63. EXPORT_SYMBOL(agp_free_key);
  64. static int agp_get_key(void)
  65. {
  66. int bit;
  67. bit = find_first_zero_bit(agp_bridge->key_list, MAXKEY);
  68. if (bit < MAXKEY) {
  69. set_bit(bit, agp_bridge->key_list);
  70. return bit;
  71. }
  72. return -1;
  73. }
  74. /*
  75. * Use kmalloc if possible for the page list. Otherwise fall back to
  76. * vmalloc. This speeds things up and also saves memory for small AGP
  77. * regions.
  78. */
  79. void agp_alloc_page_array(size_t size, struct agp_memory *mem)
  80. {
  81. mem->pages = NULL;
  82. if (size <= 2*PAGE_SIZE)
  83. mem->pages = kmalloc(size, GFP_KERNEL | __GFP_NOWARN);
  84. if (mem->pages == NULL) {
  85. mem->pages = vmalloc(size);
  86. }
  87. }
  88. EXPORT_SYMBOL(agp_alloc_page_array);
  89. void agp_free_page_array(struct agp_memory *mem)
  90. {
  91. if (is_vmalloc_addr(mem->pages)) {
  92. vfree(mem->pages);
  93. } else {
  94. kfree(mem->pages);
  95. }
  96. }
  97. EXPORT_SYMBOL(agp_free_page_array);
  98. static struct agp_memory *agp_create_user_memory(unsigned long num_agp_pages)
  99. {
  100. struct agp_memory *new;
  101. unsigned long alloc_size = num_agp_pages*sizeof(struct page *);
  102. if (INT_MAX/sizeof(struct page *) < num_agp_pages)
  103. return NULL;
  104. new = kzalloc(sizeof(struct agp_memory), GFP_KERNEL);
  105. if (new == NULL)
  106. return NULL;
  107. new->key = agp_get_key();
  108. if (new->key < 0) {
  109. kfree(new);
  110. return NULL;
  111. }
  112. agp_alloc_page_array(alloc_size, new);
  113. if (new->pages == NULL) {
  114. agp_free_key(new->key);
  115. kfree(new);
  116. return NULL;
  117. }
  118. new->num_scratch_pages = 0;
  119. return new;
  120. }
  121. struct agp_memory *agp_create_memory(int scratch_pages)
  122. {
  123. struct agp_memory *new;
  124. new = kzalloc(sizeof(struct agp_memory), GFP_KERNEL);
  125. if (new == NULL)
  126. return NULL;
  127. new->key = agp_get_key();
  128. if (new->key < 0) {
  129. kfree(new);
  130. return NULL;
  131. }
  132. agp_alloc_page_array(PAGE_SIZE * scratch_pages, new);
  133. if (new->pages == NULL) {
  134. agp_free_key(new->key);
  135. kfree(new);
  136. return NULL;
  137. }
  138. new->num_scratch_pages = scratch_pages;
  139. new->type = AGP_NORMAL_MEMORY;
  140. return new;
  141. }
  142. EXPORT_SYMBOL(agp_create_memory);
  143. /**
  144. * agp_free_memory - free memory associated with an agp_memory pointer.
  145. *
  146. * @curr: agp_memory pointer to be freed.
  147. *
  148. * It is the only function that can be called when the backend is not owned
  149. * by the caller. (So it can free memory on client death.)
  150. */
  151. void agp_free_memory(struct agp_memory *curr)
  152. {
  153. size_t i;
  154. if (curr == NULL)
  155. return;
  156. if (curr->is_bound)
  157. agp_unbind_memory(curr);
  158. if (curr->type >= AGP_USER_TYPES) {
  159. agp_generic_free_by_type(curr);
  160. return;
  161. }
  162. if (curr->type != 0) {
  163. curr->bridge->driver->free_by_type(curr);
  164. return;
  165. }
  166. if (curr->page_count != 0) {
  167. if (curr->bridge->driver->agp_destroy_pages) {
  168. curr->bridge->driver->agp_destroy_pages(curr);
  169. } else {
  170. for (i = 0; i < curr->page_count; i++) {
  171. curr->bridge->driver->agp_destroy_page(
  172. curr->pages[i],
  173. AGP_PAGE_DESTROY_UNMAP);
  174. }
  175. for (i = 0; i < curr->page_count; i++) {
  176. curr->bridge->driver->agp_destroy_page(
  177. curr->pages[i],
  178. AGP_PAGE_DESTROY_FREE);
  179. }
  180. }
  181. }
  182. agp_free_key(curr->key);
  183. agp_free_page_array(curr);
  184. kfree(curr);
  185. }
  186. EXPORT_SYMBOL(agp_free_memory);
  187. #define ENTRIES_PER_PAGE (PAGE_SIZE / sizeof(unsigned long))
  188. /**
  189. * agp_allocate_memory - allocate a group of pages of a certain type.
  190. *
  191. * @page_count: size_t argument of the number of pages
  192. * @type: u32 argument of the type of memory to be allocated.
  193. *
  194. * Every agp bridge device will allow you to allocate AGP_NORMAL_MEMORY which
  195. * maps to physical ram. Any other type is device dependent.
  196. *
  197. * It returns NULL whenever memory is unavailable.
