linux/arch/arm/mm/init.c
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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/export.h>
  17#include <linux/nodemask.h>
  18#include <linux/initrd.h>
  19#include <linux/of_fdt.h>
  20#include <linux/highmem.h>
  21#include <linux/gfp.h>
  22#include <linux/memblock.h>
  23#include <linux/dma-contiguous.h>
  24#include <linux/sizes.h>
  25
  26#include <asm/mach-types.h>
  27#include <asm/memblock.h>
  28#include <asm/prom.h>
  29#include <asm/sections.h>
  30#include <asm/setup.h>
  31#include <asm/tlb.h>
  32#include <asm/fixmap.h>
  33
  34#include <asm/mach/arch.h>
  35#include <asm/mach/map.h>
  36
  37#include "mm.h"
  38
  39static phys_addr_t phys_initrd_start __initdata = 0;
  40static unsigned long phys_initrd_size __initdata = 0;
  41
  42static int __init early_initrd(char *p)
  43{
  44        phys_addr_t start;
  45        unsigned long size;
  46        char *endp;
  47
  48        start = memparse(p, &endp);
  49        if (*endp == ',') {
  50                size = memparse(endp + 1, NULL);
  51
  52                phys_initrd_start = start;
  53                phys_initrd_size = size;
  54        }
  55        return 0;
  56}
  57early_param("initrd", early_initrd);
  58
  59static int __init parse_tag_initrd(const struct tag *tag)
  60{
  61        printk(KERN_WARNING "ATAG_INITRD is deprecated; "
  62                "please update your bootloader.\n");
  63        phys_initrd_start = __virt_to_phys(tag->u.initrd.start);
  64        phys_initrd_size = tag->u.initrd.size;
  65        return 0;
  66}
  67
  68__tagtable(ATAG_INITRD, parse_tag_initrd);
  69
  70static int __init parse_tag_initrd2(const struct tag *tag)
  71{
  72        phys_initrd_start = tag->u.initrd.start;
  73        phys_initrd_size = tag->u.initrd.size;
  74        return 0;
  75}
  76
  77__tagtable(ATAG_INITRD2, parse_tag_initrd2);
  78
  79#ifdef CONFIG_OF_FLATTREE
  80void __init early_init_dt_setup_initrd_arch(unsigned long start, unsigned long end)
  81{
  82        phys_initrd_start = start;
  83        phys_initrd_size = end - start;
  84}
  85#endif /* CONFIG_OF_FLATTREE */
  86
  87/*
  88 * This keeps memory configuration data used by a couple memory
  89 * initialization functions, as well as show_mem() for the skipping
  90 * of holes in the memory map.  It is populated by arm_add_memory().
  91 */
  92struct meminfo meminfo;
  93
  94void show_mem(unsigned int filter)
  95{
  96        int free = 0, total = 0, reserved = 0;
  97        int shared = 0, cached = 0, slab = 0, i;
  98        struct meminfo * mi = &meminfo;
  99
 100        printk("Mem-info:\n");
 101        show_free_areas(filter);
 102
 103        if (filter & SHOW_MEM_FILTER_PAGE_COUNT)
 104                return;
 105
 106        for_each_bank (i, mi) {
 107                struct membank *bank = &mi->bank[i];
 108                unsigned int pfn1, pfn2;
 109                struct page *page, *end;
 110
 111                pfn1 = bank_pfn_start(bank);
 112                pfn2 = bank_pfn_end(bank);
 113
 114                page = pfn_to_page(pfn1);
 115                end  = pfn_to_page(pfn2 - 1) + 1;
 116
 117                do {
 118                        total++;
 119                        if (PageReserved(page))
 120                                reserved++;
 121                        else if (PageSwapCache(page))
 122                                cached++;
 123                        else if (PageSlab(page))
 124                                slab++;
 125                        else if (!page_count(page))
