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mm/memory-failure: improve memory failure action_result messages
Added two explicit MF_MSG messages describing failure in get_hwpoison_page. Attemped to document the definition of various action names, and made a few adjustment to the action_result() calls. Link: https://lkml.kernel.org/r/20240524215306.2705454-4-jane.chu@oracle.com Signed-off-by: Jane Chu <jane.chu@oracle.com> Reviewed-by: Oscar Salvador <osalvador@suse.de> Acked-by: Miaohe Lin <linmiaohe@huawei.com> Cc: Naoya Horiguchi <nao.horiguchi@gmail.com> Cc: Oscar Salvador <oalvador@suse.de> Signed-off-by: Andrew Morton <akpm@linux-foundation.org>
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6680252629
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3 changed files with 36 additions and 5 deletions
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@ -4096,6 +4096,7 @@ enum mf_action_page_type {
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MF_MSG_DIFFERENT_COMPOUND,
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MF_MSG_DIFFERENT_COMPOUND,
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MF_MSG_HUGE,
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MF_MSG_HUGE,
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MF_MSG_FREE_HUGE,
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MF_MSG_FREE_HUGE,
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MF_MSG_GET_HWPOISON,
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MF_MSG_UNMAP_FAILED,
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MF_MSG_UNMAP_FAILED,
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MF_MSG_DIRTY_SWAPCACHE,
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MF_MSG_DIRTY_SWAPCACHE,
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MF_MSG_CLEAN_SWAPCACHE,
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MF_MSG_CLEAN_SWAPCACHE,
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@ -4109,6 +4110,7 @@ enum mf_action_page_type {
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MF_MSG_BUDDY,
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MF_MSG_BUDDY,
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MF_MSG_DAX,
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MF_MSG_DAX,
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MF_MSG_UNSPLIT_THP,
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MF_MSG_UNSPLIT_THP,
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MF_MSG_ALREADY_POISONED,
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MF_MSG_UNKNOWN,
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MF_MSG_UNKNOWN,
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};
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};
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@ -360,6 +360,7 @@ TRACE_EVENT(aer_event,
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EM ( MF_MSG_DIFFERENT_COMPOUND, "different compound page after locking" ) \
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EM ( MF_MSG_DIFFERENT_COMPOUND, "different compound page after locking" ) \
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EM ( MF_MSG_HUGE, "huge page" ) \
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EM ( MF_MSG_HUGE, "huge page" ) \
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EM ( MF_MSG_FREE_HUGE, "free huge page" ) \
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EM ( MF_MSG_FREE_HUGE, "free huge page" ) \
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EM ( MF_MSG_GET_HWPOISON, "get hwpoison page" ) \
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EM ( MF_MSG_UNMAP_FAILED, "unmapping failed page" ) \
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EM ( MF_MSG_UNMAP_FAILED, "unmapping failed page" ) \
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EM ( MF_MSG_DIRTY_SWAPCACHE, "dirty swapcache page" ) \
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EM ( MF_MSG_DIRTY_SWAPCACHE, "dirty swapcache page" ) \
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EM ( MF_MSG_CLEAN_SWAPCACHE, "clean swapcache page" ) \
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EM ( MF_MSG_CLEAN_SWAPCACHE, "clean swapcache page" ) \
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@ -373,6 +374,7 @@ TRACE_EVENT(aer_event,
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EM ( MF_MSG_BUDDY, "free buddy page" ) \
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EM ( MF_MSG_BUDDY, "free buddy page" ) \
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EM ( MF_MSG_DAX, "dax page" ) \
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EM ( MF_MSG_DAX, "dax page" ) \
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EM ( MF_MSG_UNSPLIT_THP, "unsplit thp" ) \
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EM ( MF_MSG_UNSPLIT_THP, "unsplit thp" ) \
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EM ( MF_MSG_ALREADY_POISONED, "already poisoned" ) \
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EMe ( MF_MSG_UNKNOWN, "unknown page" )
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EMe ( MF_MSG_UNKNOWN, "unknown page" )
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/*
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/*
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@ -879,6 +879,28 @@ static int kill_accessing_process(struct task_struct *p, unsigned long pfn,
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return ret > 0 ? -EHWPOISON : -EFAULT;
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return ret > 0 ? -EHWPOISON : -EFAULT;
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}
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}
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/*
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* MF_IGNORED - The m-f() handler marks the page as PG_hwpoisoned'ed.