  198. */
  199. struct agp_memory *agp_allocate_memory(struct agp_bridge_data *bridge,
  200. size_t page_count, u32 type)
  201. {
  202. int scratch_pages;
  203. struct agp_memory *new;
  204. size_t i;
  205. int cur_memory;
  206. if (!bridge)
  207. return NULL;
  208. cur_memory = atomic_read(&bridge->current_memory_agp);
  209. if ((cur_memory + page_count > bridge->max_memory_agp) ||
  210. (cur_memory + page_count < page_count))
  211. return NULL;
  212. if (type >= AGP_USER_TYPES) {
  213. new = agp_generic_alloc_user(page_count, type);
  214. if (new)
  215. new->bridge = bridge;
  216. return new;
  217. }
  218. if (type != 0) {
  219. new = bridge->driver->alloc_by_type(page_count, type);
  220. if (new)
  221. new->bridge = bridge;
  222. return new;
  223. }
  224. scratch_pages = (page_count + ENTRIES_PER_PAGE - 1) / ENTRIES_PER_PAGE;
  225. new = agp_create_memory(scratch_pages);
  226. if (new == NULL)
  227. return NULL;
  228. if (bridge->driver->agp_alloc_pages) {
  229. if (bridge->driver->agp_alloc_pages(bridge, new, page_count)) {
  230. agp_free_memory(new);
  231. return NULL;
  232. }
  233. new->bridge = bridge;
  234. return new;
  235. }
  236. for (i = 0; i < page_count; i++) {
  237. struct page *page = bridge->driver->agp_alloc_page(bridge);
  238. if (page == NULL) {
  239. agp_free_memory(new);
  240. return NULL;
  241. }
  242. new->pages[i] = page;
  243. new->page_count++;
  244. }
  245. new->bridge = bridge;
  246. return new;
  247. }
  248. EXPORT_SYMBOL(agp_allocate_memory);
  249. /* End - Generic routines for handling agp_memory structures */
  250. static int agp_return_size(void)
  251. {
  252. int current_size;
  253. void *temp;
  254. temp = agp_bridge->current_size;
  255. switch (agp_bridge->driver->size_type) {
  256. case U8_APER_SIZE:
  257. current_size = A_SIZE_8(temp)->size;
  258. break;
  259. case U16_APER_SIZE:
  260. current_size = A_SIZE_16(temp)->size;
  261. break;
  262. case U32_APER_SIZE:
  263. current_size = A_SIZE_32(temp)->size;
  264. break;
  265. case LVL2_APER_SIZE:
  266. current_size = A_SIZE_LVL2(temp)->size;
  267. break;
  268. case FIXED_APER_SIZE:
  269. current_size = A_SIZE_FIX(temp)->size;
  270. break;
  271. default:
  272. current_size = 0;
  273. break;
  274. }
  275. current_size -= (agp_memory_reserved / (1024*1024));
  276. if (current_size <0)
  277. current_size = 0;
  278. return current_size;
  279. }
  280. int agp_num_entries(void)
  281. {
  282. int num_entries;
  283. void *temp;
  284. temp = agp_bridge->current_size;
  285. switch (agp_bridge->driver->size_type) {
  286. case U8_APER_SIZE:
  287. num_entries = A_SIZE_8(temp)->num_entries;
  288. break;
  289. case U16_APER_SIZE:
  290. num_entries = A_SIZE_16(temp)->num_entries;
  291. break;
  292. case U32_APER_SIZE:
  293. num_entries = A_SIZE_32(temp)->num_entries;
  294. break;
  295. case LVL2_APER_SIZE:
  296. num_entries = A_SIZE_LVL2(temp)->num_entries;
  297. break;
  298. case FIXED_APER_SIZE:
  299. num_entries = A_SIZE_FIX(temp)->num_entries;
  300. break;
  301. default:
  302. num_entries = 0;
  303. break;
  304. }
  305. num_entries -= agp_memory_reserved>>PAGE_SHIFT;
  306. if (num_entries<0)
  307. num_entries = 0;
  308. return num_entries;
  309. }
  310. EXPORT_SYMBOL_GPL(agp_num_entries);
  311. /**
  312. * agp_copy_info - copy bridge state information
  313. *
  314. * @info: agp_kern_info pointer. The caller should insure that this pointer is valid.
  315. *
  316. * This function copies information about the agp bridge device and the state of
  317. * the agp backend into an agp_kern_info pointer.
  318. */
  319. int agp_copy_info(struct agp_bridge_data *bridge, struct agp_kern_info *info)
  320. {
  321. memset(info, 0, sizeof(struct agp_kern_info));
  322. if (!bridge) {
  323. info->chipset = NOT_SUPPORTED;
  324. return -EIO;
  325. }
  326. info->version.major = bridge->version->major;
  327. info->version.minor = bridge->version->minor;
  328. info->chipset = SUPPORTED;
  329. info->device = bridge->dev;
  330. if (bridge->mode & AGPSTAT_MODE_3_0)
  331. info->mode = bridge->mode & ~AGP3_RESERVED_MASK;
  332. else
  333. info->mode = bridge->mode & ~AGP2_RESERVED_MASK;
  334. info->aper_base = bridge->gart_bus_addr;
  335. info->aper_size = agp_return_size();
  336. info->max_memory = bridge->max_memory_agp;
  337. info->current_memory = atomic_read(&bridge->current_memory_agp);
  338. info->cant_use_aperture = bridge->driver->cant_use_aperture;
  339. info->vm_ops = bridge->vm_ops;
  340. info->page_mask = ~0UL;
  341. return 0;
  342. }
  343. EXPORT_SYMBOL(agp_copy_info);
  344. /* End - Routine to copy over information structure */
  345. /*
  346. * Routines for handling swapping of agp_memory into the GATT -
  347. * These routines take agp_memory and insert them into the GATT.
  348. * They call device specific routines to actually write to the GATT.
  349. */
  350. /**
  351. * agp_bind_memory - Bind an agp_memory structure into the GATT.
  352. *
  353. * @curr: agp_memory pointer
  354. * @pg_start: an offset into the graphics aperture translation table
  355. *
  356. * It returns -EINVAL if the pointer == NULL.
  357. * It returns -EBUSY if the area of the table requested is already in use.
  358. */
  359. int agp_bind_memory(struct agp_memory *curr, off_t pg_start)
  360. {
  361. int ret_val;
  362. if (curr == NULL)
  363. return -EINVAL;
  364. if (curr->is_bound) {
  365. printk(KERN_INFO PFX "memory %p is already bound!\n", curr);
  366. return -EINVAL;
  367. }
  368. if (!curr->is_flushed) {
  369. curr->bridge->driver->cache_flush();
  370. curr->is_flushed = true;
  371. }
  372. ret_val = curr->bridge->driver->insert_memory(curr, pg_start, curr->type);
  373. if (ret_val != 0)
  374. return ret_val;
  375. curr->is_bound = true;
  376. curr->pg_start = pg_start;
  377. spin_lock(&agp_bridge->mapped_lock);
  378. list_add(&curr->mapped_list, &agp_bridge->mapped_list);
  379. spin_unlock(&agp_bridge->mapped_lock);
  380. return 0;
  381. }
  382. EXPORT_SYMBOL(agp_bind_memory);
  383. /**
  384. * agp_unbind_memory - Removes an agp_memory structure from the GATT
  385. *
  386. * @curr: agp_memory pointer to be removed from the GATT.