 126                                free++;
 127                        else
 128                                shared += page_count(page) - 1;
 129                        page++;
 130                } while (page < end);
 131        }
 132
 133        printk("%d pages of RAM\n", total);
 134        printk("%d free pages\n", free);
 135        printk("%d reserved pages\n", reserved);
 136        printk("%d slab pages\n", slab);
 137        printk("%d pages shared\n", shared);
 138        printk("%d pages swap cached\n", cached);
 139}
 140
 141static void __init find_limits(unsigned long *min, unsigned long *max_low,
 142                               unsigned long *max_high)
 143{
 144        struct meminfo *mi = &meminfo;
 145        int i;
 146
 147        /* This assumes the meminfo array is properly sorted */
 148        *min = bank_pfn_start(&mi->bank[0]);
 149        for_each_bank (i, mi)
 150                if (mi->bank[i].highmem)
 151                                break;
 152        *max_low = bank_pfn_end(&mi->bank[i - 1]);
 153        *max_high = bank_pfn_end(&mi->bank[mi->nr_banks - 1]);
 154}
 155
 156static void __init arm_bootmem_init(unsigned long start_pfn,
 157        unsigned long end_pfn)
 158{
 159        struct memblock_region *reg;
 160        unsigned int boot_pages;
 161        phys_addr_t bitmap;
 162        pg_data_t *pgdat;
 163
 164        /*
 165         * Allocate the bootmem bitmap page.  This must be in a region
 166         * of memory which has already been mapped.
 167         */
 168        boot_pages = bootmem_bootmap_pages(end_pfn - start_pfn);
 169        bitmap = memblock_alloc_base(boot_pages << PAGE_SHIFT, L1_CACHE_BYTES,
 170                                __pfn_to_phys(end_pfn));
 171
 172        /*
 173         * Initialise the bootmem allocator, handing the
 174         * memory banks over to bootmem.
 175         */
 176        node_set_online(0);
 177        pgdat = NODE_DATA(0);
 178        init_bootmem_node(pgdat, __phys_to_pfn(bitmap), start_pfn, end_pfn);
 179
 180        /* Free the lowmem regions from memblock into bootmem. */
 181        for_each_memblock(memory, reg) {
 182                unsigned long start = memblock_region_memory_base_pfn(reg);
 183                unsigned long end = memblock_region_memory_end_pfn(reg);
 184
 185                if (end >= end_pfn)
 186                        end = end_pfn;
 187                if (start >= end)
 188                        break;
 189
 190                free_bootmem(__pfn_to_phys(start), (end - start) << PAGE_SHIFT);
 191        }
 192
 193        /* Reserve the lowmem memblock reserved regions in bootmem. */
 194        for_each_memblock(reserved, reg) {
 195                unsigned long start = memblock_region_reserved_base_pfn(reg);
 196                unsigned long end = memblock_region_reserved_end_pfn(reg);
 197
 198                if (end >= end_pfn)
 199                        end = end_pfn;
 200                if (start >= end)
 201                        break;
 202
 203                reserve_bootmem(__pfn_to_phys(start),
 204                                (end - start) << PAGE_SHIFT, BOOTMEM_DEFAULT);
 205        }
 206}
 207
 208#ifdef CONFIG_ZONE_DMA
 209
 210unsigned long arm_dma_zone_size __read_mostly;
 211EXPORT_SYMBOL(arm_dma_zone_size);
 212
 213/*
 214 * The DMA mask corresponding to the maximum bus address allocatable
 215 * using GFP_DMA.  The default here places no restriction on DMA
 216 * allocations.  This must be the smallest DMA mask in the system,
 217 * so a successful GFP_DMA allocation will always satisfy this.