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* But it could not do more to isolate the page from being accessed again,
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* nor does it kill the process. This is extremely rare and one of the
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* potential causes is that the page state has been changed due to
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* underlying race condition. This is the most severe outcomes.
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*
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* MF_FAILED - The m-f() handler marks the page as PG_hwpoisoned'ed.
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* It should have killed the process, but it can't isolate the page,
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* due to conditions such as extra pin, unmap failure, etc. Accessing
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* the page again may trigger another MCE and the process will be killed
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* by the m-f() handler immediately.
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*
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* MF_DELAYED - The m-f() handler marks the page as PG_hwpoisoned'ed.
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* The page is unmapped, and is removed from the LRU or file mapping.
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* An attempt to access the page again will trigger page fault and the
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* PF handler will kill the process.
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*
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* MF_RECOVERED - The m-f() handler marks the page as PG_hwpoisoned'ed.
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* The page has been completely isolated, that is, unmapped, taken out of
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* the buddy system, or hole-punnched out of the file mapping.
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*/
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static const char *action_name[] = {
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static const char *action_name[] = {
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[MF_IGNORED] = "Ignored",
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[MF_IGNORED] = "Ignored",
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[MF_FAILED] = "Failed",
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[MF_FAILED] = "Failed",
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@ -893,6 +915,7 @@ static const char * const action_page_types[] = {
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[MF_MSG_DIFFERENT_COMPOUND] = "different compound page after locking",
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[MF_MSG_DIFFERENT_COMPOUND] = "different compound page after locking",
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[MF_MSG_HUGE] = "huge page",
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[MF_MSG_HUGE] = "huge page",
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[MF_MSG_FREE_HUGE] = "free huge page",
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[MF_MSG_FREE_HUGE] = "free huge page",
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[MF_MSG_GET_HWPOISON] = "get hwpoison page",
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[MF_MSG_UNMAP_FAILED] = "unmapping failed page",
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[MF_MSG_UNMAP_FAILED] = "unmapping failed page",
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[MF_MSG_DIRTY_SWAPCACHE] = "dirty swapcache page",
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[MF_MSG_DIRTY_SWAPCACHE] = "dirty swapcache page",
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[MF_MSG_CLEAN_SWAPCACHE] = "clean swapcache page",
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[MF_MSG_CLEAN_SWAPCACHE] = "clean swapcache page",
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@ -906,6 +929,7 @@ static const char * const action_page_types[] = {
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[MF_MSG_BUDDY] = "free buddy page",
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[MF_MSG_BUDDY] = "free buddy page",
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[MF_MSG_DAX] = "dax page",
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[MF_MSG_DAX] = "dax page",
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[MF_MSG_UNSPLIT_THP] = "unsplit thp",
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[MF_MSG_UNSPLIT_THP] = "unsplit thp",
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[MF_MSG_ALREADY_POISONED] = "already poisoned",
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[MF_MSG_UNKNOWN] = "unknown page",
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[MF_MSG_UNKNOWN] = "unknown page",
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};
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};
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@ -1013,12 +1037,13 @@ static int me_kernel(struct page_state *ps, struct page *p)
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/*
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/*
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* Page in unknown state. Do nothing.
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* Page in unknown state. Do nothing.
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* This is a catch-all in case we fail to make sense of the page state.