  387. *
  388. * It returns -EINVAL if this piece of agp_memory is not currently bound to
  389. * the graphics aperture translation table or if the agp_memory pointer == NULL
  390. */
  391. int agp_unbind_memory(struct agp_memory *curr)
  392. {
  393. int ret_val;
  394. if (curr == NULL)
  395. return -EINVAL;
  396. if (!curr->is_bound) {
  397. printk(KERN_INFO PFX "memory %p was not bound!\n", curr);
  398. return -EINVAL;
  399. }
  400. ret_val = curr->bridge->driver->remove_memory(curr, curr->pg_start, curr->type);
  401. if (ret_val != 0)
  402. return ret_val;
  403. curr->is_bound = false;
  404. curr->pg_start = 0;
  405. spin_lock(&curr->bridge->mapped_lock);
  406. list_del(&curr->mapped_list);
  407. spin_unlock(&curr->bridge->mapped_lock);
  408. return 0;
  409. }
  410. EXPORT_SYMBOL(agp_unbind_memory);
  411. /* End - Routines for handling swapping of agp_memory into the GATT */
  412. /* Generic Agp routines - Start */
  413. static void agp_v2_parse_one(u32 *requested_mode, u32 *bridge_agpstat, u32 *vga_agpstat)
  414. {
  415. u32 tmp;
  416. if (*requested_mode & AGP2_RESERVED_MASK) {
  417. printk(KERN_INFO PFX "reserved bits set (%x) in mode 0x%x. Fixed.\n",
  418. *requested_mode & AGP2_RESERVED_MASK, *requested_mode);
  419. *requested_mode &= ~AGP2_RESERVED_MASK;
  420. }
  421. /*
  422. * Some dumb bridges are programmed to disobey the AGP2 spec.
  423. * This is likely a BIOS misprogramming rather than poweron default, or
  424. * it would be a lot more common.
  425. * https://bugs.freedesktop.org/show_bug.cgi?id=8816
  426. * AGPv2 spec 6.1.9 states:
  427. * The RATE field indicates the data transfer rates supported by this
  428. * device. A.G.P. devices must report all that apply.
  429. * Fix them up as best we can.
  430. */
  431. switch (*bridge_agpstat & 7) {
  432. case 4:
  433. *bridge_agpstat |= (AGPSTAT2_2X | AGPSTAT2_1X);
  434. printk(KERN_INFO PFX "BIOS bug. AGP bridge claims to only support x4 rate. "
  435. "Fixing up support for x2 & x1\n");
  436. break;
  437. case 2:
  438. *bridge_agpstat |= AGPSTAT2_1X;
  439. printk(KERN_INFO PFX "BIOS bug. AGP bridge claims to only support x2 rate. "
  440. "Fixing up support for x1\n");
  441. break;
  442. default:
  443. break;
  444. }
  445. /* Check the speed bits make sense. Only one should be set. */
  446. tmp = *requested_mode & 7;
  447. switch (tmp) {
  448. case 0:
  449. printk(KERN_INFO PFX "%s tried to set rate=x0. Setting to x1 mode.\n", current->comm);
  450. *requested_mode |= AGPSTAT2_1X;
  451. break;
  452. case 1:
  453. case 2:
  454. break;
  455. case 3:
  456. *requested_mode &= ~(AGPSTAT2_1X); /* rate=2 */
  457. break;
  458. case 4:
  459. break;
  460. case 5:
  461. case 6:
  462. case 7:
  463. *requested_mode &= ~(AGPSTAT2_1X|AGPSTAT2_2X); /* rate=4*/
  464. break;
  465. }
  466. /* disable SBA if it's not supported */
  467. if (!((*bridge_agpstat & AGPSTAT_SBA) && (*vga_agpstat & AGPSTAT_SBA) && (*requested_mode & AGPSTAT_SBA)))
  468. *bridge_agpstat &= ~AGPSTAT_SBA;
  469. /* Set rate */
  470. if (!((*bridge_agpstat & AGPSTAT2_4X) && (*vga_agpstat & AGPSTAT2_4X) && (*requested_mode & AGPSTAT2_4X)))
  471. *bridge_agpstat &= ~AGPSTAT2_4X;
  472. if (!((*bridge_agpstat & AGPSTAT2_2X) && (*vga_agpstat & AGPSTAT2_2X) && (*requested_mode & AGPSTAT2_2X)))
  473. *bridge_agpstat &= ~AGPSTAT2_2X;
  474. if (!((*bridge_agpstat & AGPSTAT2_1X) && (*vga_agpstat & AGPSTAT2_1X) && (*requested_mode & AGPSTAT2_1X)))
  475. *bridge_agpstat &= ~AGPSTAT2_1X;
  476. /* Now we know what mode it should be, clear out the unwanted bits. */
  477. if (*bridge_agpstat & AGPSTAT2_4X)
  478. *bridge_agpstat &= ~(AGPSTAT2_1X | AGPSTAT2_2X); /* 4X */
  479. if (*bridge_agpstat & AGPSTAT2_2X)
  480. *bridge_agpstat &= ~(AGPSTAT2_1X | AGPSTAT2_4X); /* 2X */
  481. if (*bridge_agpstat & AGPSTAT2_1X)
  482. *bridge_agpstat &= ~(AGPSTAT2_2X | AGPSTAT2_4X); /* 1X */
  483. /* Apply any errata. */
  484. if (agp_bridge->flags & AGP_ERRATA_FASTWRITES)
  485. *bridge_agpstat &= ~AGPSTAT_FW;
  486. if (agp_bridge->flags & AGP_ERRATA_SBA)
  487. *bridge_agpstat &= ~AGPSTAT_SBA;
  488. if (agp_bridge->flags & AGP_ERRATA_1X) {
  489. *bridge_agpstat &= ~(AGPSTAT2_2X | AGPSTAT2_4X);
  490. *bridge_agpstat |= AGPSTAT2_1X;
  491. }
  492. /* If we've dropped down to 1X, disable fast writes. */
  493. if (*bridge_agpstat & AGPSTAT2_1X)
  494. *bridge_agpstat &= ~AGPSTAT_FW;
  495. }
  496. /*
  497. * requested_mode = Mode requested by (typically) X.
  498. * bridge_agpstat = PCI_AGP_STATUS from agp bridge.
  499. * vga_agpstat = PCI_AGP_STATUS from graphic card.
  500. */
  501. static void agp_v3_parse_one(u32 *requested_mode, u32 *bridge_agpstat, u32 *vga_agpstat)
  502. {
  503. u32 origbridge=*bridge_agpstat, origvga=*vga_agpstat;
  504. u32 tmp;
  505. if (*requested_mode & AGP3_RESERVED_MASK) {
  506. printk(KERN_INFO PFX "reserved bits set (%x) in mode 0x%x. Fixed.\n",
  507. *requested_mode & AGP3_RESERVED_MASK, *requested_mode);
  508. *requested_mode &= ~AGP3_RESERVED_MASK;
  509. }
  510. /* Check the speed bits make sense. */
  511. tmp = *requested_mode & 7;
  512. if (tmp == 0) {
  513. printk(KERN_INFO PFX "%s tried to set rate=x0. Setting to AGP3 x4 mode.\n", current->comm);
  514. *requested_mode |= AGPSTAT3_4X;
  515. }
  516. if (tmp >= 3) {
  517. printk(KERN_INFO PFX "%s tried to set rate=x%d. Setting to AGP3 x8 mode.\n", current->comm, tmp * 4);
  518. *requested_mode = (*requested_mode & ~7) | AGPSTAT3_8X;
  519. }
  520. /* ARQSZ - Set the value to the maximum one.