 218 */
 219phys_addr_t arm_dma_limit;
 220
 221static void __init arm_adjust_dma_zone(unsigned long *size, unsigned long *hole,
 222        unsigned long dma_size)
 223{
 224        if (size[0] <= dma_size)
 225                return;
 226
 227        size[ZONE_NORMAL] = size[0] - dma_size;
 228        size[ZONE_DMA] = dma_size;
 229        hole[ZONE_NORMAL] = hole[0];
 230        hole[ZONE_DMA] = 0;
 231}
 232#endif
 233
 234void __init setup_dma_zone(struct machine_desc *mdesc)
 235{
 236#ifdef CONFIG_ZONE_DMA
 237        if (mdesc->dma_zone_size) {
 238                arm_dma_zone_size = mdesc->dma_zone_size;
 239                arm_dma_limit = PHYS_OFFSET + arm_dma_zone_size - 1;
 240        } else
 241                arm_dma_limit = 0xffffffff;
 242#endif
 243}
 244
 245static void __init arm_bootmem_free(unsigned long min, unsigned long max_low,
 246        unsigned long max_high)
 247{
 248        unsigned long zone_size[MAX_NR_ZONES], zhole_size[MAX_NR_ZONES];
 249        struct memblock_region *reg;
 250
 251        /*
 252         * initialise the zones.
 253         */
 254        memset(zone_size, 0, sizeof(zone_size));
 255
 256        /*
 257         * The memory size has already been determined.  If we need
 258         * to do anything fancy with the allocation of this memory
 259         * to the zones, now is the time to do it.
 260         */
 261        zone_size[0] = max_low - min;
 262#ifdef CONFIG_HIGHMEM
 263        zone_size[ZONE_HIGHMEM] = max_high - max_low;
 264#endif
 265
 266        /*
 267         * Calculate the size of the holes.
 268         *  holes = node_size - sum(bank_sizes)
 269         */
 270        memcpy(zhole_size, zone_size, sizeof(zhole_size));
 271        for_each_memblock(memory, reg) {
 272                unsigned long start = memblock_region_memory_base_pfn(reg);
 273                unsigned long end = memblock_region_memory_end_pfn(reg);
 274
 275                if (start < max_low) {
 276                        unsigned long low_end = min(end, max_low);
 277                        zhole_size[0] -= low_end - start;
 278                }
 279#ifdef CONFIG_HIGHMEM
 280                if (end > max_low) {
 281                        unsigned long high_start = max(start, max_low);
 282                        zhole_size[ZONE_HIGHMEM] -= end - high_start;
 283                }
 284#endif
 285        }
 286
 287#ifdef CONFIG_ZONE_DMA
 288        /*
 289         * Adjust the sizes according to any special requirements for
 290         * this machine type.
 291         */
 292        if (arm_dma_zone_size)
 293                arm_adjust_dma_zone(zone_size, zhole_size,
 294                        arm_dma_zone_size >> PAGE_SHIFT);
 295#endif
 296
 297        free_area_init_node(0, zone_size, min, zhole_size);
 298}
 299
 300#ifdef CONFIG_HAVE_ARCH_PFN_VALID
 301int pfn_valid(unsigned long pfn)
 302{
 303        return memblock_is_memory(__pfn_to_phys(pfn));
 304}
 305EXPORT_SYMBOL(pfn_valid);
 306#endif
 307
 308#ifndef CONFIG_SPARSEMEM
 309static void __init arm_memory_present(void)
 310{
 311}
 312#else
 313static void __init arm_memory_present(void)
 314{
 315        struct memblock_region *reg;
 316
 317        for_each_memblock(memory, reg)
 318                memory_present(0, memblock_region_memory_base_pfn(reg),
 319                               memblock_region_memory_end_pfn(reg));
 320}
 321#endif
 322
 323static bool arm_memblock_steal_permitted = true;
 324
 325phys_addr_t __init arm_memblock_steal(phys_addr_t size, phys_addr_t align)
 326{
 327        phys_addr_t phys;
 328
 329        BUG_ON(!arm_memblock_steal_permitted);
 330
 331        phys = memblock_alloc_base(size, align, MEMBLOCK_ALLOC_ANYWHERE);
 332        memblock_free(phys, size);
