init.c 17 KB

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  1. /*
  2. * linux/arch/arm/mm/init.c
  3. *
  4. * Copyright (C) 1995-2005 Russell King
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License version 2 as
  8. * published by the Free Software Foundation.
  9. */
  10. #include <linux/kernel.h>
  11. #include <linux/errno.h>
  12. #include <linux/swap.h>
  13. #include <linux/init.h>
  14. #include <linux/bootmem.h>
  15. #include <linux/mman.h>
  16. #include <linux/nodemask.h>
  17. #include <linux/initrd.h>
  18. #include <linux/highmem.h>
  19. #include <linux/gfp.h>
  20. #include <linux/memblock.h>
  21. #include <linux/sort.h>
  22. #include <asm/mach-types.h>
  23. #include <asm/sections.h>
  24. #include <asm/setup.h>
  25. #include <asm/sizes.h>
  26. #include <asm/tlb.h>
  27. #include <asm/fixmap.h>
  28. #include <asm/mach/arch.h>
  29. #include <asm/mach/map.h>
  30. #include "mm.h"
  31. static unsigned long phys_initrd_start __initdata = 0;
  32. static unsigned long phys_initrd_size __initdata = 0;
  33. static int __init early_initrd(char *p)
  34. {
  35. unsigned long start, size;
  36. char *endp;
  37. start = memparse(p, &endp);
  38. if (*endp == ',') {
  39. size = memparse(endp + 1, NULL);
  40. phys_initrd_start = start;
  41. phys_initrd_size = size;
  42. }
  43. return 0;
  44. }
  45. early_param("initrd", early_initrd);
  46. static int __init parse_tag_initrd(const struct tag *tag)
  47. {
  48. printk(KERN_WARNING "ATAG_INITRD is deprecated; "
  49. "please update your bootloader.\n");
  50. phys_initrd_start = __virt_to_phys(tag->u.initrd.start);
  51. phys_initrd_size = tag->u.initrd.size;
  52. return 0;
  53. }
  54. __tagtable(ATAG_INITRD, parse_tag_initrd);
  55. static int __init parse_tag_initrd2(const struct tag *tag)
  56. {
  57. phys_initrd_start = tag->u.initrd.start;
  58. phys_initrd_size = tag->u.initrd.size;
  59. return 0;
  60. }
  61. __tagtable(ATAG_INITRD2, parse_tag_initrd2);
  62. /*
  63. * This keeps memory configuration data used by a couple memory
  64. * initialization functions, as well as show_mem() for the skipping
  65. * of holes in the memory map. It is populated by arm_add_memory().
  66. */
  67. struct meminfo meminfo;
  68. void show_mem(unsigned int filter)
  69. {
  70. int free = 0, total = 0, reserved = 0;
  71. int shared = 0, cached = 0, slab = 0, i;
  72. struct meminfo * mi = &meminfo;
  73. printk("Mem-info:\n");
  74. show_free_areas();
  75. for_each_bank (i, mi) {
  76. struct membank *bank = &mi->bank[i];
  77. unsigned int pfn1, pfn2;
  78. struct page *page, *end;
  79. pfn1 = bank_pfn_start(bank);
  80. pfn2 = bank_pfn_end(bank);
  81. page = pfn_to_page(pfn1);
  82. end = pfn_to_page(pfn2 - 1) + 1;
  83. do {
  84. total++;
  85. if (PageReserved(page))
  86. reserved++;
  87. else if (PageSwapCache(page))
  88. cached++;
  89. else if (PageSlab(page))
  90. slab++;
  91. else if (!page_count(page))
  92. free++;
  93. else
  94. shared += page_count(page) - 1;
  95. page++;
  96. } while (page < end);
  97. }
  98. printk("%d pages of RAM\n", total);
  99. printk("%d free pages\n", free);
  100. printk("%d reserved pages\n", reserved);
  101. printk("%d slab pages\n", slab);
  102. printk("%d pages shared\n", shared);
  103. printk("%d pages swap cached\n", cached);
  104. }
  105. static void __init find_limits(unsigned long *min, unsigned long *max_low,
  106. unsigned long *max_high)
  107. {
  108. struct meminfo *mi = &meminfo;
  109. int i;
  110. *min = -1UL;
  111. *max_low = *max_high = 0;
  112. for_each_bank (i, mi) {
  113. struct membank *bank = &mi->bank[i];
  114. unsigned long start, end;
  115. start = bank_pfn_start(bank);
  116. end = bank_pfn_end(bank);
  117. if (*min > start)
  118. *min = start;
  119. if (*max_high < end)
  120. *max_high = end;
  121. if (bank->highmem)
  122. continue;
  123. if (*max_low < end)
  124. *max_low = end;
  125. }
  126. }
  127. static void __init arm_bootmem_init(unsigned long start_pfn,
  128. unsigned long end_pfn)
  129. {
  130. struct memblock_region *reg;
  131. unsigned int boot_pages;
  132. phys_addr_t bitmap;
  133. pg_data_t *pgdat;
  134. /*
  135. * Allocate the bootmem bitmap page. This must be in a region
  136. * of memory which has already been mapped.
