relocator.c 42.4 KB
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/*
 *  GRUB  --  GRand Unified Bootloader
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 *  Copyright (C) 2009, 2010  Free Software Foundation, Inc.
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 *
 *  GRUB is free software: you can redistribute it and/or modify
 *  it under the terms of the GNU General Public License as published by
 *  the Free Software Foundation, either version 3 of the License, or
 *  (at your option) any later version.
 *
 *  GRUB is distributed in the hope that it will be useful,
 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 *  GNU General Public License for more details.
 *
 *  You should have received a copy of the GNU General Public License
 *  along with GRUB.  If not, see <http://www.gnu.org/licenses/>.
 */

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#include <grub/relocator.h>
#include <grub/relocator_private.h>
#include <grub/mm_private.h>
#include <grub/misc.h>
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#include <grub/cache.h>
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#include <grub/memory.h>
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#include <grub/dl.h>
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#include <grub/i18n.h>
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GRUB_MOD_LICENSE ("GPLv3+");
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struct grub_relocator
{
  struct grub_relocator_chunk *chunks;
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  grub_phys_addr_t postchunks;
  grub_phys_addr_t highestaddr;
  grub_phys_addr_t highestnonpostaddr;
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  grub_size_t relocators_size;
};

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struct grub_relocator_subchunk
{
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  enum {CHUNK_TYPE_IN_REGION, CHUNK_TYPE_REGION_START,
#if GRUB_RELOCATOR_HAVE_FIRMWARE_REQUESTS
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	CHUNK_TYPE_FIRMWARE, CHUNK_TYPE_LEFTOVER
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#endif
  } type;
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  grub_mm_region_t reg;
  grub_phys_addr_t start;
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  grub_size_t size;
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  grub_size_t pre_size;
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  struct grub_relocator_extra_block *extra;
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#if GRUB_RELOCATOR_HAVE_LEFTOVERS
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  struct grub_relocator_fw_leftover *pre, *post;
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#endif
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};

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struct grub_relocator_chunk
{
  struct grub_relocator_chunk *next;
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  grub_phys_addr_t src;
  void *srcv;
  grub_phys_addr_t target;
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  grub_size_t size;
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  struct grub_relocator_subchunk *subchunks;
  unsigned nsubchunks;
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};
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struct grub_relocator_extra_block
{
  struct grub_relocator_extra_block *next;
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  struct grub_relocator_extra_block **prev;
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  grub_phys_addr_t start;
  grub_phys_addr_t end;
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};

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#if GRUB_RELOCATOR_HAVE_LEFTOVERS
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struct grub_relocator_fw_leftover
{
  struct grub_relocator_fw_leftover *next;
  struct grub_relocator_fw_leftover **prev;
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  grub_phys_addr_t quantstart;
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  grub_uint8_t freebytes[GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT / 8];
};

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static struct grub_relocator_fw_leftover *leftovers;
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#endif

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static struct grub_relocator_extra_block *extra_blocks;
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void *
get_virtual_current_address (grub_relocator_chunk_t in)
{
  return in->srcv;
}

grub_phys_addr_t
get_physical_target_address (grub_relocator_chunk_t in)
{
  return in->target;
}

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struct grub_relocator *
grub_relocator_new (void)
{
  struct grub_relocator *ret;
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  grub_cpu_relocator_init ();

  ret = grub_zalloc (sizeof (struct grub_relocator));
  if (!ret)
    return NULL;
    
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  ret->postchunks = ~(grub_phys_addr_t) 0;
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  ret->relocators_size = grub_relocator_jumper_size;
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  grub_dprintf ("relocator", "relocators_size=%lu\n",
		(unsigned long) ret->relocators_size);
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  return ret;
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}

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#define DIGITSORT_BITS 8
#define DIGITSORT_MASK ((1 << DIGITSORT_BITS) - 1)
#define BITS_IN_BYTE 8
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#define max(a, b) (((a) > (b)) ? (a) : (b))
#define min(a, b) (((a) < (b)) ? (a) : (b))
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static inline int
is_start (int type)
{
  return !(type & 1) && (type != COLLISION_START);
}
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static void
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allocate_regstart (grub_phys_addr_t addr, grub_size_t size, grub_mm_region_t rb,
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		   grub_mm_region_t *regancestor, grub_mm_header_t hancestor)
{
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  grub_addr_t newreg_start, newreg_raw_start
    = (grub_addr_t) rb + (addr - grub_vtop (rb)) + size;
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  grub_addr_t newreg_size, newreg_presize;
  grub_mm_header_t new_header;
  grub_mm_header_t hb = (grub_mm_header_t) (rb + 1);

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#ifdef DEBUG_RELOCATOR_NOMEM_DPRINTF  
  grub_dprintf ("relocator", "ra = %p, rb = %p\n", regancestor, rb);
#endif
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  newreg_start = ALIGN_UP (newreg_raw_start, GRUB_MM_ALIGN);
  newreg_presize = newreg_start - newreg_raw_start;
  newreg_size = rb->size - (newreg_start - (grub_addr_t) rb);
  if ((hb->size << GRUB_MM_ALIGN_LOG2) >= newreg_start
      - (grub_addr_t) rb)
    {
      grub_mm_header_t newhnext = hb->next;
      grub_size_t newhsize = ((hb->size << GRUB_MM_ALIGN_LOG2)
			      - (newreg_start
				 - (grub_addr_t) rb)) >> GRUB_MM_ALIGN_LOG2;
      new_header = (void *) (newreg_start + sizeof (*rb));
      if (newhnext == hb)
	newhnext = new_header;
      new_header->next = newhnext;
      new_header->size = newhsize;
      new_header->magic = GRUB_MM_FREE_MAGIC;
    }
  else
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    {
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      new_header = hb->next;
      if (new_header == hb)
	new_header = (void *) (newreg_start + sizeof (*rb));	    
    }
  {
    struct grub_mm_header *newregfirst = rb->first;
    struct grub_mm_region *newregnext = rb->next;
    struct grub_mm_region *newreg = (void *) newreg_start;
    hancestor->next = new_header;
    if (newregfirst == hb)
      newregfirst = new_header;
    newreg->first = newregfirst;
    newreg->next = newregnext;
    newreg->pre_size = newreg_presize;
    newreg->size = newreg_size;
    *regancestor = newreg;
    {
      grub_mm_header_t h = newreg->first, hp = NULL;
      do
	{
	  if ((void *) h < (void *) (newreg + 1))
	    grub_fatal ("Failed to adjust memory region: %p, %p, %p, %p, %p",
			newreg, newreg->first, h, hp, hb);
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#ifdef DEBUG_RELOCATOR_NOMEM_DPRINTF
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	  if ((void *) h == (void *) (newreg + 1))
	    grub_dprintf ("relocator",
			  "Free start memory region: %p, %p, %p, %p, %p",
			  newreg, newreg->first, h, hp, hb);
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#endif
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	  hp = h;
	  h = h->next;
	}
      while (h != newreg->first);
    }
  }
}
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static void
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allocate_inreg (grub_phys_addr_t paddr, grub_size_t size,
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		grub_mm_header_t hb, grub_mm_header_t hbp,
		grub_mm_region_t rb)
{
  struct grub_mm_header *foll = NULL;
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  grub_addr_t vaddr = (grub_addr_t) hb + (paddr - grub_vtop (hb));
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#ifdef DEBUG_RELOCATOR_NOMEM_DPRINTF
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  grub_dprintf ("relocator", "inreg paddr = 0x%lx, size = %lu,"
		" hb = %p, hbp = %p, rb = %p, vaddr = 0x%lx\n",
		(unsigned long) paddr, (unsigned long) size, hb, hbp,
		rb, (unsigned long) vaddr);
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#endif
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  if (ALIGN_UP (vaddr + size, GRUB_MM_ALIGN) + GRUB_MM_ALIGN
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      <= (grub_addr_t) (hb + hb->size))
    {
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      foll = (void *) ALIGN_UP (vaddr + size, GRUB_MM_ALIGN);
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      foll->magic = GRUB_MM_FREE_MAGIC;
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      foll->size = hb + hb->size - foll;
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#ifdef DEBUG_RELOCATOR_NOMEM_DPRINTF
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      grub_dprintf ("relocator", "foll = %p, foll->size = %lu\n", foll,
		    (unsigned long) foll->size);
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#endif
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    }
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  if (vaddr - (grub_addr_t) hb >= sizeof (*hb))
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    {
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      hb->size = ((vaddr - (grub_addr_t) hb) >> GRUB_MM_ALIGN_LOG2);
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      if (foll)
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	{
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	  foll->next = hb;
	  hbp->next = foll;
	  if (rb->first == hb)
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	    {
	      rb->first = foll;
	    }
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	}
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    }
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  else
    {
      if (foll)
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	{
	  foll->next = hb->next;
	}
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      else
	foll = hb->next;
	