  521. * Don't allow the mode register to override values. */
  522. *bridge_agpstat = ((*bridge_agpstat & ~AGPSTAT_ARQSZ) |
  523. max_t(u32,(*bridge_agpstat & AGPSTAT_ARQSZ),(*vga_agpstat & AGPSTAT_ARQSZ)));
  524. /* Calibration cycle.
  525. * Don't allow the mode register to override values. */
  526. *bridge_agpstat = ((*bridge_agpstat & ~AGPSTAT_CAL_MASK) |
  527. min_t(u32,(*bridge_agpstat & AGPSTAT_CAL_MASK),(*vga_agpstat & AGPSTAT_CAL_MASK)));
  528. /* SBA *must* be supported for AGP v3 */
  529. *bridge_agpstat |= AGPSTAT_SBA;
  530. /*
  531. * Set speed.
  532. * Check for invalid speeds. This can happen when applications
  533. * written before the AGP 3.0 standard pass AGP2.x modes to AGP3 hardware
  534. */
  535. if (*requested_mode & AGPSTAT_MODE_3_0) {
  536. /*
  537. * Caller hasn't a clue what it is doing. Bridge is in 3.0 mode,
  538. * have been passed a 3.0 mode, but with 2.x speed bits set.
  539. * AGP2.x 4x -> AGP3.0 4x.
  540. */
  541. if (*requested_mode & AGPSTAT2_4X) {
  542. printk(KERN_INFO PFX "%s passes broken AGP3 flags (%x). Fixed.\n",
  543. current->comm, *requested_mode);
  544. *requested_mode &= ~AGPSTAT2_4X;
  545. *requested_mode |= AGPSTAT3_4X;
  546. }
  547. } else {
  548. /*
  549. * The caller doesn't know what they are doing. We are in 3.0 mode,
  550. * but have been passed an AGP 2.x mode.
  551. * Convert AGP 1x,2x,4x -> AGP 3.0 4x.
  552. */
  553. printk(KERN_INFO PFX "%s passes broken AGP2 flags (%x) in AGP3 mode. Fixed.\n",
  554. current->comm, *requested_mode);
  555. *requested_mode &= ~(AGPSTAT2_4X | AGPSTAT2_2X | AGPSTAT2_1X);
  556. *requested_mode |= AGPSTAT3_4X;
  557. }
  558. if (*requested_mode & AGPSTAT3_8X) {
  559. if (!(*bridge_agpstat & AGPSTAT3_8X)) {
  560. *bridge_agpstat &= ~(AGPSTAT3_8X | AGPSTAT3_RSVD);
  561. *bridge_agpstat |= AGPSTAT3_4X;
  562. printk(KERN_INFO PFX "%s requested AGPx8 but bridge not capable.\n", current->comm);
  563. return;
  564. }
  565. if (!(*vga_agpstat & AGPSTAT3_8X)) {
  566. *bridge_agpstat &= ~(AGPSTAT3_8X | AGPSTAT3_RSVD);
  567. *bridge_agpstat |= AGPSTAT3_4X;
  568. printk(KERN_INFO PFX "%s requested AGPx8 but graphic card not capable.\n", current->comm);
  569. return;
  570. }
  571. /* All set, bridge & device can do AGP x8*/
  572. *bridge_agpstat &= ~(AGPSTAT3_4X | AGPSTAT3_RSVD);
  573. goto done;
  574. } else if (*requested_mode & AGPSTAT3_4X) {
  575. *bridge_agpstat &= ~(AGPSTAT3_8X | AGPSTAT3_RSVD);
  576. *bridge_agpstat |= AGPSTAT3_4X;
  577. goto done;
  578. } else {
  579. /*
  580. * If we didn't specify an AGP mode, we see if both
  581. * the graphics card, and the bridge can do x8, and use if so.
  582. * If not, we fall back to x4 mode.
  583. */
  584. if ((*bridge_agpstat & AGPSTAT3_8X) && (*vga_agpstat & AGPSTAT3_8X)) {
  585. printk(KERN_INFO PFX "No AGP mode specified. Setting to highest mode "
  586. "supported by bridge & card (x8).\n");
  587. *bridge_agpstat &= ~(AGPSTAT3_4X | AGPSTAT3_RSVD);
  588. *vga_agpstat &= ~(AGPSTAT3_4X | AGPSTAT3_RSVD);
  589. } else {
  590. printk(KERN_INFO PFX "Fell back to AGPx4 mode because ");
  591. if (!(*bridge_agpstat & AGPSTAT3_8X)) {
  592. printk(KERN_INFO PFX "bridge couldn't do x8. bridge_agpstat:%x (orig=%x)\n",
  593. *bridge_agpstat, origbridge);
  594. *bridge_agpstat &= ~(AGPSTAT3_8X | AGPSTAT3_RSVD);
  595. *bridge_agpstat |= AGPSTAT3_4X;
  596. }
  597. if (!(*vga_agpstat & AGPSTAT3_8X)) {
  598. printk(KERN_INFO PFX "graphics card couldn't do x8. vga_agpstat:%x (orig=%x)\n",
  599. *vga_agpstat, origvga);
  600. *vga_agpstat &= ~(AGPSTAT3_8X | AGPSTAT3_RSVD);
  601. *vga_agpstat |= AGPSTAT3_4X;
  602. }
  603. }
  604. }
  605. done:
  606. /* Apply any errata. */
  607. if (agp_bridge->flags & AGP_ERRATA_FASTWRITES)
  608. *bridge_agpstat &= ~AGPSTAT_FW;
  609. if (agp_bridge->flags & AGP_ERRATA_SBA)
  610. *bridge_agpstat &= ~AGPSTAT_SBA;
  611. if (agp_bridge->flags & AGP_ERRATA_1X) {
  612. *bridge_agpstat &= ~(AGPSTAT2_2X | AGPSTAT2_4X);
  613. *bridge_agpstat |= AGPSTAT2_1X;
  614. }
  615. }
  616. /**
  617. * agp_collect_device_status - determine correct agp_cmd from various agp_stat's
  618. * @bridge: an agp_bridge_data struct allocated for the AGP host bridge.
  619. * @requested_mode: requested agp_stat from userspace (Typically from X)
  620. * @bridge_agpstat: current agp_stat from AGP bridge.