  137. */
  138. boot_pages = bootmem_bootmap_pages(end_pfn - start_pfn);
  139. bitmap = memblock_alloc_base(boot_pages << PAGE_SHIFT, L1_CACHE_BYTES,
  140. __pfn_to_phys(end_pfn));
  141. /*
  142. * Initialise the bootmem allocator, handing the
  143. * memory banks over to bootmem.
  144. */
  145. node_set_online(0);
  146. pgdat = NODE_DATA(0);
  147. init_bootmem_node(pgdat, __phys_to_pfn(bitmap), start_pfn, end_pfn);
  148. /* Free the lowmem regions from memblock into bootmem. */
  149. for_each_memblock(memory, reg) {
  150. unsigned long start = memblock_region_memory_base_pfn(reg);
  151. unsigned long end = memblock_region_memory_end_pfn(reg);
  152. if (end >= end_pfn)
  153. end = end_pfn;
  154. if (start >= end)
  155. break;
  156. free_bootmem(__pfn_to_phys(start), (end - start) << PAGE_SHIFT);
  157. }
  158. /* Reserve the lowmem memblock reserved regions in bootmem. */
  159. for_each_memblock(reserved, reg) {
  160. unsigned long start = memblock_region_reserved_base_pfn(reg);
  161. unsigned long end = memblock_region_reserved_end_pfn(reg);
  162. if (end >= end_pfn)
  163. end = end_pfn;
  164. if (start >= end)
  165. break;
  166. reserve_bootmem(__pfn_to_phys(start),
  167. (end - start) << PAGE_SHIFT, BOOTMEM_DEFAULT);
  168. }
  169. }
  170. #ifdef CONFIG_ZONE_DMA
  171. static void __init arm_adjust_dma_zone(unsigned long *size, unsigned long *hole,
  172. unsigned long dma_size)
  173. {
  174. if (size[0] <= dma_size)
  175. return;
  176. size[ZONE_NORMAL] = size[0] - dma_size;
  177. size[ZONE_DMA] = dma_size;
  178. hole[ZONE_NORMAL] = hole[0];
  179. hole[ZONE_DMA] = 0;
  180. }
  181. #endif
  182. static void __init arm_bootmem_free(unsigned long min, unsigned long max_low,
  183. unsigned long max_high)
  184. {
  185. unsigned long zone_size[MAX_NR_ZONES], zhole_size[MAX_NR_ZONES];
  186. struct memblock_region *reg;
  187. /*
  188. * initialise the zones.
  189. */
  190. memset(zone_size, 0, sizeof(zone_size));
  191. /*
  192. * The memory size has already been determined. If we need
  193. * to do anything fancy with the allocation of this memory
  194. * to the zones, now is the time to do it.
  195. */
  196. zone_size[0] = max_low - min;
  197. #ifdef CONFIG_HIGHMEM
  198. zone_size[ZONE_HIGHMEM] = max_high - max_low;
  199. #endif
  200. /*
  201. * Calculate the size of the holes.
  202. * holes = node_size - sum(bank_sizes)
  203. */
  204. memcpy(zhole_size, zone_size, sizeof(zhole_size));
  205. for_each_memblock(memory, reg) {
  206. unsigned long start = memblock_region_memory_base_pfn(reg);
  207. unsigned long end = memblock_region_memory_end_pfn(reg);
  208. if (start < max_low) {
  209. unsigned long low_end = min(end, max_low);
  210. zhole_size[0] -= low_end - start;
  211. }
  212. #ifdef CONFIG_HIGHMEM
  213. if (end > max_low) {
  214. unsigned long high_start = max(start, max_low);
  215. zhole_size[ZONE_HIGHMEM] -= end - high_start;
  216. }
  217. #endif
  218. }
  219. #ifdef ARM_DMA_ZONE_SIZE
  220. #ifndef CONFIG_ZONE_DMA
  221. #error ARM_DMA_ZONE_SIZE set but no DMA zone to limit allocations
  222. #endif
  223. /*
  224. * Adjust the sizes according to any special requirements for
  225. * this machine type.