      hbp->next = foll;
      if (rb->first == hb)
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	{
	  rb->first = foll;
	}
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      if (rb->first == hb)
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	{
	  rb->first = (void *) (rb + 1);
	}
    }
}

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#if GRUB_RELOCATOR_HAVE_LEFTOVERS
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static void
check_leftover (struct grub_relocator_fw_leftover *lo)
{
  unsigned i;
  for (i = 0; i < sizeof (lo->freebytes); i++)
    if (lo->freebytes[i] != 0xff)
      return;
  grub_relocator_firmware_free_region (lo->quantstart,
				       GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT);
  *lo->prev = lo->next;
  if (lo->next)
    lo->next->prev = lo->prev;
}
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#endif
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static void
free_subchunk (const struct grub_relocator_subchunk *subchu)
{
  switch (subchu->type)
    {
    case CHUNK_TYPE_REGION_START:
      {
	grub_mm_region_t r1, r2, *rp;
	grub_mm_header_t h;
	grub_size_t pre_size;
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	r1 = subchu->reg;
	r2 = (grub_mm_region_t) ALIGN_UP ((grub_addr_t) subchu->reg
					  + (grub_vtop (subchu->reg)
					     - subchu->start) + subchu->size,
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					  GRUB_MM_ALIGN);
	for (rp = &grub_mm_base; *rp && *rp != r2; rp = &((*rp)->next));
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	pre_size = subchu->pre_size;
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	if (*rp)
	  {
	    grub_mm_header_t h2, *hp;
	    r1->first = r2->first;
	    r1->next = r2->next;
	    r1->pre_size = pre_size;
	    r1->size = r2->size + (r2 - r1) * sizeof (*r2);
	    *rp = r1;
	    h = (grub_mm_header_t) (r1 + 1);
	    h->next = r2->first;
	    h->magic = GRUB_MM_FREE_MAGIC;
	    h->size = (r2 - r1 - 1);
	    for (hp = &r2->first, h2 = *hp; h2->next != r2->first;
		 hp = &(h2->next), h2 = *hp)
	      if (h2 == (grub_mm_header_t) (r2 + 1))
		break;
	    if (h2 == (grub_mm_header_t) (r2 + 1))
	      {
		h->size = h2->size + (h2 - h);
		h->next = h2->next;
		*hp = h;
		if (hp == &r2->first)
		  {
		    for (h2 = r2->first; h2->next != r2->first; h2 = h2->next);
		    h2->next = h;
		  }
	      }
	    else
	      {
		h2->next = h;
	      }
	  }
	else
	  {
	    r1->pre_size = pre_size;
	    r1->size = (r2 - r1) * sizeof (*r2);
	    /* Find where to insert this region.
	       Put a smaller one before bigger ones,
	       to prevent fragmentation.  */
	    for (rp = &grub_mm_base; *rp; rp = &((*rp)->next))
	      if ((*rp)->size > r1->size)
		break;
	    r1->next = *rp;
	    *rp = r1->next;
	    h = (grub_mm_header_t) (r1 + 1);
	    r1->first = h;
	    h->next = h;
	    h->magic = GRUB_MM_FREE_MAGIC;
	    h->size = (r2 - r1 - 1);
	  }
	for (r2 = grub_mm_base; r2; r2 = r2->next)
	  if ((grub_addr_t) r2 + r2->size == (grub_addr_t) r1)
	    break;
	if (r2)
	  {
	    grub_mm_header_t hl2, hl, g;
	    g = (grub_mm_header_t) ((grub_addr_t) r2 + r2->size);
	    g->size = (grub_mm_header_t) r1 - g;
	    r2->size += r1->size;
	    for (hl = r2->first; hl->next != r2->first; hl = hl->next);
	    for (hl2 = r1->first; hl2->next != r1->first; hl2 = hl2->next);
	    hl2->next = r2->first;
	    r2->first = r1->first;
	    hl->next = r2->first;
	    *rp = (*rp)->next;
	    grub_free (g + 1);
	  }
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	break;
      }
    case CHUNK_TYPE_IN_REGION:
      {
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	grub_mm_header_t h = (grub_mm_header_t) ALIGN_DOWN ((grub_addr_t) subchu->start,
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							    GRUB_MM_ALIGN);
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	h->size
	  = ((subchu->start + subchu->size + GRUB_MM_ALIGN - 1) / GRUB_MM_ALIGN)
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	  - (subchu->start / GRUB_MM_ALIGN) - 1;
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	h->next = h;
	h->magic = GRUB_MM_ALLOC_MAGIC;
	grub_free (h + 1);
	break;
      }
#if GRUB_RELOCATOR_HAVE_FIRMWARE_REQUESTS
    case CHUNK_TYPE_FIRMWARE:
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    case CHUNK_TYPE_LEFTOVER:
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      {
	grub_addr_t fstart, fend;
	fstart = ALIGN_UP (subchu->start,
			   GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT);
	fend = ALIGN_DOWN (subchu->start + subchu->size,
			   GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT);
	if (fstart < fend)
	  grub_relocator_firmware_free_region (fstart, fend - fstart);
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#if GRUB_RELOCATOR_HAVE_LEFTOVERS
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	if (subchu->pre)
	  {
	    int off = subchu->start - fstart
	      - GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT;
	    grub_memset (subchu->pre->freebytes + off / 8 + 1,
			 0xff, sizeof (subchu->pre->freebytes) - off / 8 - 1);
	    subchu->pre->freebytes[off / 8] |= ~((1 << (off % 8)) - 1);
	    check_leftover (subchu->pre);
	  }
	if (subchu->post)
	  {
	    int off = subchu->start + subchu->size - fend;
	    grub_memset (subchu->pre->freebytes,
			 0xff, sizeof (subchu->pre->freebytes) - off / 8);
	    subchu->pre->freebytes[off / 8] |= ((1 << (8 - (off % 8))) - 1);
	    check_leftover (subchu->post);
	  }
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#endif
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	*subchu->extra->prev = subchu->extra->next;
	grub_free (subchu->extra);
      }
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      break;
#endif
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    }  
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}
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static int
malloc_in_range (struct grub_relocator *rel,
		 grub_addr_t start, grub_addr_t end, grub_addr_t align,
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		 grub_size_t size, struct grub_relocator_chunk *res,
		 int from_low_priv, int collisioncheck)
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{
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  grub_mm_region_t r, *ra, base_saved;
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  struct grub_relocator_mmap_event *events = NULL, *eventt = NULL, *t;
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  /* 128 is just in case of additional malloc (shouldn't happen).  */
  unsigned maxevents = 2 + 128;
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  grub_mm_header_t p, pa;
  unsigned *counter;
  int nallocs = 0;
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  unsigned j, N = 0;
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  grub_addr_t target = 0;
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  grub_dprintf ("relocator",
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		"trying to allocate in 0x%lx-0x%lx aligned 0x%lx size 0x%lx\n",
		(unsigned long) start, (unsigned long) end,
		(unsigned long) align, (unsigned long) size);
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  start = ALIGN_UP (start, align);
  end = ALIGN_DOWN (end - size, align) + size;
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  if (end < start + size)
    return 0;

