forked from Minki/linux
mm: fix boundary checking in free_bootmem_core
With numa enabled, some callers could have a range of memory on one node but try to free that on other node. This can cause some pages to be freed wrongly. For example: when we try to allocate 128g boot ram early for gart/swiotlb, and free that range later so gart/swiotlb can get some range afterwards. With this patch, we don't need to care which node holds the range, just loop to call free_bootmem_node for all online nodes. This patch makes free_bootmem_core() more robust by trimming the sidx and eidx according the ram range that the node has. And make the free_bootmem_core handle this out of range case. We could use bdata_list to make sure the range can be freed for sure. So next time, we don't need to loop online nodes and could use free_bootmem directly. Signed-off-by: Yinghai Lu <yhlu.kernel@gmail.com> Cc: Andi Kleen <ak@suse.de> Cc: Yasunori Goto <y-goto@jp.fujitsu.com> Cc: KAMEZAWA Hiroyuki <kamezawa.hiroyu@jp.fujitsu.com> Acked-by: Ingo Molnar <mingo@elte.hu> Tested-by: Ingo Molnar <mingo@elte.hu> Cc: Christoph Lameter <clameter@sgi.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
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parent
2875fb65f8
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5a982cbc7b
25
mm/bootmem.c
25
mm/bootmem.c
@ -125,6 +125,7 @@ static int __init reserve_bootmem_core(bootmem_data_t *bdata,
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BUG_ON(!size);
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BUG_ON(PFN_DOWN(addr) >= bdata->node_low_pfn);
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BUG_ON(PFN_UP(addr + size) > bdata->node_low_pfn);
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BUG_ON(addr < bdata->node_boot_start);
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sidx = PFN_DOWN(addr - bdata->node_boot_start);
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eidx = PFN_UP(addr + size - bdata->node_boot_start);
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@ -156,21 +157,31 @@ static void __init free_bootmem_core(bootmem_data_t *bdata, unsigned long addr,
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unsigned long sidx, eidx;
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unsigned long i;
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BUG_ON(!size);
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/* out range */
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if (addr + size < bdata->node_boot_start ||
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PFN_DOWN(addr) > bdata->node_low_pfn)
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return;
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/*
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* round down end of usable mem, partially free pages are
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* considered reserved.
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*/
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BUG_ON(!size);
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BUG_ON(PFN_DOWN(addr + size) > bdata->node_low_pfn);
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if (addr < bdata->last_success)
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if (addr >= bdata->node_boot_start && addr < bdata->last_success)
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bdata->last_success = addr;
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/*
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* Round up the beginning of the address.
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* Round up to index to the range.
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*/
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sidx = PFN_UP(addr) - PFN_DOWN(bdata->node_boot_start);
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if (PFN_UP(addr) > PFN_DOWN(bdata->node_boot_start))
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sidx = PFN_UP(addr) - PFN_DOWN(bdata->node_boot_start);
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else
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sidx = 0;
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eidx = PFN_DOWN(addr + size - bdata->node_boot_start);
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if (eidx > bdata->node_low_pfn - PFN_DOWN(bdata->node_boot_start))
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eidx = bdata->node_low_pfn - PFN_DOWN(bdata->node_boot_start);
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for (i = sidx; i < eidx; i++) {
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if (unlikely(!test_and_clear_bit(i, bdata->node_bootmem_map)))
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@ -421,7 +432,9 @@ int __init reserve_bootmem(unsigned long addr, unsigned long size,
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void __init free_bootmem(unsigned long addr, unsigned long size)
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{
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free_bootmem_core(NODE_DATA(0)->bdata, addr, size);
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bootmem_data_t *bdata;
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list_for_each_entry(bdata, &bdata_list, list)
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free_bootmem_core(bdata, addr, size);
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}
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unsigned long __init free_all_bootmem(void)
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