 333        memblock_remove(phys, size);
 334
 335        return phys;
 336}
 337
 338void __init arm_memblock_init(struct meminfo *mi, struct machine_desc *mdesc)
 339{
 340        int i;
 341
 342        for (i = 0; i < mi->nr_banks; i++)
 343                memblock_add(mi->bank[i].start, mi->bank[i].size);
 344
 345        /* Register the kernel text, kernel data and initrd with memblock. */
 346#ifdef CONFIG_XIP_KERNEL
 347        memblock_reserve(__pa(_sdata), _end - _sdata);
 348#else
 349        memblock_reserve(__pa(_stext), _end - _stext);
 350#endif
 351#ifdef CONFIG_BLK_DEV_INITRD
 352        if (phys_initrd_size &&
 353            !memblock_is_region_memory(phys_initrd_start, phys_initrd_size)) {
 354                pr_err("INITRD: 0x%08llx+0x%08lx is not a memory region - disabling initrd\n",
 355                       (u64)phys_initrd_start, phys_initrd_size);
 356                phys_initrd_start = phys_initrd_size = 0;
 357        }
 358        if (phys_initrd_size &&
 359            memblock_is_region_reserved(phys_initrd_start, phys_initrd_size)) {
 360                pr_err("INITRD: 0x%08llx+0x%08lx overlaps in-use memory region - disabling initrd\n",
 361                       (u64)phys_initrd_start, phys_initrd_size);
 362                phys_initrd_start = phys_initrd_size = 0;
 363        }
 364        if (phys_initrd_size) {
 365                memblock_reserve(phys_initrd_start, phys_initrd_size);
 366
 367                /* Now convert initrd to virtual addresses */
 368                initrd_start = __phys_to_virt(phys_initrd_start);
 369                initrd_end = initrd_start + phys_initrd_size;
 370        }
 371#endif
 372
 373        arm_mm_memblock_reserve();
 374        arm_dt_memblock_reserve();
 375
 376        /* reserve any platform specific memblock areas */
 377        if (mdesc->reserve)
 378                mdesc->reserve();
 379
 380        /*
 381         * reserve memory for DMA contigouos allocations,
 382         * must come from DMA area inside low memory
 383         */
 384        dma_contiguous_reserve(min(arm_dma_limit, arm_lowmem_limit));
 385
 386        arm_memblock_steal_permitted = false;
 387        memblock_allow_resize();
 388        memblock_dump_all();
 389}
 390
 391void __init bootmem_init(void)
 392{
 393        unsigned long min, max_low, max_high;
 394
 395        max_low = max_high = 0;
 396
 397        find_limits(&min, &max_low, &max_high);
 398
 399        arm_bootmem_init(min, max_low);
 400
 401        /*
 402         * Sparsemem tries to allocate bootmem in memory_present(),
 403         * so must be done after the fixed reservations
 404         */
 405        arm_memory_present();
 406
 407        /*
 408         * sparse_init() needs the bootmem allocator up and running.
 409         */
 410        sparse_init();
 411
 412        /*
 413         * Now free the memory - free_area_init_node needs
 414         * the sparse mem_map arrays initialized by sparse_init()
 415         * for memmap_init_zone(), otherwise all PFNs are invalid.
 416         */
 417        arm_bootmem_free(min, max_low, max_high);
 418
 419        /*
 420         * This doesn't seem to be used by the Linux memory manager any
 421         * more, but is used by ll_rw_block.  If we can get rid of it, we
 422         * also get rid of some of the stuff above as well.
 423         *
 424         * Note: max_low_pfn and max_pfn reflect the number of _pages_ in
 425         * the system, not the maximum PFN.
 426         */
 427        max_low_pfn = max_low - PHYS_PFN_OFFSET;
 428        max_pfn = max_high - PHYS_PFN_OFFSET;
 429}
 430
 431/*
 432 * Poison init memory with an undefined instruction (ARM) or a branch to an
 433 * undefined instruction (Thumb).