  /* We have to avoid any allocations when filling scanline events. 
     Hence 2-stages.
   */
  for (r = grub_mm_base; r; r = r->next)
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    {
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      p = r->first;
      do
	{
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	  if ((grub_addr_t) p < (grub_addr_t) (r + 1)
	      || (grub_addr_t) p >= (grub_addr_t) (r + 1) + r->size)
	    grub_fatal ("%d: out of range pointer: %p\n", __LINE__, p);
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	  maxevents += 2;
	  p = p->next;
	}
      while (p != r->first);
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      maxevents += 4;
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    }
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  if (collisioncheck && rel)
    {
      struct grub_relocator_chunk *chunk;
      for (chunk = rel->chunks; chunk; chunk = chunk->next)
	maxevents += 2;
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    }
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#if GRUB_RELOCATOR_HAVE_FIRMWARE_REQUESTS
  {
    struct grub_relocator_extra_block *cur;
    for (cur = extra_blocks; cur; cur = cur->next)
      maxevents += 2;
  }
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  for (r = grub_mm_base; r; r = r->next)
    maxevents += 2;
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  maxevents += grub_relocator_firmware_get_max_events ();
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#endif
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#if GRUB_RELOCATOR_HAVE_LEFTOVERS
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  {
    struct grub_relocator_fw_leftover *cur;
    for (cur = leftovers; cur; cur = cur->next)
      {
	int l = 0;
	unsigned i;
	for (i = 0; i < GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT; i++)
	  {
	    if (l != ((cur->freebytes[i / 8] >> (i % 8)) & 1))
	      maxevents++;
	    l = ((cur->freebytes[i / 8] >> (i % 8)) & 1);
	  }
	if (l)
	  maxevents++;
      }
  }
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#endif
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  eventt = grub_malloc (maxevents * sizeof (events[0]));
  counter = grub_malloc ((DIGITSORT_MASK + 2) * sizeof (counter[0]));
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  events = grub_malloc (maxevents * sizeof (events[0]));
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  if (!events || !eventt || !counter)
    {
      grub_dprintf ("relocator", "events or counter allocation failed %d\n",
		    maxevents);
      grub_free (events);
      grub_free (eventt);
      grub_free (counter);
      return 0;
    }
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  if (collisioncheck && rel)
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    {
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      struct grub_relocator_chunk *chunk;
      for (chunk = rel->chunks; chunk; chunk = chunk->next)
	{
	  events[N].type = COLLISION_START;
	  events[N].pos = chunk->target;
	  N++;
	  events[N].type = COLLISION_END;
	  events[N].pos = chunk->target + chunk->size;
	  N++;
	}
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    }

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#if GRUB_RELOCATOR_HAVE_FIRMWARE_REQUESTS
  for (r = grub_mm_base; r; r = r->next)
    {
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#ifdef DEBUG_RELOCATOR_NOMEM_DPRINTF
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      grub_dprintf ("relocator", "Blocking at 0x%lx-0x%lx\n",
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		    (unsigned long) r - r->pre_size, 
		    (unsigned long) (r + 1) + r->size);
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#endif
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      events[N].type = FIRMWARE_BLOCK_START;
      events[N].pos = (grub_addr_t) r - r->pre_size;
      N++;
      events[N].type = FIRMWARE_BLOCK_END;
      events[N].pos = (grub_addr_t) (r + 1) + r->size;
      N++;
    }
  {
    struct grub_relocator_extra_block *cur;
    for (cur = extra_blocks; cur; cur = cur->next)
      {
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#ifdef DEBUG_RELOCATOR_NOMEM_DPRINTF
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	grub_dprintf ("relocator", "Blocking at 0x%lx-0x%lx\n",
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		      (unsigned long) cur->start, (unsigned long) cur->end);
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#endif
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	events[N].type = FIRMWARE_BLOCK_START;
	events[N].pos = cur->start;
	N++;
	events[N].type = FIRMWARE_BLOCK_END;
	events[N].pos = cur->end;
	N++;
      }
  }

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  N += grub_relocator_firmware_fill_events (events + N);
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#if GRUB_RELOCATOR_HAVE_LEFTOVERS
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  {
    struct grub_relocator_fw_leftover *cur;
    for (cur = leftovers; cur; cur = cur->next)
      {
	unsigned i;
	int l = 0;
	for (i = 0; i < GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT; i++)
	  {
	    if (l != ((cur->freebytes[i / 8] >> (i % 8)) & 1))
	      {
		events[N].type = l ? REG_LEFTOVER_END : REG_LEFTOVER_START;
		events[N].pos = cur->quantstart + i;
		events[N].leftover = cur;
		N++;
	      }
	    l = ((cur->freebytes[i / 8] >> (i % 8)) & 1);
	  }
	if (l)
	  {
	    events[N].type = REG_LEFTOVER_END;
	    events[N].pos = cur->quantstart + i;
	    events[N].leftover = cur;
	    N++;
	  }
      }
  }
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#endif
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#endif

589 590 591 592 593
  /* No malloc from this point.  */
  base_saved = grub_mm_base;
  grub_mm_base = NULL;

  for (ra = &base_saved, r = *ra; r; ra = &(r->next), r = *ra)
594
    {
595 596
      pa = r->first;
      p = pa->next;
597 598
      if (p->magic == GRUB_MM_ALLOC_MAGIC)
	continue;
599
      do 
600 601
	{
	  if (p->magic != GRUB_MM_FREE_MAGIC)
602 603
	    grub_fatal ("%s:%d free magic broken at %p (0x%x)\n",
			__FILE__,
604
			__LINE__, p, p->magic);
605 606 607
	  if (p == (grub_mm_header_t) (r + 1))
	    {
	      events[N].type = REG_BEG_START;
608
	      events[N].pos = grub_vtop (r) - r->pre_size;
609 610 611 612 613 614
	      events[N].reg = r;
	      events[N].regancestor = ra;
	      events[N].head = p;
	      events[N].hancestor = pa;
	      N++;
	      events[N].type = REG_BEG_END;
615 616
	      events[N].pos = grub_vtop (p + p->size) - sizeof (*r)
		- sizeof (struct grub_mm_header);
617 618 619 620 621
	      N++;
	    }
	  else
	    {
	      events[N].type = IN_REG_START;
622
	      events[N].pos = grub_vtop (p);
623 624 625 626 627
	      events[N].head = p;
	      events[N].hancestor = pa;
	      events[N].reg = r;
	      N++;
	      events[N].type = IN_REG_END;
628
	      events[N].pos = grub_vtop (p + p->size);
629 630 631 632 633 634 635 636 637 638 639 640 641 642
	      N++;
	    }
	  pa = p;
	  p = pa->next;
	}
      while (pa != r->first);
    }

  /* Put ending events after starting events.  */
  {
    int st = 0, e = N / 2;
    for (j = 0; j < N; j++)
      if (is_start (events[j].type) || events[j].type == COLLISION_START)
	eventt[st++] = events[j];
643
      else
644 645 646 647 648
	eventt[e++] = events[j];
    t = eventt;
    eventt = events;
    events = t;
  }
649