  621. *
  622. * This function will hunt for an AGP graphics card, and try to match
  623. * the requested mode to the capabilities of both the bridge and the card.
  624. */
  625. u32 agp_collect_device_status(struct agp_bridge_data *bridge, u32 requested_mode, u32 bridge_agpstat)
  626. {
  627. struct pci_dev *device = NULL;
  628. u32 vga_agpstat;
  629. u8 cap_ptr;
  630. for (;;) {
  631. device = pci_get_class(PCI_CLASS_DISPLAY_VGA << 8, device);
  632. if (!device) {
  633. printk(KERN_INFO PFX "Couldn't find an AGP VGA controller.\n");
  634. return 0;
  635. }
  636. cap_ptr = pci_find_capability(device, PCI_CAP_ID_AGP);
  637. if (cap_ptr)
  638. break;
  639. }
  640. /*
  641. * Ok, here we have a AGP device. Disable impossible
  642. * settings, and adjust the readqueue to the minimum.
  643. */
  644. pci_read_config_dword(device, cap_ptr+PCI_AGP_STATUS, &vga_agpstat);
  645. /* adjust RQ depth */
  646. bridge_agpstat = ((bridge_agpstat & ~AGPSTAT_RQ_DEPTH) |
  647. min_t(u32, (requested_mode & AGPSTAT_RQ_DEPTH),
  648. min_t(u32, (bridge_agpstat & AGPSTAT_RQ_DEPTH), (vga_agpstat & AGPSTAT_RQ_DEPTH))));
  649. /* disable FW if it's not supported */
  650. if (!((bridge_agpstat & AGPSTAT_FW) &&
  651. (vga_agpstat & AGPSTAT_FW) &&
  652. (requested_mode & AGPSTAT_FW)))
  653. bridge_agpstat &= ~AGPSTAT_FW;
  654. /* Check to see if we are operating in 3.0 mode */
  655. if (agp_bridge->mode & AGPSTAT_MODE_3_0)
  656. agp_v3_parse_one(&requested_mode, &bridge_agpstat, &vga_agpstat);
  657. else
  658. agp_v2_parse_one(&requested_mode, &bridge_agpstat, &vga_agpstat);
  659. pci_dev_put(device);
  660. return bridge_agpstat;
  661. }
  662. EXPORT_SYMBOL(agp_collect_device_status);
  663. void agp_device_command(u32 bridge_agpstat, bool agp_v3)
  664. {
  665. struct pci_dev *device = NULL;
  666. int mode;
  667. mode = bridge_agpstat & 0x7;
  668. if (agp_v3)
  669. mode *= 4;
  670. for_each_pci_dev(device) {
  671. u8 agp = pci_find_capability(device, PCI_CAP_ID_AGP);
  672. if (!agp)
  673. continue;
  674. dev_info(&device->dev, "putting AGP V%d device into %dx mode\n",
  675. agp_v3 ? 3 : 2, mode);
  676. pci_write_config_dword(device, agp + PCI_AGP_COMMAND, bridge_agpstat);
  677. }
  678. }
  679. EXPORT_SYMBOL(agp_device_command);
  680. void get_agp_version(struct agp_bridge_data *bridge)
  681. {
  682. u32 ncapid;
  683. /* Exit early if already set by errata workarounds. */
  684. if (bridge->major_version != 0)
  685. return;
  686. pci_read_config_dword(bridge->dev, bridge->capndx, &ncapid);
  687. bridge->major_version = (ncapid >> AGP_MAJOR_VERSION_SHIFT) & 0xf;
  688. bridge->minor_version = (ncapid >> AGP_MINOR_VERSION_SHIFT) & 0xf;
  689. }
  690. EXPORT_SYMBOL(get_agp_version);
  691. void agp_generic_enable(struct agp_bridge_data *bridge, u32 requested_mode)
  692. {
  693. u32 bridge_agpstat, temp;
  694. get_agp_version(agp_bridge);
  695. dev_info(&agp_bridge->dev->dev, "AGP %d.%d bridge\n",
  696. agp_bridge->major_version, agp_bridge->minor_version);
  697. pci_read_config_dword(agp_bridge->dev,
  698. agp_bridge->capndx + PCI_AGP_STATUS, &bridge_agpstat);
  699. bridge_agpstat = agp_collect_device_status(agp_bridge, requested_mode, bridge_agpstat);
  700. if (bridge_agpstat == 0)
  701. /* Something bad happened. FIXME: Return error code? */
  702. return;
  703. bridge_agpstat |= AGPSTAT_AGP_ENABLE;
  704. /* Do AGP version specific frobbing. */
  705. if (bridge->major_version >= 3) {
  706. if (bridge->mode & AGPSTAT_MODE_3_0) {
  707. /* If we have 3.5, we can do the isoch stuff. */
  708. if (bridge->minor_version >= 5)
  709. agp_3_5_enable(bridge);
  710. agp_device_command(bridge_agpstat, true);
  711. return;
  712. } else {
  713. /* Disable calibration cycle in RX91<1> when not in AGP3.0 mode of operation.*/
  714. bridge_agpstat &= ~(7<<10) ;
  715. pci_read_config_dword(bridge->dev,
  716. bridge->capndx+AGPCTRL, &temp);
  717. temp |= (1<<9);
  718. pci_write_config_dword(bridge->dev,
  719. bridge->capndx+AGPCTRL, temp);
  720. dev_info(&bridge->dev->dev, "bridge is in legacy mode, falling back to 2.x\n");
  721. }
  722. }
  723. /* AGP v<3 */
  724. agp_device_command(bridge_agpstat, false);
  725. }
  726. EXPORT_SYMBOL(agp_generic_enable);
  727. int agp_generic_create_gatt_table(struct agp_bridge_data *bridge)
  728. {
  729. char *table;
  730. char *table_end;
  731. int size;
  732. int page_order;
  733. int num_entries;
  734. int i;
  735. void *temp;
  736. struct page *page;
  737. /* The generic routines can't handle 2 level gatt's */
  738. if (bridge->driver->size_type == LVL2_APER_SIZE)
  739. return -EINVAL;
  740. table = NULL;
  741. i = bridge->aperture_size_idx;
  742. temp = bridge->current_size;
  743. size = page_order = num_entries = 0;
  744. if (bridge->driver->size_type != FIXED_APER_SIZE) {
  745. do {
  746. switch (bridge->driver->size_type) {
  747. case U8_APER_SIZE:
  748. size = A_SIZE_8(temp)->size;
  749. page_order =
  750. A_SIZE_8(temp)->page_order;
  751. num_entries =
  752. A_SIZE_8(temp)->num_entries;
  753. break;
  754. case U16_APER_SIZE:
  755. size = A_SIZE_16(temp)->size;
  756. page_order = A_SIZE_16(temp)->page_order;
  757. num_entries = A_SIZE_16(temp)->num_entries;
  758. break;
  759. case U32_APER_SIZE:
  760. size = A_SIZE_32(temp)->size;
  761. page_order = A_SIZE_32(temp)->page_order;
  762. num_entries = A_SIZE_32(temp)->num_entries;
  763. break;