  226. */
  227. arm_adjust_dma_zone(zone_size, zhole_size,
  228. ARM_DMA_ZONE_SIZE >> PAGE_SHIFT);
  229. #endif
  230. free_area_init_node(0, zone_size, min, zhole_size);
  231. }
  232. #ifndef CONFIG_SPARSEMEM
  233. int pfn_valid(unsigned long pfn)
  234. {
  235. return memblock_is_memory(pfn << PAGE_SHIFT);
  236. }
  237. EXPORT_SYMBOL(pfn_valid);
  238. static void arm_memory_present(void)
  239. {
  240. }
  241. #else
  242. static void arm_memory_present(void)
  243. {
  244. struct memblock_region *reg;
  245. for_each_memblock(memory, reg)
  246. memory_present(0, memblock_region_memory_base_pfn(reg),
  247. memblock_region_memory_end_pfn(reg));
  248. }
  249. #endif
  250. static int __init meminfo_cmp(const void *_a, const void *_b)
  251. {
  252. const struct membank *a = _a, *b = _b;
  253. long cmp = bank_pfn_start(a) - bank_pfn_start(b);
  254. return cmp < 0 ? -1 : cmp > 0 ? 1 : 0;
  255. }
  256. void __init arm_memblock_init(struct meminfo *mi, struct machine_desc *mdesc)
  257. {
  258. int i;
  259. sort(&meminfo.bank, meminfo.nr_banks, sizeof(meminfo.bank[0]), meminfo_cmp, NULL);
  260. memblock_init();
  261. for (i = 0; i < mi->nr_banks; i++)
  262. memblock_add(mi->bank[i].start, mi->bank[i].size);
  263. /* Register the kernel text, kernel data and initrd with memblock. */
  264. #ifdef CONFIG_XIP_KERNEL
  265. memblock_reserve(__pa(_sdata), _end - _sdata);
  266. #else
  267. memblock_reserve(__pa(_stext), _end - _stext);
  268. #endif
  269. #ifdef CONFIG_BLK_DEV_INITRD
  270. if (phys_initrd_size &&
  271. memblock_is_region_reserved(phys_initrd_start, phys_initrd_size)) {
  272. pr_err("INITRD: 0x%08lx+0x%08lx overlaps in-use memory region - disabling initrd\n",
  273. phys_initrd_start, phys_initrd_size);
  274. phys_initrd_start = phys_initrd_size = 0;
  275. }
  276. if (phys_initrd_size) {
  277. memblock_reserve(phys_initrd_start, phys_initrd_size);
  278. /* Now convert initrd to virtual addresses */
  279. initrd_start = __phys_to_virt(phys_initrd_start);
  280. initrd_end = initrd_start + phys_initrd_size;
  281. }
  282. #endif
  283. arm_mm_memblock_reserve();
  284. /* reserve any platform specific memblock areas */
  285. if (mdesc->reserve)
  286. mdesc->reserve();
  287. memblock_analyze();
  288. memblock_dump_all();
  289. }
  290. void __init bootmem_init(void)
  291. {
  292. unsigned long min, max_low, max_high;
  293. max_low = max_high = 0;
  294. find_limits(&min, &max_low, &max_high);
  295. arm_bootmem_init(min, max_low);
  296. /*
  297. * Sparsemem tries to allocate bootmem in memory_present(),
  298. * so must be done after the fixed reservations
  299. */
  300. arm_memory_present();
  301. /*
  302. * sparse_init() needs the bootmem allocator up and running.
  303. */
  304. sparse_init();
  305. /*
  306. * Now free the memory - free_area_init_node needs
  307. * the sparse mem_map arrays initialized by sparse_init()
  308. * for memmap_init_zone(), otherwise all PFNs are invalid.