650 651 652 653 654
  {
    unsigned i;
    for (i = 0; i < (BITS_IN_BYTE * sizeof (grub_addr_t) / DIGITSORT_BITS);
	 i++)
      {
655
	grub_memset (counter, 0, (1 + (1 << DIGITSORT_BITS)) * sizeof (counter[0]));
656 657 658 659 660 661 662 663 664 665 666 667 668
	for (j = 0; j < N; j++)
	  counter[((events[j].pos >> (DIGITSORT_BITS * i)) 
		   & DIGITSORT_MASK) + 1]++;
	for (j = 0; j <= DIGITSORT_MASK; j++)
	  counter[j+1] += counter[j];
	for (j = 0; j < N; j++)
	  eventt[counter[((events[j].pos >> (DIGITSORT_BITS * i)) 
			  & DIGITSORT_MASK)]++] = events[j];
	t = eventt;
	eventt = events;
	events = t;
      }
  }
669

670 671 672
#if GRUB_RELOCATOR_HAVE_FIRMWARE_REQUESTS
 retry:
#endif
673 674

  /* Now events are nicely sorted.  */
675 676
  {
    int nstarted = 0, ncollisions = 0, nstartedfw = 0, nblockfw = 0;
677
#if GRUB_RELOCATOR_HAVE_LEFTOVERS
678
    int nlefto = 0;
679 680 681
#else
    const int nlefto = 0;
#endif
682 683 684 685 686
    grub_addr_t starta = 0;
    for (j = from_low_priv ? 0 : N - 1; from_low_priv ? j < N : (j + 1); 
	 from_low_priv ? j++ : j--)
      {
	int isinsidebefore, isinsideafter;
687 688
	isinsidebefore = (!ncollisions && (nstarted || (((nlefto || nstartedfw)
							 && !nblockfw))));
689 690 691 692 693 694
	switch (events[j].type)
	  {
#if GRUB_RELOCATOR_HAVE_FIRMWARE_REQUESTS
	  case REG_FIRMWARE_START:
	    nstartedfw++;
	    break;
695

696 697 698
	  case REG_FIRMWARE_END:
	    nstartedfw--;
	    break;
699

700 701 702 703 704 705 706
	  case FIRMWARE_BLOCK_START:
	    nblockfw++;
	    break;

	  case FIRMWARE_BLOCK_END:
	    nblockfw--;
	    break;
707 708 709
#endif

#if GRUB_RELOCATOR_HAVE_LEFTOVERS
710 711 712 713 714 715 716
	  case REG_LEFTOVER_START:
	    nlefto++;
	    break;

	  case REG_LEFTOVER_END:
	    nlefto--;
	    break;
717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736
#endif

	  case COLLISION_START:
	    ncollisions++;
	    break;

	  case COLLISION_END:
	    ncollisions--;
	    break;

	  case IN_REG_START:
	  case REG_BEG_START:
	    nstarted++;
	    break;

	  case IN_REG_END:
	  case REG_BEG_END:
	    nstarted--;
	    break;
	  }
737 738
	isinsideafter = (!ncollisions && (nstarted || ((nlefto || nstartedfw) 
						       && !nblockfw)));
739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768
	if (from_low_priv) {
	  if (!isinsidebefore && isinsideafter)
	    starta = ALIGN_UP (events[j].pos, align);

	  if (isinsidebefore && !isinsideafter)
	    {
	      target = starta;
	      if (target < start)
		target = start;
	      if (target + size <= end && target + size <= events[j].pos)
		/* Found an usable address.  */
		goto found;
	    }
	} else {
	  if (!isinsidebefore && isinsideafter)
	    {
	      if (events[j].pos >= size)
		starta = ALIGN_DOWN (events[j].pos - size, align) + size;
	      else
		starta = 0;
	    }
	  if (isinsidebefore && !isinsideafter && starta >= size)
	    {
	      target = starta - size;
	      if (target > end - size)
		target = end - size;
	      if (target >= start && target >= events[j].pos)
		goto found;
	    }
	}
769 770
      }
  }
771

772 773 774 775 776
  grub_mm_base = base_saved;
  grub_free (events);
  grub_free (eventt);
  grub_free (counter);
  return 0;
777

778 779
 found:
  {
780 781
    int inreg = 0, regbeg = 0, ncol = 0;
#if GRUB_RELOCATOR_HAVE_FIRMWARE_REQUESTS
782
    int fwin = 0, fwb = 0, fwlefto = 0;
783 784 785
#endif
#if GRUB_RELOCATOR_HAVE_LEFTOVERS
    int last_lo = 0;
786
#endif
787 788
    int last_start = 0;
    for (j = 0; j < N; j++)
789
      {
790 791 792 793 794 795 796 797 798 799
	int typepre;
	if (ncol)
	  typepre = -1;
	else if (regbeg)
	  typepre = CHUNK_TYPE_REGION_START;
	else if (inreg)
	  typepre = CHUNK_TYPE_IN_REGION;
#if GRUB_RELOCATOR_HAVE_FIRMWARE_REQUESTS
	else if (fwin && !fwb)
	  typepre = CHUNK_TYPE_FIRMWARE;
800 801
	else if (fwlefto && !fwb)
	  typepre = CHUNK_TYPE_LEFTOVER;
802 803 804 805
#endif
	else
	  typepre = -1;

806
	if (j != 0 && events[j - 1].pos != events[j].pos)
807
	  {
808 809 810 811 812
	    grub_addr_t alloc_start, alloc_end;
	    alloc_start = max (events[j - 1].pos, target);
	    alloc_end = min (events[j].pos, target + size);
	    if (alloc_end > alloc_start)
	      {
813
		switch (typepre)
814
		  {
815 816 817 818 819
		  case CHUNK_TYPE_REGION_START:
		    allocate_regstart (alloc_start, alloc_end - alloc_start,
				       events[last_start].reg,
				       events[last_start].regancestor,
				       events[last_start].hancestor);
820
		    /* TODO: maintain a reverse lookup tree for hancestor.  */
821 822 823 824 825 826
		    {
		      unsigned k;
		      for (k = 0; k < N; k++)
			if (events[k].hancestor == events[last_start].head)
			  events[k].hancestor = events[last_start].hancestor;
		    }
827 828 829 830 831 832
		    break;
		  case CHUNK_TYPE_IN_REGION:
		    allocate_inreg (alloc_start, alloc_end - alloc_start,
				    events[last_start].head,
				    events[last_start].hancestor,
				    events[last_start].reg);
833 834 835 836 837 838
		    {
		      unsigned k;
		      for (k = 0; k < N; k++)
			if (events[k].hancestor == events[last_start].head)
			  events[k].hancestor = events[last_start].hancestor;
		    }
839 840 841
		    break;
#if GRUB_RELOCATOR_HAVE_FIRMWARE_REQUESTS
		  case CHUNK_TYPE_FIRMWARE:
842 843 844 845 846 847 848 849
		    {
		      grub_addr_t fstart, fend;
		      fstart
			= ALIGN_DOWN (alloc_start,
				      GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT);
		      fend
			= ALIGN_UP (alloc_end,
				    GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT);
850
#ifdef DEBUG_RELOCATOR_NOMEM_DPRINTF  
851
		      grub_dprintf ("relocator", "requesting %lx-%lx\n",
852 853
				    (unsigned long) fstart,
				    (unsigned long) fend);
854
#endif
855 856 857 858 859 860 861 862 863 864 865 866
		      /* The failure here can be very expensive.  */
		      if (!grub_relocator_firmware_alloc_region (fstart, 
								 fend - fstart))
			{
			  if (from_low_priv)
			    start = fend;
			  else
			    end = fstart;
			  goto retry;
			}
		      break;
		    }
867 868 869
#endif