 434 */
 435static inline void poison_init_mem(void *s, size_t count)
 436{
 437        u32 *p = (u32 *)s;
 438        for (; count != 0; count -= 4)
 439                *p++ = 0xe7fddef0;
 440}
 441
 442static inline void
 443free_memmap(unsigned long start_pfn, unsigned long end_pfn)
 444{
 445        struct page *start_pg, *end_pg;
 446        phys_addr_t pg, pgend;
 447
 448        /*
 449         * Convert start_pfn/end_pfn to a struct page pointer.
 450         */
 451        start_pg = pfn_to_page(start_pfn - 1) + 1;
 452        end_pg = pfn_to_page(end_pfn - 1) + 1;
 453
 454        /*
 455         * Convert to physical addresses, and
 456         * round start upwards and end downwards.
 457         */
 458        pg = PAGE_ALIGN(__pa(start_pg));
 459        pgend = __pa(end_pg) & PAGE_MASK;
 460
 461        /*
 462         * If there are free pages between these,
 463         * free the section of the memmap array.
 464         */
 465        if (pg < pgend)
 466                free_bootmem(pg, pgend - pg);
 467}
 468
 469/*
 470 * The mem_map array can get very big.  Free the unused area of the memory map.
 471 */
 472static void __init free_unused_memmap(struct meminfo *mi)
 473{
 474        unsigned long bank_start, prev_bank_end = 0;
 475        unsigned int i;
 476
 477        /*
 478         * This relies on each bank being in address order.
 479         * The banks are sorted previously in bootmem_init().
 480         */
 481        for_each_bank(i, mi) {
 482                struct membank *bank = &mi->bank[i];
 483
 484                bank_start = bank_pfn_start(bank);
 485
 486#ifdef CONFIG_SPARSEMEM
 487                /*
 488                 * Take care not to free memmap entries that don't exist
 489                 * due to SPARSEMEM sections which aren't present.
 490                 */
 491                bank_start = min(bank_start,
 492                                 ALIGN(prev_bank_end, PAGES_PER_SECTION));
 493#else
 494                /*
 495                 * Align down here since the VM subsystem insists that the
 496                 * memmap entries are valid from the bank start aligned to
 497                 * MAX_ORDER_NR_PAGES.
 498                 */
 499                bank_start = round_down(bank_start, MAX_ORDER_NR_PAGES);
 500#endif
 501                /*
 502                 * If we had a previous bank, and there is a space
 503                 * between the current bank and the previous, free it.
 504                 */
 505                if (prev_bank_end && prev_bank_end < bank_start)
 506                        free_memmap(prev_bank_end, bank_start);
 507
 508                /*
 509                 * Align up here since the VM subsystem insists that the
 510                 * memmap entries are valid from the bank end aligned to
 511                 * MAX_ORDER_NR_PAGES.