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*/
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*/
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static int me_unknown(struct page_state *ps, struct page *p)
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static int me_unknown(struct page_state *ps, struct page *p)
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{
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{
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pr_err("%#lx: Unknown page state\n", page_to_pfn(p));
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pr_err("%#lx: Unknown page state\n", page_to_pfn(p));
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unlock_page(p);
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unlock_page(p);
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return MF_FAILED;
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return MF_IGNORED;
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}
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}
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/*
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/*
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@ -2055,6 +2080,7 @@ static int try_memory_failure_hugetlb(unsigned long pfn, int flags, int *hugetlb
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if (flags & MF_ACTION_REQUIRED) {
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if (flags & MF_ACTION_REQUIRED) {
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folio = page_folio(p);
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folio = page_folio(p);
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res = kill_accessing_process(current, folio_pfn(folio), flags);
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res = kill_accessing_process(current, folio_pfn(folio), flags);
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action_result(pfn, MF_MSG_ALREADY_POISONED, MF_FAILED);
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}
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}
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return res;
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return res;
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} else if (res == -EBUSY) {
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} else if (res == -EBUSY) {
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@ -2062,7 +2088,7 @@ static int try_memory_failure_hugetlb(unsigned long pfn, int flags, int *hugetlb
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flags |= MF_NO_RETRY;
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flags |= MF_NO_RETRY;
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goto retry;
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goto retry;
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}
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}
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return action_result(pfn, MF_MSG_UNKNOWN, MF_IGNORED);
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return action_result(pfn, MF_MSG_GET_HWPOISON, MF_IGNORED);
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}
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}
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folio = page_folio(p);
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folio = page_folio(p);
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@ -2097,7 +2123,7 @@ static int try_memory_failure_hugetlb(unsigned long pfn, int flags, int *hugetlb
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if (!hwpoison_user_mappings(folio, p, pfn, flags)) {
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if (!hwpoison_user_mappings(folio, p, pfn, flags)) {
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folio_unlock(folio);
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folio_unlock(folio);
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return action_result(pfn, MF_MSG_UNMAP_FAILED, MF_IGNORED);
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return action_result(pfn, MF_MSG_UNMAP_FAILED, MF_FAILED);
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}
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}
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return identify_page_state(pfn, p, page_flags);
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return identify_page_state(pfn, p, page_flags);
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@ -2231,6 +2257,7 @@ int memory_failure(unsigned long pfn, int flags)
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res = kill_accessing_process(current, pfn, flags);
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res = kill_accessing_process(current, pfn, flags);
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if (flags & MF_COUNT_INCREASED)
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if (flags & MF_COUNT_INCREASED)
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put_page(p);
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put_page(p);
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action_result(pfn, MF_MSG_ALREADY_POISONED, MF_FAILED);
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goto unlock_mutex;
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goto unlock_mutex;
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}
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}
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@ -2267,7 +2294,7 @@ int memory_failure(unsigned long pfn, int flags)
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}
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}
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goto unlock_mutex;
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goto unlock_mutex;
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} else if (res < 0) {
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} else if (res < 0) {
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res = action_result(pfn, MF_MSG_UNKNOWN, MF_IGNORED);
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res = action_result(pfn, MF_MSG_GET_HWPOISON, MF_IGNORED);
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goto unlock_mutex;
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goto unlock_mutex;
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}
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}
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}
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}
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@ -2363,7 +2390,7 @@ int memory_failure(unsigned long pfn, int flags)
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* Abort on fail: __filemap_remove_folio() assumes unmapped page.
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* Abort on fail: __filemap_remove_folio() assumes unmapped page.
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*/
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*/
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if (!hwpoison_user_mappings(folio, p, pfn, flags)) {
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if (!hwpoison_user_mappings(folio, p, pfn, flags)) {
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res = action_result(pfn, MF_MSG_UNMAP_FAILED, MF_IGNORED);
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res = action_result(pfn, MF_MSG_UNMAP_FAILED, MF_FAILED);
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goto unlock_page;
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goto unlock_page;
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}
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}
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