#if GRUB_RELOCATOR_HAVE_LEFTOVERS
870 871 872 873 874 875 876
		  case CHUNK_TYPE_LEFTOVER:
		    {
		      unsigned offstart = alloc_start
			% GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT;
		      unsigned offend = alloc_end
			% GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT;
		      struct grub_relocator_fw_leftover *lo
877
			= events[last_lo].leftover;
878 879
		      if (offend == 0 && alloc_end != alloc_start)
			offend = GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT;
880 881 882 883 884 885 886
		      lo->freebytes[offstart / 8]
			&= ((1 << (8 - (start % 8))) - 1);
		      grub_memset (lo->freebytes + (offstart + 7) / 8, 0,
				   offend / 8 - (offstart + 7) / 8);
		      lo->freebytes[offend / 8] &= ~((1 << (offend % 8)) - 1);
		    }
		    break;
887
#endif
888 889 890
		  }
		nallocs++;
	      }
891
	  }
892 893 894 895 896 897 898 899 900 901 902 903 904 905 906
	  
	switch (events[j].type)
	  {
	  case REG_BEG_START:
	  case IN_REG_START:
	    if (events[j].type == REG_BEG_START &&
		(grub_addr_t) (events[j].reg + 1) > target)
	      regbeg++;
	    else
	      inreg++;
	    last_start = j;
	    break;

	  case REG_BEG_END:
	  case IN_REG_END:
907 908 909 910
	    if (regbeg)
	      regbeg--;
	    else
	      inreg--;
911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929
	    break;

#if GRUB_RELOCATOR_HAVE_FIRMWARE_REQUESTS
	  case REG_FIRMWARE_START:
	    fwin++;
	    break;

	  case REG_FIRMWARE_END:
	    fwin--;
	    break;

	  case FIRMWARE_BLOCK_START:
	    fwb++;
	    break;

	  case FIRMWARE_BLOCK_END:
	    fwb--;
	    break;
#endif
930 931 932 933

#if GRUB_RELOCATOR_HAVE_LEFTOVERS
	  case REG_LEFTOVER_START:
	    fwlefto++;
934
	    last_lo = j;
935 936 937 938 939 940
	    break;

	  case REG_LEFTOVER_END:
	    fwlefto--;
	    break;
#endif
941 942 943 944 945 946 947 948
	  case COLLISION_START:
	    ncol++;
	    break;
	  case COLLISION_END:
	    ncol--;
	    break;
	  }

949
      }
950 951 952 953 954
  }

  /* Malloc is available again.  */
  grub_mm_base = base_saved;

955 956 957
  grub_free (eventt);
  grub_free (counter);

958 959
  {
    int last_start = 0;
960 961
    int inreg = 0, regbeg = 0, ncol = 0;
#if GRUB_RELOCATOR_HAVE_FIRMWARE_REQUESTS
962
    int fwin = 0, fwlefto = 0, fwb = 0;
963
#endif
964 965 966 967 968 969 970
    unsigned cural = 0;
    int oom = 0;
    res->subchunks = grub_malloc (sizeof (res->subchunks[0]) * nallocs);
    if (!res->subchunks)
      oom = 1;
    res->nsubchunks = nallocs;

971
    for (j = 0; j < N; j++)
972
      {
973 974 975 976 977 978 979 980 981 982
	int typepre;
	if (ncol)
	  typepre = -1;
	else if (regbeg)
	  typepre = CHUNK_TYPE_REGION_START;
	else if (inreg)
	  typepre = CHUNK_TYPE_IN_REGION;
#if GRUB_RELOCATOR_HAVE_FIRMWARE_REQUESTS
	else if (fwin && !fwb)
	  typepre = CHUNK_TYPE_FIRMWARE;
983 984
	else if (fwlefto && !fwb)
	  typepre = CHUNK_TYPE_LEFTOVER;
985 986 987 988
#endif
	else
	  typepre = -1;

989 990 991
	if (j != 0 && events[j - 1].pos != events[j].pos)
	  {
	    grub_addr_t alloc_start, alloc_end;
992 993 994 995
	    struct grub_relocator_subchunk tofree;
	    struct grub_relocator_subchunk *curschu = &tofree;
	    if (!oom)
	      curschu = &res->subchunks[cural];
996 997 998 999
	    alloc_start = max (events[j - 1].pos, target);
	    alloc_end = min (events[j].pos, target + size);
	    if (alloc_end > alloc_start)
	      {
1000
#ifdef DEBUG_RELOCATOR_NOMEM_DPRINTF
1001 1002 1003
		grub_dprintf ("relocator", "subchunk 0x%lx-0x%lx, %d\n",
			      (unsigned long) alloc_start,
			      (unsigned long) alloc_end, typepre);
1004
#endif
1005
		curschu->type = typepre;
1006 1007
		curschu->start = alloc_start;
		curschu->size = alloc_end - alloc_start;
1008 1009 1010 1011 1012 1013
		if (typepre == CHUNK_TYPE_REGION_START
		    || typepre == CHUNK_TYPE_IN_REGION)
		  {
		    curschu->reg = events[last_start].reg;
		    curschu->pre_size = alloc_start - events[j - 1].pos;
		  }
1014
		if (!oom && (typepre == CHUNK_TYPE_REGION_START
1015 1016 1017 1018
#if GRUB_RELOCATOR_HAVE_FIRMWARE_REQUESTS
			     || typepre == CHUNK_TYPE_FIRMWARE
#endif
			     ))
1019 1020 1021
		  {
		    struct grub_relocator_extra_block *ne;
		    ne = grub_malloc (sizeof (*ne));
1022 1023 1024 1025 1026 1027 1028 1029 1030 1031
		    if (!ne)
		      {
			oom = 1;
			grub_memcpy (&tofree, curschu, sizeof (tofree));
		      }
		    else
		      {
			ne->start = alloc_start;
			ne->end = alloc_end;
			ne->next = extra_blocks;
1032
			ne->prev = &extra_blocks;
1033 1034
			if (extra_blocks)
			  extra_blocks->prev = &(ne->next);
1035
			extra_blocks = ne;
1036
			curschu->extra = ne;
1037
		      }
1038
		  }
1039 1040

#if GRUB_RELOCATOR_HAVE_LEFTOVERS
1041
		if (!oom && typepre == CHUNK_TYPE_FIRMWARE)
1042 1043
		  {
		    grub_addr_t fstart, fend;
1044

1045 1046
		    fstart
		      = ALIGN_DOWN (alloc_start,
1047
				    GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT);
1048 1049 1050 1051
		    fend
		      = ALIGN_UP (alloc_end,
				  GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT);

1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110
		    {
		      struct grub_relocator_fw_leftover *lo1 = NULL;
		      struct grub_relocator_fw_leftover *lo2 = NULL;
		      if (fstart != alloc_start)
			lo1 = grub_malloc (sizeof (*lo1));
		      if (fend != alloc_end)
			lo2 = grub_malloc (sizeof (*lo2));
		      if ((!lo1 && fstart != alloc_start)
			  || (!lo2 && fend != alloc_end))
			{
			  struct grub_relocator_extra_block *ne;
			  grub_free (lo1);
			  grub_free (lo2);
			  lo1 = NULL;
			  lo2 = NULL;
			  oom = 1;
			  grub_memcpy (&tofree, curschu, sizeof (tofree));
			  ne = extra_blocks;
			  extra_blocks = extra_blocks->next;
			  grub_free (ne);
			}
		      if (lo1)
			{
			  lo1->quantstart = fstart;
			  grub_memset (lo1->freebytes, 0xff,
				       (alloc_start - fstart) / 8);
			  lo1->freebytes[(alloc_start - fstart) / 8]
			    = (1 << ((alloc_start - fstart) % 8)) - 1;
			  grub_memset (lo1->freebytes
				       + ((alloc_start - fstart) / 8) + 1, 0,
				       sizeof (lo1->freebytes)
				       - (alloc_start - fstart) / 8 - 1);
			  lo1->next = leftovers;
			  lo1->prev = &leftovers;
			  if (leftovers)
			    leftovers->prev = &lo1->next;
			  leftovers = lo1;
			}
		      if (lo2)
			{
			  lo2->quantstart
			    = fend - GRUB_RELOCATOR_FIRMWARE_REQUESTS_QUANT;
			  grub_memset (lo2->freebytes, 0,
				       (alloc_end - lo2->quantstart) / 8);
			  lo2->freebytes[(alloc_end - lo2->quantstart) / 8]
			    = ~((1 << ((alloc_end - lo2->quantstart) % 8)) - 1);
			  grub_memset (lo2->freebytes
				       + ((alloc_end - lo2->quantstart) / 8)
				       + 1, 0, sizeof (lo2->freebytes)
				       - (alloc_end - lo2->quantstart) / 8 - 1);
			  lo2->prev = &leftovers;
			  if (leftovers)
			    leftovers->prev = &lo2->next;
			  lo2->next = leftovers;
			  leftovers = lo2;
			}
		      curschu->pre = lo1;
		      curschu->post = lo2;
		    }
1111
		  }
1112

