@@ -1382,11 +1382,11 @@ void asmlinkage __init noreturn __start_xen(void)
for ( i = 0; !efi_enabled(EFI_LOADER) && i < bi->nr_modules; i++ )
{
- if ( mod[i].mod_start & (PAGE_SIZE - 1) )
+ if ( bi->mods[i].mod->mod_start & (PAGE_SIZE - 1) )
panic("Bootloader didn't honor module alignment request\n");
- mod[i].mod_end -= mod[i].mod_start;
- mod[i].mod_start >>= PAGE_SHIFT;
- mod[i].reserved = 0;
+ bi->mods[i].mod->mod_end -= bi->mods[i].mod->mod_start;
+ bi->mods[i].mod->mod_start >>= PAGE_SHIFT;
+ bi->mods[i].mod->reserved = 0;
}
/*
@@ -1397,6 +1397,8 @@ void asmlinkage __init noreturn __start_xen(void)
if ( xen_phys_start )
{
+ struct boot_module *xen = &bi->mods[bi->nr_modules];
+
relocated = true;
/*
@@ -1404,8 +1406,8 @@ void asmlinkage __init noreturn __start_xen(void)
* respective reserve_e820_ram() invocation below. No need to
* query efi_boot_mem_unused() here, though.
*/
- mod[bi->nr_modules].mod_start = virt_to_mfn(_stext);
- mod[bi->nr_modules].mod_end = __2M_rwdata_end - _stext;
+ xen->mod->mod_start = virt_to_mfn(_stext);
+ xen->mod->mod_end = __2M_rwdata_end - _stext;
}
modules_headroom =
@@ -1490,15 +1492,17 @@ void asmlinkage __init noreturn __start_xen(void)
/* Is the region suitable for relocating the multiboot modules? */
for ( j = bi->nr_modules - 1; j >= 0; j-- )
{
+ struct boot_module *bm = &bi->mods[j];
+
/*
* 'headroom' is a guess for the decompressed size and
* decompressor overheads of mod[0] (the dom0 kernel). When we
* move mod[0], we incorporate this as extra space at the start.
*/
unsigned long headroom = j ? 0 : modules_headroom;
- unsigned long size = PAGE_ALIGN(headroom + mod[j].mod_end);
+ unsigned long size = PAGE_ALIGN(headroom + bm->mod->mod_end);
- if ( mod[j].reserved )
+ if ( bm->mod->reserved )
continue;
/* Don't overlap with other modules (or Xen itself). */
@@ -1510,14 +1514,13 @@ void asmlinkage __init noreturn __start_xen(void)
if ( s < end &&
(headroom ||
- ((end - size) >> PAGE_SHIFT) > mod[j].mod_start) )
+ ((end - size) >> PAGE_SHIFT) > bm->mod->mod_start) )
{
move_memory(end - size + headroom,
- (uint64_t)mod[j].mod_start << PAGE_SHIFT,
- mod[j].mod_end);
- mod[j].mod_start = (end - size) >> PAGE_SHIFT;
- mod[j].mod_end += headroom;
- mod[j].reserved = 1;
+ pfn_to_paddr(bm->mod->mod_start), bm->mod->mod_end);
+ bm->mod->mod_start = (end - size) >> PAGE_SHIFT;
+ bm->mod->mod_end += headroom;
+ bm->mod->reserved = 1;
}
}
@@ -1543,13 +1546,14 @@ void asmlinkage __init noreturn __start_xen(void)
#endif
}
- if ( modules_headroom && !mod->reserved )
+ if ( modules_headroom && !bi->mods[0].mod->reserved )
panic("Not enough memory to relocate the dom0 kernel image\n");
for ( i = 0; i < bi->nr_modules; ++i )
{
- uint64_t s = (uint64_t)mod[i].mod_start << PAGE_SHIFT;
+ const struct boot_module *bm = &bi->mods[i];
+ uint64_t s = pfn_to_paddr(bm->mod->mod_start);
- reserve_e820_ram(&boot_e820, s, s + PAGE_ALIGN(mod[i].mod_end));
+ reserve_e820_ram(&boot_e820, s, s + PAGE_ALIGN(bm->mod->mod_end));
}
if ( !xen_phys_start )
@@ -1627,8 +1631,8 @@ void asmlinkage __init noreturn __start_xen(void)
map_e = boot_e820.map[j].addr + boot_e820.map[j].size;
for ( j = 0; j < bi->nr_modules; ++j )
{
- uint64_t end = pfn_to_paddr(mod[j].mod_start) +
- mod[j].mod_end;
+ uint64_t end = pfn_to_paddr(bi->mods[j].mod->mod_start) +
+ bi->mods[j].mod->mod_end;
if ( map_e < end )
map_e = end;
@@ -1702,11 +1706,13 @@ void asmlinkage __init noreturn __start_xen(void)
for ( i = 0; i < bi->nr_modules; ++i )
{
- set_pdx_range(mod[i].mod_start,
- mod[i].mod_start + PFN_UP(mod[i].mod_end));
- map_pages_to_xen((unsigned long)mfn_to_virt(mod[i].mod_start),
- _mfn(mod[i].mod_start),
- PFN_UP(mod[i].mod_end), PAGE_HYPERVISOR);
+ const struct boot_module *bm = &bi->mods[i];
+
+ set_pdx_range(bm->mod->mod_start,
+ bm->mod->mod_start + PFN_UP(bm->mod->mod_end));
+ map_pages_to_xen((unsigned long)mfn_to_virt(bm->mod->mod_start),
+ _mfn(bm->mod->mod_start),
+ PFN_UP(bm->mod->mod_end), PAGE_HYPERVISOR);
}
#ifdef CONFIG_KEXEC
@@ -2095,8 +2101,9 @@ void asmlinkage __init noreturn __start_xen(void)
* We're going to setup domain0 using the module(s) that we stashed safely
* above our heap. The second module, if present, is an initrd ramdisk.
*/
- dom0 = create_dom0(mod, modules_headroom,
- initrdidx < bi->nr_modules ? mod + initrdidx : NULL,
+ dom0 = create_dom0(bi->mods[0].mod, modules_headroom,
+ initrdidx < bi->nr_modules ? bi->mods[initrdidx].mod
+ : NULL,
kextra, bi->loader);
if ( !dom0 )
panic("Could not set up DOM0 guest OS\n");