 512                 */
 513                prev_bank_end = ALIGN(bank_pfn_end(bank), MAX_ORDER_NR_PAGES);
 514        }
 515
 516#ifdef CONFIG_SPARSEMEM
 517        if (!IS_ALIGNED(prev_bank_end, PAGES_PER_SECTION))
 518                free_memmap(prev_bank_end,
 519                            ALIGN(prev_bank_end, PAGES_PER_SECTION));
 520#endif
 521}
 522
 523#ifdef CONFIG_HIGHMEM
 524static inline void free_area_high(unsigned long pfn, unsigned long end)
 525{
 526        for (; pfn < end; pfn++)
 527                free_highmem_page(pfn_to_page(pfn));
 528}
 529#endif
 530
 531static void __init free_highpages(void)
 532{
 533#ifdef CONFIG_HIGHMEM
 534        unsigned long max_low = max_low_pfn + PHYS_PFN_OFFSET;
 535        struct memblock_region *mem, *res;
 536
 537        /* set highmem page free */
 538        for_each_memblock(memory, mem) {
 539                unsigned long start = memblock_region_memory_base_pfn(mem);
 540                unsigned long end = memblock_region_memory_end_pfn(mem);
 541
 542                /* Ignore complete lowmem entries */
 543                if (end <= max_low)
 544                        continue;
 545
 546                /* Truncate partial highmem entries */
 547                if (start < max_low)
 548                        start = max_low;
 549
 550                /* Find and exclude any reserved regions */
 551                for_each_memblock(reserved, res) {
 552                        unsigned long res_start, res_end;
 553
 554                        res_start = memblock_region_reserved_base_pfn(res);
 555                        res_end = memblock_region_reserved_end_pfn(res);
 556
 557                        if (res_end < start)
 558                                continue;
 559                        if (res_start < start)
 560                                res_start = start;
 561                        if (res_start > end)
 562                                res_start = end;
 563                        if (res_end > end)
 564                                res_end = end;
 565                        if (res_start != start)
 566                                free_area_high(start, res_start);
 567                        start = res_end;
 568                        if (start == end)
 569                                break;
 570                }
 571
 572                /* And now free anything which remains */
 573                if (start < end)
 574                        free_area_high(start, end);
 575        }
 576#endif
 577}
 578
 579/*
 580 * mem_init() marks the free areas in the mem_map and tells us how much
 581 * memory is free.  This is done after various parts of the system have
 582 * claimed their memory after the kernel image.
 583 */
 584void __init mem_init(void)
 585{
 586#ifdef CONFIG_HAVE_TCM
 587        /* These pointers are filled in on TCM detection */
 588        extern u32 dtcm_end;
 589        extern u32 itcm_end;
 590#endif
 591
 592        max_mapnr   = pfn_to_page(max_pfn + PHYS_PFN_OFFSET) - mem_map;
 593
 594        /* this will put all unused low memory onto the freelists */
 595        free_unused_memmap(&meminfo);
 596        free_all_bootmem();
 597
 598#ifdef CONFIG_SA1111
 599        /* now that our DMA memory is actually so designated, we can free it */
 600        free_reserved_area(__va(PHYS_OFFSET), swapper_pg_dir, -1, NULL);
 601#endif
 602
 603        free_highpages();
 604
 605        mem_init_print_info(NULL);
 606
 607#define MLK(b, t) b, t, ((t) - (b)) >> 10
 608#define MLM(b, t) b, t, ((t) - (b)) >> 20
 609#define MLK_ROUNDUP(b, t) b, t, DIV_ROUND_UP(((t) - (b)), SZ_1K)
 610
 611        printk(KERN_NOTICE "Virtual kernel memory layout:\n"
 612                        "    vector  : 0x%08lx - 0x%08lx   (%4ld kB)\n"
 613#ifdef CONFIG_HAVE_TCM
 614                        "    DTCM    : 0x%08lx - 0x%08lx   (%4ld kB)\n"