  309. */
  310. arm_bootmem_free(min, max_low, max_high);
  311. high_memory = __va(((phys_addr_t)max_low << PAGE_SHIFT) - 1) + 1;
  312. /*
  313. * This doesn't seem to be used by the Linux memory manager any
  314. * more, but is used by ll_rw_block. If we can get rid of it, we
  315. * also get rid of some of the stuff above as well.
  316. *
  317. * Note: max_low_pfn and max_pfn reflect the number of _pages_ in
  318. * the system, not the maximum PFN.
  319. */
  320. max_low_pfn = max_low - PHYS_PFN_OFFSET;
  321. max_pfn = max_high - PHYS_PFN_OFFSET;
  322. }
  323. static inline int free_area(unsigned long pfn, unsigned long end, char *s)
  324. {
  325. unsigned int pages = 0, size = (end - pfn) << (PAGE_SHIFT - 10);
  326. for (; pfn < end; pfn++) {
  327. struct page *page = pfn_to_page(pfn);
  328. ClearPageReserved(page);
  329. init_page_count(page);
  330. __free_page(page);
  331. pages++;
  332. }
  333. if (size && s)
  334. printk(KERN_INFO "Freeing %s memory: %dK\n", s, size);
  335. return pages;
  336. }
  337. static inline void
  338. free_memmap(unsigned long start_pfn, unsigned long end_pfn)
  339. {
  340. struct page *start_pg, *end_pg;
  341. unsigned long pg, pgend;
  342. /*
  343. * Convert start_pfn/end_pfn to a struct page pointer.
  344. */
  345. start_pg = pfn_to_page(start_pfn - 1) + 1;
  346. end_pg = pfn_to_page(end_pfn);
  347. /*
  348. * Convert to physical addresses, and
  349. * round start upwards and end downwards.
  350. */
  351. pg = (unsigned long)PAGE_ALIGN(__pa(start_pg));
  352. pgend = (unsigned long)__pa(end_pg) & PAGE_MASK;
  353. /*
  354. * If there are free pages between these,
  355. * free the section of the memmap array.
  356. */
  357. if (pg < pgend)
  358. free_bootmem(pg, pgend - pg);
  359. }
  360. /*
  361. * The mem_map array can get very big. Free the unused area of the memory map.
  362. */
  363. static void __init free_unused_memmap(struct meminfo *mi)
  364. {
  365. unsigned long bank_start, prev_bank_end = 0;
  366. unsigned int i;
  367. /*
  368. * This relies on each bank being in address order.
  369. * The banks are sorted previously in bootmem_init().
  370. */
  371. for_each_bank(i, mi) {
  372. struct membank *bank = &mi->bank[i];
  373. bank_start = bank_pfn_start(bank);
  374. /*
  375. * If we had a previous bank, and there is a space
  376. * between the current bank and the previous, free it.
  377. */
  378. if (prev_bank_end && prev_bank_end < bank_start)
  379. free_memmap(prev_bank_end, bank_start);
  380. /*
  381. * Align up here since the VM subsystem insists that the
  382. * memmap entries are valid from the bank end aligned to
  383. * MAX_ORDER_NR_PAGES.
  384. */
  385. prev_bank_end = ALIGN(bank_pfn_end(bank), MAX_ORDER_NR_PAGES);
  386. }
  387. }
  388. static void __init free_highpages(void)
  389. {
  390. #ifdef CONFIG_HIGHMEM
  391. unsigned long max_low = max_low_pfn + PHYS_PFN_OFFSET;
  392. struct memblock_region *mem, *res;
  393. /* set highmem page free */
  394. for_each_memblock(memory, mem) {
  395. unsigned long start = memblock_region_memory_base_pfn(mem);
  396. unsigned long end = memblock_region_memory_end_pfn(mem);
  397. /* Ignore complete lowmem entries */
  398. if (end <= max_low)
  399. continue;
  400. /* Truncate partial highmem entries */
  401. if (start < max_low)
  402. start = max_low;
  403. /* Find and exclude any reserved regions */
  404. for_each_memblock(reserved, res) {
  405. unsigned long res_start, res_end;
  406. res_start = memblock_region_reserved_base_pfn(res);
  407. res_end = memblock_region_reserved_end_pfn(res);
  408. if (res_end < start)
  409. continue;
  410. if (res_start < start)
  411. res_start = start;
  412. if (res_start > end)
  413. res_start = end;
  414. if (res_end > end)
  415. res_end = end;
  416. if (res_start != start)
  417. totalhigh_pages += free_area(start, res_start,
  418. NULL);
  419. start = res_end;
  420. if (start == end)
  421. break;
  422. }
  423. /* And now free anything which remains */
  424. if (start < end)
  425. totalhigh_pages += free_area(start, end, NULL);
  426. }
  427. totalram_pages += totalhigh_pages;
  428. #endif
  429. }
  430. /*
  431. * mem_init() marks the free areas in the mem_map and tells us how much
  432. * memory is free. This is done after various parts of the system have
  433. * claimed their memory after the kernel image.