1113 1114 1115 1116 1117
		if (typepre == CHUNK_TYPE_LEFTOVER)
		  {
		    curschu->pre = events[last_start].leftover;
		    curschu->post = events[last_start].leftover;
		  }
1118 1119
#endif

1120 1121 1122 1123
		if (!oom)
		  cural++;
		else
		  free_subchunk (&tofree);
1124 1125
	      }
	  }
1126

1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160
	switch (events[j].type)
	  {
	  case REG_BEG_START:
	  case IN_REG_START:
	    if (events[j].type == REG_BEG_START &&
		(grub_addr_t) (events[j].reg + 1) > target)
	      regbeg++;
	    else
	      inreg++;
	    last_start = j;
	    break;

	  case REG_BEG_END:
	  case IN_REG_END:
	    inreg = regbeg = 0;
	    break;

#if GRUB_RELOCATOR_HAVE_FIRMWARE_REQUESTS
	  case REG_FIRMWARE_START:
	    fwin++;
	    break;

	  case REG_FIRMWARE_END:
	    fwin--;
	    break;

	  case FIRMWARE_BLOCK_START:
	    fwb++;
	    break;

	  case FIRMWARE_BLOCK_END:
	    fwb--;
	    break;
#endif
1161 1162 1163 1164 1165 1166 1167 1168 1169 1170

#if GRUB_RELOCATOR_HAVE_LEFTOVERS
	  case REG_LEFTOVER_START:
	    fwlefto++;
	    break;

	  case REG_LEFTOVER_END:
	    fwlefto--;
	    break;
#endif
1171 1172 1173 1174 1175 1176 1177
	  case COLLISION_START:
	    ncol++;
	    break;
	  case COLLISION_END:
	    ncol--;
	    break;
	  }
1178 1179 1180
      }
    if (oom)
      {
1181
	unsigned i;
1182 1183 1184 1185
	for (i = 0; i < cural; i++)
	  free_subchunk (&res->subchunks[i]);
	grub_free (res->subchunks);
	grub_dprintf ("relocator", "allocation failed with out-of-memory\n");
1186 1187
	grub_free (events);

1188
	return 0;
1189 1190
      }
  }
1191

1192 1193
  res->src = target;
  res->size = size;
1194 1195 1196

  grub_free (events);

1197 1198
  grub_dprintf ("relocator", "allocated: 0x%lx+0x%lx\n", (unsigned long) target,
		(unsigned long) size);
1199

1200
  return 1;
1201 1202
}

1203 1204
static void
adjust_limits (struct grub_relocator *rel, 
1205 1206
	       grub_phys_addr_t *min_addr, grub_phys_addr_t *max_addr,
	       grub_phys_addr_t in_min, grub_phys_addr_t in_max)
1207
{
1208 1209
  struct grub_relocator_chunk *chunk;

1210 1211
  *min_addr = 0;
  *max_addr = rel->postchunks;
1212 1213 1214 1215

  /* Keep chunks in memory in the same order as they'll be after relocation.  */
  for (chunk = rel->chunks; chunk; chunk = chunk->next)
    {
1216
      if (chunk->target > in_max && chunk->src < *max_addr
1217
	  && chunk->src < rel->postchunks)
1218 1219 1220
	*max_addr = chunk->src;
      if (chunk->target + chunk->size <= in_min
	  && chunk->src + chunk->size > *min_addr
1221
	  && chunk->src < rel->postchunks)
1222
	*min_addr = chunk->src + chunk->size;
1223
    }
1224 1225 1226
}

grub_err_t
1227 1228
grub_relocator_alloc_chunk_addr (struct grub_relocator *rel,
				 grub_relocator_chunk_t *out,
1229
				 grub_phys_addr_t target, grub_size_t size)
1230 1231
{
  struct grub_relocator_chunk *chunk;
1232
  grub_phys_addr_t min_addr = 0, max_addr;
1233

1234
  if (target > ~size)
1235
    return grub_error (GRUB_ERR_BUG, "address is out of range");
1236

1237 1238 1239 1240 1241
  adjust_limits (rel, &min_addr, &max_addr, target, target);

  for (chunk = rel->chunks; chunk; chunk = chunk->next)
    if ((chunk->target <= target && target < chunk->target + chunk->size)
	|| (target <= chunk->target && chunk->target < target + size))
1242
      return grub_error (GRUB_ERR_BUG, "overlap detected");
1243

1244 1245 1246 1247
  chunk = grub_malloc (sizeof (struct grub_relocator_chunk));
  if (!chunk)
    return grub_errno;

1248 1249 1250 1251
  grub_dprintf ("relocator",
		"min_addr = 0x%llx, max_addr = 0x%llx, target = 0x%llx\n",
		(unsigned long long) min_addr, (unsigned long long) max_addr,
		(unsigned long long) target);
1252

1253 1254 1255 1256 1257
  do
    {
      /* A trick to improve Linux allocation.  */
#if defined (__i386__) || defined (__x86_64__)
      if (target < 0x100000)
1258
	if (malloc_in_range (rel, rel->highestnonpostaddr, ~(grub_addr_t)0, 1,
1259
			     size, chunk, 0, 1))
1260
	  {
1261 1262
	    if (rel->postchunks > chunk->src)
	      rel->postchunks = chunk->src;
1263 1264 1265
	    break;
	  }
#endif
1266
      if (malloc_in_range (rel, target, max_addr, 1, size, chunk, 1, 0))
1267 1268
	break;

1269
      if (malloc_in_range (rel, min_addr, target, 1, size, chunk, 0, 0))
1270 1271
	break;

1272
      if (malloc_in_range (rel, rel->highestnonpostaddr, ~(grub_addr_t)0, 1,
1273
			   size, chunk, 0, 1))
1274
	{
1275 1276
	  if (rel->postchunks > chunk->src)
	    rel->postchunks = chunk->src;
1277 1278 1279
	  break;
	}

1280
      grub_dprintf ("relocator", "not allocated\n");
1281
      grub_free (chunk);
1282
      return grub_error (GRUB_ERR_OUT_OF_MEMORY, N_("out of memory"));
1283 1284 1285
    }
  while (0);

1286
  grub_dprintf ("relocator", "allocated 0x%llx/0x%llx\n",
1287
		(unsigned long long) chunk->src, (unsigned long long) target);
1288

1289 1290 1291
  if (rel->highestaddr < target + size)
    rel->highestaddr = target + size;

1292 1293
  if (rel->highestaddr < chunk->src + size)
    rel->highestaddr = chunk->src + size;
1294