  764. /* This case will never really happen. */
  765. case FIXED_APER_SIZE:
  766. case LVL2_APER_SIZE:
  767. default:
  768. size = page_order = num_entries = 0;
  769. break;
  770. }
  771. table = alloc_gatt_pages(page_order);
  772. if (table == NULL) {
  773. i++;
  774. switch (bridge->driver->size_type) {
  775. case U8_APER_SIZE:
  776. bridge->current_size = A_IDX8(bridge);
  777. break;
  778. case U16_APER_SIZE:
  779. bridge->current_size = A_IDX16(bridge);
  780. break;
  781. case U32_APER_SIZE:
  782. bridge->current_size = A_IDX32(bridge);
  783. break;
  784. /* These cases will never really happen. */
  785. case FIXED_APER_SIZE:
  786. case LVL2_APER_SIZE:
  787. default:
  788. break;
  789. }
  790. temp = bridge->current_size;
  791. } else {
  792. bridge->aperture_size_idx = i;
  793. }
  794. } while (!table && (i < bridge->driver->num_aperture_sizes));
  795. } else {
  796. size = ((struct aper_size_info_fixed *) temp)->size;
  797. page_order = ((struct aper_size_info_fixed *) temp)->page_order;
  798. num_entries = ((struct aper_size_info_fixed *) temp)->num_entries;
  799. table = alloc_gatt_pages(page_order);
  800. }
  801. if (table == NULL)
  802. return -ENOMEM;
  803. table_end = table + ((PAGE_SIZE * (1 << page_order)) - 1);
  804. for (page = virt_to_page(table); page <= virt_to_page(table_end); page++)
  805. SetPageReserved(page);
  806. bridge->gatt_table_real = (u32 *) table;
  807. agp_gatt_table = (void *)table;
  808. bridge->driver->cache_flush();
  809. #ifdef CONFIG_X86
  810. if (set_memory_uc((unsigned long)table, 1 << page_order))
  811. printk(KERN_WARNING "Could not set GATT table memory to UC!\n");
  812. bridge->gatt_table = (u32 __iomem *)table;
  813. #else
  814. bridge->gatt_table = ioremap_nocache(virt_to_phys(table),
  815. (PAGE_SIZE * (1 << page_order)));
  816. bridge->driver->cache_flush();
  817. #endif
  818. if (bridge->gatt_table == NULL) {
  819. for (page = virt_to_page(table); page <= virt_to_page(table_end); page++)
  820. ClearPageReserved(page);
  821. free_gatt_pages(table, page_order);
  822. return -ENOMEM;
  823. }
  824. bridge->gatt_bus_addr = virt_to_phys(bridge->gatt_table_real);
  825. /* AK: bogus, should encode addresses > 4GB */
  826. for (i = 0; i < num_entries; i++) {
  827. writel(bridge->scratch_page, bridge->gatt_table+i);
  828. readl(bridge->gatt_table+i); /* PCI Posting. */
  829. }
  830. return 0;
  831. }
  832. EXPORT_SYMBOL(agp_generic_create_gatt_table);
  833. int agp_generic_free_gatt_table(struct agp_bridge_data *bridge)
  834. {
  835. int page_order;
  836. char *table, *table_end;
  837. void *temp;
  838. struct page *page;
  839. temp = bridge->current_size;
  840. switch (bridge->driver->size_type) {
  841. case U8_APER_SIZE:
  842. page_order = A_SIZE_8(temp)->page_order;
  843. break;
  844. case U16_APER_SIZE:
  845. page_order = A_SIZE_16(temp)->page_order;
  846. break;
  847. case U32_APER_SIZE:
  848. page_order = A_SIZE_32(temp)->page_order;
  849. break;
  850. case FIXED_APER_SIZE:
  851. page_order = A_SIZE_FIX(temp)->page_order;
  852. break;
  853. case LVL2_APER_SIZE:
  854. /* The generic routines can't deal with 2 level gatt's */
  855. return -EINVAL;
  856. default:
  857. page_order = 0;
  858. break;
  859. }
  860. /* Do not worry about freeing memory, because if this is
  861. * called, then all agp memory is deallocated and removed
  862. * from the table. */
  863. #ifdef CONFIG_X86
  864. set_memory_wb((unsigned long)bridge->gatt_table, 1 << page_order);
  865. #else
  866. iounmap(bridge->gatt_table);
  867. #endif
  868. table = (char *) bridge->gatt_table_real;
  869. table_end = table + ((PAGE_SIZE * (1 << page_order)) - 1);
  870. for (page = virt_to_page(table); page <= virt_to_page(table_end); page++)
  871. ClearPageReserved(page);
  872. free_gatt_pages(bridge->gatt_table_real, page_order);
  873. agp_gatt_table = NULL;
  874. bridge->gatt_table = NULL;
  875. bridge->gatt_table_real = NULL;
  876. bridge->gatt_bus_addr = 0;
  877. return 0;
  878. }
  879. EXPORT_SYMBOL(agp_generic_free_gatt_table);
  880. int agp_generic_insert_memory(struct agp_memory * mem, off_t pg_start, int type)
  881. {
  882. int num_entries;
  883. size_t i;
  884. off_t j;
  885. void *temp;
  886. struct agp_bridge_data *bridge;
  887. int mask_type;
  888. bridge = mem->bridge;
  889. if (!bridge)
  890. return -EINVAL;
  891. if (mem->page_count == 0)
  892. return 0;
  893. temp = bridge->current_size;
  894. switch (bridge->driver->size_type) {
  895. case U8_APER_SIZE:
  896. num_entries = A_SIZE_8(temp)->num_entries;
  897. break;
  898. case U16_APER_SIZE:
  899. num_entries = A_SIZE_16(temp)->num_entries;
  900. break;
  901. case U32_APER_SIZE:
  902. num_entries = A_SIZE_32(temp)->num_entries;
  903. break;
  904. case FIXED_APER_SIZE:
  905. num_entries = A_SIZE_FIX(temp)->num_entries;
  906. break;
  907. case LVL2_APER_SIZE:
  908. /* The generic routines can't deal with 2 level gatt's */
  909. return -EINVAL;
  910. default:
  911. num_entries = 0;
  912. break;
  913. }
  914. num_entries -= agp_memory_reserved/PAGE_SIZE;
  915. if (num_entries < 0) num_entries = 0;
  916. if (type != mem->type)
  917. return -EINVAL;
  918. mask_type = bridge->driver->agp_type_to_mask_type(bridge, type);
  919. if (mask_type != 0) {
  920. /* The generic routines know nothing of memory types */
  921. return -EINVAL;
  922. }