  434. */
  435. void __init mem_init(void)
  436. {
  437. unsigned long reserved_pages, free_pages;
  438. struct memblock_region *reg;
  439. int i;
  440. #ifdef CONFIG_HAVE_TCM
  441. /* These pointers are filled in on TCM detection */
  442. extern u32 dtcm_end;
  443. extern u32 itcm_end;
  444. #endif
  445. max_mapnr = pfn_to_page(max_pfn + PHYS_PFN_OFFSET) - mem_map;
  446. /* this will put all unused low memory onto the freelists */
  447. free_unused_memmap(&meminfo);
  448. totalram_pages += free_all_bootmem();
  449. #ifdef CONFIG_SA1111
  450. /* now that our DMA memory is actually so designated, we can free it */
  451. totalram_pages += free_area(PHYS_PFN_OFFSET,
  452. __phys_to_pfn(__pa(swapper_pg_dir)), NULL);
  453. #endif
  454. free_highpages();
  455. reserved_pages = free_pages = 0;
  456. for_each_bank(i, &meminfo) {
  457. struct membank *bank = &meminfo.bank[i];
  458. unsigned int pfn1, pfn2;
  459. struct page *page, *end;
  460. pfn1 = bank_pfn_start(bank);
  461. pfn2 = bank_pfn_end(bank);
  462. page = pfn_to_page(pfn1);
  463. end = pfn_to_page(pfn2 - 1) + 1;
  464. do {
  465. if (PageReserved(page))
  466. reserved_pages++;
  467. else if (!page_count(page))
  468. free_pages++;
  469. page++;
  470. } while (page < end);
  471. }
  472. /*
  473. * Since our memory may not be contiguous, calculate the
  474. * real number of pages we have in this system
  475. */
  476. printk(KERN_INFO "Memory:");
  477. num_physpages = 0;
  478. for_each_memblock(memory, reg) {
  479. unsigned long pages = memblock_region_memory_end_pfn(reg) -
  480. memblock_region_memory_base_pfn(reg);
  481. num_physpages += pages;
  482. printk(" %ldMB", pages >> (20 - PAGE_SHIFT));
  483. }
  484. printk(" = %luMB total\n", num_physpages >> (20 - PAGE_SHIFT));
  485. printk(KERN_NOTICE "Memory: %luk/%luk available, %luk reserved, %luK highmem\n",
  486. nr_free_pages() << (PAGE_SHIFT-10),
  487. free_pages << (PAGE_SHIFT-10),
  488. reserved_pages << (PAGE_SHIFT-10),
  489. totalhigh_pages << (PAGE_SHIFT-10));
  490. #define MLK(b, t) b, t, ((t) - (b)) >> 10
  491. #define MLM(b, t) b, t, ((t) - (b)) >> 20
  492. #define MLK_ROUNDUP(b, t) b, t, DIV_ROUND_UP(((t) - (b)), SZ_1K)
  493. printk(KERN_NOTICE "Virtual kernel memory layout:\n"
  494. " vector : 0x%08lx - 0x%08lx (%4ld kB)\n"
  495. #ifdef CONFIG_HAVE_TCM
  496. " DTCM : 0x%08lx - 0x%08lx (%4ld kB)\n"
  497. " ITCM : 0x%08lx - 0x%08lx (%4ld kB)\n"
  498. #endif
  499. " fixmap : 0x%08lx - 0x%08lx (%4ld kB)\n"
  500. #ifdef CONFIG_MMU
  501. " DMA : 0x%08lx - 0x%08lx (%4ld MB)\n"
  502. #endif
  503. " vmalloc : 0x%08lx - 0x%08lx (%4ld MB)\n"
  504. " lowmem : 0x%08lx - 0x%08lx (%4ld MB)\n"
  505. #ifdef CONFIG_HIGHMEM
  506. " pkmap : 0x%08lx - 0x%08lx (%4ld MB)\n"