1295
  if (chunk->src < rel->postchunks)
1296 1297 1298 1299
    {
      if (rel->highestnonpostaddr < target + size)
	rel->highestnonpostaddr = target + size;
      
1300 1301
      if (rel->highestnonpostaddr < chunk->src + size)
	rel->highestnonpostaddr = chunk->src + size;  
1302 1303
    }

1304 1305
  grub_dprintf ("relocator", "relocators_size=%ld\n",
		(unsigned long) rel->relocators_size);
1306

1307
  if (chunk->src < target)
1308
    rel->relocators_size += grub_relocator_backward_size;
1309
  if (chunk->src > target)
1310 1311
    rel->relocators_size += grub_relocator_forward_size;

1312 1313
  grub_dprintf ("relocator", "relocators_size=%ld\n",
		(unsigned long) rel->relocators_size);
1314

1315 1316 1317 1318
  chunk->target = target;
  chunk->size = size;
  chunk->next = rel->chunks;
  rel->chunks = chunk;
1319 1320 1321
  grub_dprintf ("relocator", "cur = %p, next = %p\n", rel->chunks,
		rel->chunks->next);

1322 1323
  chunk->srcv = grub_map_memory (chunk->src, chunk->size);
  *out = chunk;
1324
#ifdef DEBUG_RELOCATOR
1325 1326
  grub_memset (chunk->srcv, 0xfa, chunk->size);
  grub_mm_check ();
1327
#endif
1328
  return GRUB_ERR_NONE;
1329 1330
}

1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369
/* Context for grub_relocator_alloc_chunk_align.  */
struct grub_relocator_alloc_chunk_align_ctx
{
  grub_phys_addr_t min_addr, max_addr;
  grub_size_t size, align;
  int preference;
  struct grub_relocator_chunk *chunk;
  int found;
};

/* Helper for grub_relocator_alloc_chunk_align.  */
static int
grub_relocator_alloc_chunk_align_iter (grub_uint64_t addr, grub_uint64_t sz,
				       grub_memory_type_t type, void *data)
{
  struct grub_relocator_alloc_chunk_align_ctx *ctx = data;
  grub_uint64_t candidate;

  if (type != GRUB_MEMORY_AVAILABLE)
    return 0;
  candidate = ALIGN_UP (addr, ctx->align);
  if (candidate < ctx->min_addr)
    candidate = ALIGN_UP (ctx->min_addr, ctx->align);
  if (candidate + ctx->size > addr + sz
      || candidate > ALIGN_DOWN (ctx->max_addr, ctx->align))
    return 0;
  if (ctx->preference == GRUB_RELOCATOR_PREFERENCE_HIGH)
    candidate = ALIGN_DOWN (min (addr + sz - ctx->size, ctx->max_addr),
			    ctx->align);
  if (!ctx->found || (ctx->preference == GRUB_RELOCATOR_PREFERENCE_HIGH
		      && candidate > ctx->chunk->target))
    ctx->chunk->target = candidate;
  if (!ctx->found || (ctx->preference == GRUB_RELOCATOR_PREFERENCE_LOW
		      && candidate < ctx->chunk->target))
    ctx->chunk->target = candidate;
  ctx->found = 1;
  return 0;
}

1370
grub_err_t
1371 1372
grub_relocator_alloc_chunk_align (struct grub_relocator *rel,
				  grub_relocator_chunk_t *out,
1373 1374
				  grub_phys_addr_t min_addr,
				  grub_phys_addr_t max_addr,
1375
				  grub_size_t size, grub_size_t align,
1376 1377
				  int preference,
				  int avoid_efi_boot_services)
1378
{
1379 1380 1381 1382 1383 1384 1385 1386
  struct grub_relocator_alloc_chunk_align_ctx ctx = {
    .min_addr = min_addr,
    .max_addr = max_addr,
    .size = size,
    .align = align,
    .preference = preference,
    .found = 0
  };
1387 1388
  grub_addr_t min_addr2 = 0, max_addr2;

1389 1390 1391
  if (max_addr > ~size)
    max_addr = ~size;

1392 1393 1394 1395 1396
#ifdef GRUB_MACHINE_PCBIOS
  if (min_addr < 0x1000)
    min_addr = 0x1000;
#endif

1397 1398
  grub_dprintf ("relocator", "chunks = %p\n", rel->chunks);

1399 1400
  ctx.chunk = grub_malloc (sizeof (struct grub_relocator_chunk));
  if (!ctx.chunk)
1401 1402 1403
    return grub_errno;

  if (malloc_in_range (rel, min_addr, max_addr, align,
1404
		       size, ctx.chunk,
1405
		       preference != GRUB_RELOCATOR_PREFERENCE_HIGH, 1))
1406
    {
1407
      grub_dprintf ("relocator", "allocated 0x%llx/0x%llx\n",
1408 1409
		    (unsigned long long) ctx.chunk->src,
		    (unsigned long long) ctx.chunk->src);
1410
      grub_dprintf ("relocator", "chunks = %p\n", rel->chunks);
1411 1412 1413 1414 1415 1416
      ctx.chunk->target = ctx.chunk->src;
      ctx.chunk->size = size;
      ctx.chunk->next = rel->chunks;
      rel->chunks = ctx.chunk;
      ctx.chunk->srcv = grub_map_memory (ctx.chunk->src, ctx.chunk->size);
      *out = ctx.chunk;
1417 1418 1419
      return GRUB_ERR_NONE;
    }

1420
  adjust_limits (rel, &min_addr2, &max_addr2, min_addr, max_addr);
1421
  grub_dprintf ("relocator", "Adjusted limits from %lx-%lx to %lx-%lx\n",
1422 1423
		(unsigned long) min_addr, (unsigned long) max_addr,
		(unsigned long) min_addr2, (unsigned long) max_addr2);
1424

1425
  do
1426
    {
1427
      if (malloc_in_range (rel, min_addr2, max_addr2, align,
1428
			   size, ctx.chunk, 1, 1))
1429 1430 1431
	break;

      if (malloc_in_range (rel, rel->highestnonpostaddr, ~(grub_addr_t)0, 1,
1432
			   size, ctx.chunk, 0, 1))
1433
	{
1434 1435
	  if (rel->postchunks > ctx.chunk->src)
	    rel->postchunks = ctx.chunk->src;
1436 1437 1438
	  break;
	}

1439
      return grub_error (GRUB_ERR_OUT_OF_MEMORY, N_("out of memory"));
1440
    }
1441
  while (0);
1442

1443
  {
1444
#ifdef GRUB_MACHINE_EFI
1445 1446
    grub_efi_mmap_iterate (grub_relocator_alloc_chunk_align_iter, &ctx,
			   avoid_efi_boot_services);
1447
#elif defined (__powerpc__) || defined (GRUB_MACHINE_XEN)
1448
    (void) avoid_efi_boot_services;
1449
    grub_machine_mmap_iterate (grub_relocator_alloc_chunk_align_iter, &ctx);
1450 1451
#else
    (void) avoid_efi_boot_services;
1452
    grub_mmap_iterate (grub_relocator_alloc_chunk_align_iter, &ctx);
1453
#endif
1454
    if (!ctx.found)
1455 1456
      return grub_error (GRUB_ERR_BAD_OS, "couldn't find suitable memory target");
  }
1457
  while (1)
1458
    {
1459 1460
      struct grub_relocator_chunk *chunk2;
      for (chunk2 = rel->chunks; chunk2; chunk2 = chunk2->next)
1461 1462 1463 1464
	if ((chunk2->target <= ctx.chunk->target
	     && ctx.chunk->target < chunk2->target + chunk2->size)
	    || (ctx.chunk->target <= chunk2->target && chunk2->target
		< ctx.chunk->target + size))
1465
	  {
1466
	    if (preference == GRUB_RELOCATOR_PREFERENCE_HIGH)
1467
	      ctx.chunk->target = ALIGN_DOWN (chunk2->target, align);
1468
	    else
1469 1470
	      ctx.chunk->target = ALIGN_UP (chunk2->target + chunk2->size,
					    align);
1471 1472 1473 1474
	    break;
	  }
      if (!chunk2)
	break;
1475 1476
    }