  923. if (((pg_start + mem->page_count) > num_entries) ||
  924. ((pg_start + mem->page_count) < pg_start))
  925. return -EINVAL;
  926. j = pg_start;
  927. while (j < (pg_start + mem->page_count)) {
  928. if (!PGE_EMPTY(bridge, readl(bridge->gatt_table+j)))
  929. return -EBUSY;
  930. j++;
  931. }
  932. if (!mem->is_flushed) {
  933. bridge->driver->cache_flush();
  934. mem->is_flushed = true;
  935. }
  936. for (i = 0, j = pg_start; i < mem->page_count; i++, j++) {
  937. writel(bridge->driver->mask_memory(bridge,
  938. page_to_phys(mem->pages[i]),
  939. mask_type),
  940. bridge->gatt_table+j);
  941. }
  942. readl(bridge->gatt_table+j-1); /* PCI Posting. */
  943. bridge->driver->tlb_flush(mem);
  944. return 0;
  945. }
  946. EXPORT_SYMBOL(agp_generic_insert_memory);
  947. int agp_generic_remove_memory(struct agp_memory *mem, off_t pg_start, int type)
  948. {
  949. size_t i;
  950. struct agp_bridge_data *bridge;
  951. int mask_type, num_entries;
  952. bridge = mem->bridge;
  953. if (!bridge)
  954. return -EINVAL;
  955. if (mem->page_count == 0)
  956. return 0;
  957. if (type != mem->type)
  958. return -EINVAL;
  959. num_entries = agp_num_entries();
  960. if (((pg_start + mem->page_count) > num_entries) ||
  961. ((pg_start + mem->page_count) < pg_start))
  962. return -EINVAL;
  963. mask_type = bridge->driver->agp_type_to_mask_type(bridge, type);
  964. if (mask_type != 0) {
  965. /* The generic routines know nothing of memory types */
  966. return -EINVAL;
  967. }
  968. /* AK: bogus, should encode addresses > 4GB */
  969. for (i = pg_start; i < (mem->page_count + pg_start); i++) {
  970. writel(bridge->scratch_page, bridge->gatt_table+i);
  971. }
  972. readl(bridge->gatt_table+i-1); /* PCI Posting. */
  973. bridge->driver->tlb_flush(mem);
  974. return 0;
  975. }
  976. EXPORT_SYMBOL(agp_generic_remove_memory);
  977. struct agp_memory *agp_generic_alloc_by_type(size_t page_count, int type)
  978. {
  979. return NULL;
  980. }
  981. EXPORT_SYMBOL(agp_generic_alloc_by_type);
  982. void agp_generic_free_by_type(struct agp_memory *curr)
  983. {
  984. agp_free_page_array(curr);
  985. agp_free_key(curr->key);
  986. kfree(curr);
  987. }
  988. EXPORT_SYMBOL(agp_generic_free_by_type);
  989. struct agp_memory *agp_generic_alloc_user(size_t page_count, int type)
  990. {
  991. struct agp_memory *new;
  992. int i;
  993. int pages;
  994. pages = (page_count + ENTRIES_PER_PAGE - 1) / ENTRIES_PER_PAGE;
  995. new = agp_create_user_memory(page_count);
  996. if (new == NULL)
  997. return NULL;
  998. for (i = 0; i < page_count; i++)
  999. new->pages[i] = NULL;
  1000. new->page_count = 0;
  1001. new->type = type;
  1002. new->num_scratch_pages = pages;
  1003. return new;
  1004. }
  1005. EXPORT_SYMBOL(agp_generic_alloc_user);
  1006. /*
  1007. * Basic Page Allocation Routines -
  1008. * These routines handle page allocation and by default they reserve the allocated
  1009. * memory. They also handle incrementing the current_memory_agp value, Which is checked
  1010. * against a maximum value.
  1011. */
  1012. int agp_generic_alloc_pages(struct agp_bridge_data *bridge, struct agp_memory *mem, size_t num_pages)
  1013. {
  1014. struct page * page;
  1015. int i, ret = -ENOMEM;
  1016. for (i = 0; i < num_pages; i++) {
  1017. page = alloc_page(GFP_KERNEL | GFP_DMA32 | __GFP_ZERO);
  1018. /* agp_free_memory() needs gart address */
  1019. if (page == NULL)
  1020. goto out;
  1021. #ifndef CONFIG_X86
  1022. map_page_into_agp(page);
  1023. #endif
  1024. get_page(page);
  1025. atomic_inc(&agp_bridge->current_memory_agp);
  1026. mem->pages[i] = page;
  1027. mem->page_count++;
  1028. }
  1029. #ifdef CONFIG_X86
  1030. set_pages_array_uc(mem->pages, num_pages);
  1031. #endif
  1032. ret = 0;
  1033. out:
  1034. return ret;
  1035. }
  1036. EXPORT_SYMBOL(agp_generic_alloc_pages);
  1037. struct page *agp_generic_alloc_page(struct agp_bridge_data *bridge)
  1038. {
  1039. struct page * page;
  1040. page = alloc_page(GFP_KERNEL | GFP_DMA32 | __GFP_ZERO);
  1041. if (page == NULL)
  1042. return NULL;
  1043. map_page_into_agp(page);
  1044. get_page(page);
  1045. atomic_inc(&agp_bridge->current_memory_agp);
  1046. return page;
  1047. }
  1048. EXPORT_SYMBOL(agp_generic_alloc_page);
  1049. void agp_generic_destroy_pages(struct agp_memory *mem)
  1050. {
  1051. int i;
  1052. struct page *page;
  1053. if (!mem)
  1054. return;
  1055. #ifdef CONFIG_X86
  1056. set_pages_array_wb(mem->pages, mem->page_count);
  1057. #endif
  1058. for (i = 0; i < mem->page_count; i++) {
  1059. page = mem->pages[i];
  1060. #ifndef CONFIG_X86
  1061. unmap_page_from_agp(page);
  1062. #endif
  1063. put_page(page);
  1064. __free_page(page);
  1065. atomic_dec(&agp_bridge->current_memory_agp);
  1066. mem->pages[i] = NULL;
  1067. }
  1068. }
  1069. EXPORT_SYMBOL(agp_generic_destroy_pages);
  1070. void agp_generic_destroy_page(struct page *page, int flags)
  1071. {
  1072. if (page == NULL)
  1073. return;
  1074. if (flags & AGP_PAGE_DESTROY_UNMAP)
  1075. unmap_page_from_agp(page);
  1076. if (flags & AGP_PAGE_DESTROY_FREE) {
  1077. put_page(page);
  1078. __free_page(page);
  1079. atomic_dec(&agp_bridge->current_memory_agp);
  1080. }
  1081. }
  1082. EXPORT_SYMBOL(agp_generic_destroy_page);
  1083. /* End Basic Page Allocation Routines */
  1084. /**
  1085. * agp_enable - initialise the agp point-to-point connection.