 615                        "    ITCM    : 0x%08lx - 0x%08lx   (%4ld kB)\n"
 616#endif
 617                        "    fixmap  : 0x%08lx - 0x%08lx   (%4ld kB)\n"
 618                        "    vmalloc : 0x%08lx - 0x%08lx   (%4ld MB)\n"
 619                        "    lowmem  : 0x%08lx - 0x%08lx   (%4ld MB)\n"
 620#ifdef CONFIG_HIGHMEM
 621                        "    pkmap   : 0x%08lx - 0x%08lx   (%4ld MB)\n"
 622#endif
 623#ifdef CONFIG_MODULES
 624                        "    modules : 0x%08lx - 0x%08lx   (%4ld MB)\n"
 625#endif
 626                        "      .text : 0x%p" " - 0x%p" "   (%4d kB)\n"
 627                        "      .init : 0x%p" " - 0x%p" "   (%4d kB)\n"
 628                        "      .data : 0x%p" " - 0x%p" "   (%4d kB)\n"
 629                        "       .bss : 0x%p" " - 0x%p" "   (%4d kB)\n",
 630
 631                        MLK(UL(CONFIG_VECTORS_BASE), UL(CONFIG_VECTORS_BASE) +
 632                                (PAGE_SIZE)),
 633#ifdef CONFIG_HAVE_TCM
 634                        MLK(DTCM_OFFSET, (unsigned long) dtcm_end),
 635                        MLK(ITCM_OFFSET, (unsigned long) itcm_end),
 636#endif
 637                        MLK(FIXADDR_START, FIXADDR_TOP),
 638                        MLM(VMALLOC_START, VMALLOC_END),
 639                        MLM(PAGE_OFFSET, (unsigned long)high_memory),
 640#ifdef CONFIG_HIGHMEM
 641                        MLM(PKMAP_BASE, (PKMAP_BASE) + (LAST_PKMAP) *
 642                                (PAGE_SIZE)),
 643#endif
 644#ifdef CONFIG_MODULES
 645                        MLM(MODULES_VADDR, MODULES_END),
 646#endif
 647
 648                        MLK_ROUNDUP(_text, _etext),
 649                        MLK_ROUNDUP(__init_begin, __init_end),
 650                        MLK_ROUNDUP(_sdata, _edata),
 651                        MLK_ROUNDUP(__bss_start, __bss_stop));
 652
 653#undef MLK
 654#undef MLM
 655#undef MLK_ROUNDUP
 656
 657        /*
 658         * Check boundaries twice: Some fundamental inconsistencies can
 659         * be detected at build time already.
 660         */
 661#ifdef CONFIG_MMU
 662        BUILD_BUG_ON(TASK_SIZE                          > MODULES_VADDR);
 663        BUG_ON(TASK_SIZE                                > MODULES_VADDR);
 664#endif
 665
 666#ifdef CONFIG_HIGHMEM
 667        BUILD_BUG_ON(PKMAP_BASE + LAST_PKMAP * PAGE_SIZE > PAGE_OFFSET);
 668        BUG_ON(PKMAP_BASE + LAST_PKMAP * PAGE_SIZE      > PAGE_OFFSET);
 669#endif
 670
 671        if (PAGE_SIZE >= 16384 && get_num_physpages() <= 128) {
 672                extern int sysctl_overcommit_memory;
 673                /*
 674                 * On a machine this small we won't get
 675                 * anywhere without overcommit, so turn
 676                 * it on by default.
 677                 */
 678                sysctl_overcommit_memory = OVERCOMMIT_ALWAYS;
 679        }
 680}
 681
 682void free_initmem(void)
 683{
 684#ifdef CONFIG_HAVE_TCM
 685        extern char __tcm_start, __tcm_end;
 686
 687        poison_init_mem(&__tcm_start, &__tcm_end - &__tcm_start);
 688        free_reserved_area(&__tcm_start, &__tcm_end, -1, "TCM link");
 689#endif
 690
 691        poison_init_mem(__init_begin, __init_end - __init_begin);
 692        if (!machine_is_integrator() && !machine_is_cintegrator())
 693                free_initmem_default(-1);
 694}
 695
 696#ifdef CONFIG_BLK_DEV_INITRD
 697
 698static int keep_initrd;
 699
 700void free_initrd_mem(unsigned long start, unsigned long end)
 701{
 702        if (!keep_initrd) {
 703                poison_init_mem((void *)start, PAGE_ALIGN(end) - start);
 704                free_reserved_area((void *)start, (void *)end, -1, "initrd");
 705        }
 706}
 707
 708static int __init keepinitrd_setup(char *__unused)
 709{
 710        keep_initrd = 1;
 711        return 1;
 712}
 713
 714__setup("keepinitrd", keepinitrd_setup);
 715#endif
 716