  507. #endif
  508. " modules : 0x%08lx - 0x%08lx (%4ld MB)\n"
  509. " .init : 0x%p" " - 0x%p" " (%4d kB)\n"
  510. " .text : 0x%p" " - 0x%p" " (%4d kB)\n"
  511. " .data : 0x%p" " - 0x%p" " (%4d kB)\n",
  512. MLK(UL(CONFIG_VECTORS_BASE), UL(CONFIG_VECTORS_BASE) +
  513. (PAGE_SIZE)),
  514. #ifdef CONFIG_HAVE_TCM
  515. MLK(DTCM_OFFSET, (unsigned long) dtcm_end),
  516. MLK(ITCM_OFFSET, (unsigned long) itcm_end),
  517. #endif
  518. MLK(FIXADDR_START, FIXADDR_TOP),
  519. #ifdef CONFIG_MMU
  520. MLM(CONSISTENT_BASE, CONSISTENT_END),
  521. #endif
  522. MLM(VMALLOC_START, VMALLOC_END),
  523. MLM(PAGE_OFFSET, (unsigned long)high_memory),
  524. #ifdef CONFIG_HIGHMEM
  525. MLM(PKMAP_BASE, (PKMAP_BASE) + (LAST_PKMAP) *
  526. (PAGE_SIZE)),
  527. #endif
  528. MLM(MODULES_VADDR, MODULES_END),
  529. MLK_ROUNDUP(__init_begin, __init_end),
  530. MLK_ROUNDUP(_text, _etext),
  531. MLK_ROUNDUP(_sdata, _edata));
  532. #undef MLK
  533. #undef MLM
  534. #undef MLK_ROUNDUP
  535. /*
  536. * Check boundaries twice: Some fundamental inconsistencies can
  537. * be detected at build time already.
  538. */
  539. #ifdef CONFIG_MMU
  540. BUILD_BUG_ON(VMALLOC_END > CONSISTENT_BASE);
  541. BUG_ON(VMALLOC_END > CONSISTENT_BASE);
  542. BUILD_BUG_ON(TASK_SIZE > MODULES_VADDR);
  543. BUG_ON(TASK_SIZE > MODULES_VADDR);
  544. #endif
  545. #ifdef CONFIG_HIGHMEM
  546. BUILD_BUG_ON(PKMAP_BASE + LAST_PKMAP * PAGE_SIZE > PAGE_OFFSET);
  547. BUG_ON(PKMAP_BASE + LAST_PKMAP * PAGE_SIZE > PAGE_OFFSET);
  548. #endif
  549. if (PAGE_SIZE >= 16384 && num_physpages <= 128) {
  550. extern int sysctl_overcommit_memory;
  551. /*
  552. * On a machine this small we won't get
  553. * anywhere without overcommit, so turn
  554. * it on by default.
  555. */
  556. sysctl_overcommit_memory = OVERCOMMIT_ALWAYS;
  557. }
  558. }
  559. void free_initmem(void)
  560. {
  561. #ifdef CONFIG_HAVE_TCM
  562. extern char __tcm_start, __tcm_end;
  563. totalram_pages += free_area(__phys_to_pfn(__pa(&__tcm_start)),
  564. __phys_to_pfn(__pa(&__tcm_end)),
  565. "TCM link");
  566. #endif
  567. if (!machine_is_integrator() && !machine_is_cintegrator())
  568. totalram_pages += free_area(__phys_to_pfn(__pa(__init_begin)),
  569. __phys_to_pfn(__pa(__init_end)),
  570. "init");
  571. }
  572. #ifdef CONFIG_BLK_DEV_INITRD
  573. static int keep_initrd;
  574. void free_initrd_mem(unsigned long start, unsigned long end)
  575. {
  576. if (!keep_initrd)
  577. totalram_pages += free_area(__phys_to_pfn(__pa(start)),
  578. __phys_to_pfn(__pa(end)),
  579. "initrd");
  580. }
  581. static int __init keepinitrd_setup(char *__unused)
  582. {
  583. keep_initrd = 1;
  584. return 1;
  585. }
  586. __setup("keepinitrd", keepinitrd_setup);
  587. #endif