  1086. *
  1087. * @mode: agp mode register value to configure with.
  1088. */
  1089. void agp_enable(struct agp_bridge_data *bridge, u32 mode)
  1090. {
  1091. if (!bridge)
  1092. return;
  1093. bridge->driver->agp_enable(bridge, mode);
  1094. }
  1095. EXPORT_SYMBOL(agp_enable);
  1096. /* When we remove the global variable agp_bridge from all drivers
  1097. * then agp_alloc_bridge and agp_generic_find_bridge need to be updated
  1098. */
  1099. struct agp_bridge_data *agp_generic_find_bridge(struct pci_dev *pdev)
  1100. {
  1101. if (list_empty(&agp_bridges))
  1102. return NULL;
  1103. return agp_bridge;
  1104. }
  1105. static void ipi_handler(void *null)
  1106. {
  1107. flush_agp_cache();
  1108. }
  1109. void global_cache_flush(void)
  1110. {
  1111. if (on_each_cpu(ipi_handler, NULL, 1) != 0)
  1112. panic(PFX "timed out waiting for the other CPUs!\n");
  1113. }
  1114. EXPORT_SYMBOL(global_cache_flush);
  1115. unsigned long agp_generic_mask_memory(struct agp_bridge_data *bridge,
  1116. dma_addr_t addr, int type)
  1117. {
  1118. /* memory type is ignored in the generic routine */
  1119. if (bridge->driver->masks)
  1120. return addr | bridge->driver->masks[0].mask;
  1121. else
  1122. return addr;
  1123. }
  1124. EXPORT_SYMBOL(agp_generic_mask_memory);
  1125. int agp_generic_type_to_mask_type(struct agp_bridge_data *bridge,
  1126. int type)
  1127. {
  1128. if (type >= AGP_USER_TYPES)
  1129. return 0;
  1130. return type;
  1131. }
  1132. EXPORT_SYMBOL(agp_generic_type_to_mask_type);
  1133. /*
  1134. * These functions are implemented according to the AGPv3 spec,
  1135. * which covers implementation details that had previously been
  1136. * left open.
  1137. */
  1138. int agp3_generic_fetch_size(void)
  1139. {
  1140. u16 temp_size;
  1141. int i;
  1142. struct aper_size_info_16 *values;
  1143. pci_read_config_word(agp_bridge->dev, agp_bridge->capndx+AGPAPSIZE, &temp_size);
  1144. values = A_SIZE_16(agp_bridge->driver->aperture_sizes);
  1145. for (i = 0; i < agp_bridge->driver->num_aperture_sizes; i++) {
  1146. if (temp_size == values[i].size_value) {
  1147. agp_bridge->previous_size =
  1148. agp_bridge->current_size = (void *) (values + i);
  1149. agp_bridge->aperture_size_idx = i;
  1150. return values[i].size;
  1151. }
  1152. }
  1153. return 0;
  1154. }
  1155. EXPORT_SYMBOL(agp3_generic_fetch_size);
  1156. void agp3_generic_tlbflush(struct agp_memory *mem)
  1157. {
  1158. u32 ctrl;
  1159. pci_read_config_dword(agp_bridge->dev, agp_bridge->capndx+AGPCTRL, &ctrl);
  1160. pci_write_config_dword(agp_bridge->dev, agp_bridge->capndx+AGPCTRL, ctrl & ~AGPCTRL_GTLBEN);
  1161. pci_write_config_dword(agp_bridge->dev, agp_bridge->capndx+AGPCTRL, ctrl);
  1162. }
  1163. EXPORT_SYMBOL(agp3_generic_tlbflush);
  1164. int agp3_generic_configure(void)
  1165. {
  1166. u32 temp;
  1167. struct aper_size_info_16 *current_size;
  1168. current_size = A_SIZE_16(agp_bridge->current_size);
  1169. agp_bridge->gart_bus_addr = pci_bus_address(agp_bridge->dev,
  1170. AGP_APERTURE_BAR);
  1171. /* set aperture size */
  1172. pci_write_config_word(agp_bridge->dev, agp_bridge->capndx+AGPAPSIZE, current_size->size_value);
  1173. /* set gart pointer */
  1174. pci_write_config_dword(agp_bridge->dev, agp_bridge->capndx+AGPGARTLO, agp_bridge->gatt_bus_addr);
  1175. /* enable aperture and GTLB */
  1176. pci_read_config_dword(agp_bridge->dev, agp_bridge->capndx+AGPCTRL, &temp);
  1177. pci_write_config_dword(agp_bridge->dev, agp_bridge->capndx+AGPCTRL, temp | AGPCTRL_APERENB | AGPCTRL_GTLBEN);
  1178. return 0;
  1179. }
  1180. EXPORT_SYMBOL(agp3_generic_configure);
  1181. void agp3_generic_cleanup(void)
  1182. {
  1183. u32 ctrl;
  1184. pci_read_config_dword(agp_bridge->dev, agp_bridge->capndx+AGPCTRL, &ctrl);
  1185. pci_write_config_dword(agp_bridge->dev, agp_bridge->capndx+AGPCTRL, ctrl & ~AGPCTRL_APERENB);
  1186. }
  1187. EXPORT_SYMBOL(agp3_generic_cleanup);
  1188. const struct aper_size_info_16 agp3_generic_sizes[AGP_GENERIC_SIZES_ENTRIES] =
  1189. {
  1190. {4096, 1048576, 10,0x000},
  1191. {2048, 524288, 9, 0x800},
  1192. {1024, 262144, 8, 0xc00},
  1193. { 512, 131072, 7, 0xe00},
  1194. { 256, 65536, 6, 0xf00},
  1195. { 128, 32768, 5, 0xf20},
  1196. { 64, 16384, 4, 0xf30},
  1197. { 32, 8192, 3, 0xf38},
  1198. { 16, 4096, 2, 0xf3c},
  1199. { 8, 2048, 1, 0xf3e},
  1200. { 4, 1024, 0, 0xf3f}
  1201. };
  1202. EXPORT_SYMBOL(agp3_generic_sizes);