1477 1478 1479
  grub_dprintf ("relocator", "relocators_size=%ld\n",
		(unsigned long) rel->relocators_size);

1480
  if (ctx.chunk->src < ctx.chunk->target)
1481
    rel->relocators_size += grub_relocator_backward_size;
1482
  if (ctx.chunk->src > ctx.chunk->target)
1483 1484
    rel->relocators_size += grub_relocator_forward_size;

1485 1486 1487
  grub_dprintf ("relocator", "relocators_size=%ld\n",
		(unsigned long) rel->relocators_size);

1488 1489 1490
  ctx.chunk->size = size;
  ctx.chunk->next = rel->chunks;
  rel->chunks = ctx.chunk;
1491 1492
  grub_dprintf ("relocator", "cur = %p, next = %p\n", rel->chunks,
		rel->chunks->next);
1493 1494
  ctx.chunk->srcv = grub_map_memory (ctx.chunk->src, ctx.chunk->size);
  *out = ctx.chunk;
1495
#ifdef DEBUG_RELOCATOR
1496
  grub_memset (ctx.chunk->srcv, 0xfa, ctx.chunk->size);
1497
  grub_mm_check ();
1498
#endif
1499 1500 1501 1502 1503 1504 1505
  return GRUB_ERR_NONE;
}

void
grub_relocator_unload (struct grub_relocator *rel)
{
  struct grub_relocator_chunk *chunk, *next;
1506 1507
  if (!rel)
    return;
1508 1509
  for (chunk = rel->chunks; chunk; chunk = next)
    {
1510 1511
      unsigned i;
      for (i = 0; i < chunk->nsubchunks; i++) 
1512
	free_subchunk (&chunk->subchunks[i]);
1513
      grub_unmap_memory (chunk->srcv, chunk->size);
1514
      next = chunk->next;
1515
      grub_free (chunk->subchunks);
1516 1517
      grub_free (chunk);
    }
1518
  grub_free (rel);
1519 1520 1521
}

grub_err_t
1522
grub_relocator_prepare_relocs (struct grub_relocator *rel, grub_addr_t addr,
1523
			       void **relstart, grub_size_t *relsize)
1524
{
1525 1526
  grub_uint8_t *rels;
  grub_uint8_t *rels0;
1527 1528 1529
  struct grub_relocator_chunk *sorted;
  grub_size_t nchunks = 0;
  unsigned j;
1530
  struct grub_relocator_chunk movers_chunk;
1531

1532
  grub_dprintf ("relocator", "Preparing relocs (size=%ld)\n",
1533
		(unsigned long) rel->relocators_size);
1534 1535 1536

  if (!malloc_in_range (rel, 0, ~(grub_addr_t)0 - rel->relocators_size + 1,
			grub_relocator_align,
1537
			rel->relocators_size, &movers_chunk, 1, 1))
1538
    return grub_error (GRUB_ERR_OUT_OF_MEMORY, N_("out of memory"));
1539 1540
  movers_chunk.srcv = rels = rels0
    = grub_map_memory (movers_chunk.src, movers_chunk.size);
1541

1542 1543 1544
  if (relsize)
    *relsize = rel->relocators_size;

1545
  grub_dprintf ("relocator", "Relocs allocated at %p\n", movers_chunk.srcv);
1546 1547 1548 1549 1550
  
  {
    unsigned i;
    grub_size_t count[257];
    struct grub_relocator_chunk *from, *to, *tmp;
1551

1552 1553 1554 1555 1556 1557
    grub_memset (count, 0, sizeof (count));

    {
        struct grub_relocator_chunk *chunk;
	for (chunk = rel->chunks; chunk; chunk = chunk->next)
	  {
1558
	    grub_dprintf ("relocator", "chunk %p->%p, 0x%lx\n", 
1559
			  (void *) chunk->src, (void *) chunk->target,
1560
			  (unsigned long) chunk->size);
1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600
	    nchunks++;
	    count[(chunk->src & 0xff) + 1]++;
	  }
    }
    from = grub_malloc (nchunks * sizeof (sorted[0]));
    to = grub_malloc (nchunks * sizeof (sorted[0]));
    if (!from || !to)
      {
	grub_free (from);
	grub_free (to);
	return grub_errno;
      }

    for (j = 0; j < 256; j++)
      count[j+1] += count[j];

    {
      struct grub_relocator_chunk *chunk;
      for (chunk = rel->chunks; chunk; chunk = chunk->next)
	from[count[chunk->src & 0xff]++] = *chunk;
    }

    for (i = 1; i < GRUB_CPU_SIZEOF_VOID_P; i++)
      {
	grub_memset (count, 0, sizeof (count));
	for (j = 0; j < nchunks; j++)
	  count[((from[j].src >> (8 * i)) & 0xff) + 1]++;
	for (j = 0; j < 256; j++)
	  count[j+1] += count[j];
	for (j = 0; j < nchunks; j++)
	  to[count[(from[j].src >> (8 * i)) & 0xff]++] = from[j];
	tmp = to;
	to = from;
	from = tmp;
      }
    sorted = from;
    grub_free (to);
  }

  for (j = 0; j < nchunks; j++)
1601
    {
1602
      grub_dprintf ("relocator", "sorted chunk %p->%p, 0x%lx\n", 
1603
		    (void *) sorted[j].src, (void *) sorted[j].target,
1604
		    (unsigned long) sorted[j].size);
1605
      if (sorted[j].src < sorted[j].target)
1606 1607
	{
	  grub_cpu_relocator_backward ((void *) rels,
1608 1609 1610
				       sorted[j].srcv,
				       grub_map_memory (sorted[j].target,
							sorted[j].size),
1611
				       sorted[j].size);
1612 1613
	  rels += grub_relocator_backward_size;
	}
1614
      if (sorted[j].src > sorted[j].target)
1615 1616
	{
	  grub_cpu_relocator_forward ((void *) rels,
1617 1618 1619
				      sorted[j].srcv,
				      grub_map_memory (sorted[j].target,
						       sorted[j].size),
1620
				      sorted[j].size);
1621 1622
	  rels += grub_relocator_forward_size;
	}
1623
      if (sorted[j].src == sorted[j].target)
1624
	grub_arch_sync_caches (sorted[j].srcv, sorted[j].size);
1625
    }
1626
  grub_cpu_relocator_jumper ((void *) rels, (grub_addr_t) addr);
1627
  *relstart = rels0;
1628
  grub_free (sorted);
1629 1630
  return GRUB_ERR_NONE;
}
1631 1632

void
1633
grub_mm_check_real (const char *file, int line)
1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657
{
  grub_mm_region_t r;
  grub_mm_header_t p, pa;

  for (r = grub_mm_base; r; r = r->next)
    {
      pa = r->first;
      p = pa->next;
      if (p->magic == GRUB_MM_ALLOC_MAGIC)
	continue;
      do 
	{
	  if ((grub_addr_t) p < (grub_addr_t) (r + 1)
	      || (grub_addr_t) p >= (grub_addr_t) (r + 1) + r->size)
	    grub_fatal ("%s:%d: out of range pointer: %p\n", file, line, p);
	  if (p->magic != GRUB_MM_FREE_MAGIC)
	    grub_fatal ("%s:%d free magic broken at %p (0x%x)\n", file,
			line, p, p->magic);
	  pa = p;
	  p = pa->next;
	}
      while (pa != r->first);
    }
}