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@@ -23,6 +23,129 @@
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* P2M_PER_PAGE depends on the architecture, as a mfn is always
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* unsigned long (8 bytes on 64-bit, 4 bytes on 32), leading to
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* 512 and 1024 entries respectively.
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+ *
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+ * In short, these structures contain the Machine Frame Number (MFN) of the PFN.
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+ *
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+ * However not all entries are filled with MFNs. Specifically for all other
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+ * leaf entries, or for the top root, or middle one, for which there is a void
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+ * entry, we assume it is "missing". So (for example)
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+ * pfn_to_mfn(0x90909090)=INVALID_P2M_ENTRY.
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+ *
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+ * We also have the possibility of setting 1-1 mappings on certain regions, so
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+ * that:
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+ * pfn_to_mfn(0xc0000)=0xc0000
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+ *
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+ * The benefit of this is, that we can assume for non-RAM regions (think
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+ * PCI BARs, or ACPI spaces), we can create mappings easily b/c we
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+ * get the PFN value to match the MFN.
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+ *
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+ * For this to work efficiently we have one new page p2m_identity and
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+ * allocate (via reserved_brk) any other pages we need to cover the sides
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+ * (1GB or 4MB boundary violations). All entries in p2m_identity are set to
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+ * INVALID_P2M_ENTRY type (Xen toolstack only recognizes that and MFNs,
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+ * no other fancy value).
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+ *
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+ * On lookup we spot that the entry points to p2m_identity and return the
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+ * identity value instead of dereferencing and returning INVALID_P2M_ENTRY.
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+ * If the entry points to an allocated page, we just proceed as before and
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+ * return the PFN. If the PFN has IDENTITY_FRAME_BIT set we unmask that in
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+ * appropriate functions (pfn_to_mfn).
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+ *
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+ * The reason for having the IDENTITY_FRAME_BIT instead of just returning the
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+ * PFN is that we could find ourselves where pfn_to_mfn(pfn)==pfn for a
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+ * non-identity pfn. To protect ourselves against we elect to set (and get) the
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+ * IDENTITY_FRAME_BIT on all identity mapped PFNs.
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+ *
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+ * This simplistic diagram is used to explain the more subtle piece of code.
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+ * There is also a digram of the P2M at the end that can help.
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+ * Imagine your E820 looking as so:
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+ *
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+ * 1GB 2GB
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+ * /-------------------+---------\/----\ /----------\ /---+-----\
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+ * | System RAM | Sys RAM ||ACPI| | reserved | | Sys RAM |
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+ * \-------------------+---------/\----/ \----------/ \---+-----/
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+ * ^- 1029MB ^- 2001MB
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+ *
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+ * [1029MB = 263424 (0x40500), 2001MB = 512256 (0x7D100),
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+ * 2048MB = 524288 (0x80000)]
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+ *
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+ * And dom0_mem=max:3GB,1GB is passed in to the guest, meaning memory past 1GB
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+ * is actually not present (would have to kick the balloon driver to put it in).
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+ *
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+ * When we are told to set the PFNs for identity mapping (see patch: "xen/setup:
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+ * Set identity mapping for non-RAM E820 and E820 gaps.") we pass in the start
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+ * of the PFN and the end PFN (263424 and 512256 respectively). The first step
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+ * is to reserve_brk a top leaf page if the p2m[1] is missing. The top leaf page
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+ * covers 512^2 of page estate (1GB) and in case the start or end PFN is not
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+ * aligned on 512^2*PAGE_SIZE (1GB) we loop on aligned 1GB PFNs from start pfn
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+ * to end pfn. We reserve_brk top leaf pages if they are missing (means they
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+ * point to p2m_mid_missing).
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+ *
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+ * With the E820 example above, 263424 is not 1GB aligned so we allocate a
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+ * reserve_brk page which will cover the PFNs estate from 0x40000 to 0x80000.
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+ * Each entry in the allocate page is "missing" (points to p2m_missing).
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+ *
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+ * Next stage is to determine if we need to do a more granular boundary check
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+ * on the 4MB (or 2MB depending on architecture) off the start and end pfn's.
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+ * We check if the start pfn and end pfn violate that boundary check, and if
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+ * so reserve_brk a middle (p2m[x][y]) leaf page. This way we have a much finer
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+ * granularity of setting which PFNs are missing and which ones are identity.
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+ * In our example 263424 and 512256 both fail the check so we reserve_brk two
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+ * pages. Populate them with INVALID_P2M_ENTRY (so they both have "missing"
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+ * values) and assign them to p2m[1][2] and p2m[1][488] respectively.
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+ *
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+ * At this point we would at minimum reserve_brk one page, but could be up to
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+ * three. Each call to set_phys_range_identity has at maximum a three page
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+ * cost. If we were to query the P2M at this stage, all those entries from
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+ * start PFN through end PFN (so 1029MB -> 2001MB) would return
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+ * INVALID_P2M_ENTRY ("missing").
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+ *
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+ * The next step is to walk from the start pfn to the end pfn setting
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+ * the IDENTITY_FRAME_BIT on each PFN. This is done in set_phys_range_identity.
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+ * If we find that the middle leaf is pointing to p2m_missing we can swap it
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+ * over to p2m_identity - this way covering 4MB (or 2MB) PFN space. At this
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+ * point we do not need to worry about boundary aligment (so no need to
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+ * reserve_brk a middle page, figure out which PFNs are "missing" and which
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+ * ones are identity), as that has been done earlier. If we find that the
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+ * middle leaf is not occupied by p2m_identity or p2m_missing, we dereference
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+ * that page (which covers 512 PFNs) and set the appropriate PFN with
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+ * IDENTITY_FRAME_BIT. In our example 263424 and 512256 end up there, and we
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+ * set from p2m[1][2][256->511] and p2m[1][488][0->256] with
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+ * IDENTITY_FRAME_BIT set.
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+ *
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+ * All other regions that are void (or not filled) either point to p2m_missing
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+ * (considered missing) or have the default value of INVALID_P2M_ENTRY (also
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+ * considered missing). In our case, p2m[1][2][0->255] and p2m[1][488][257->511]
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+ * contain the INVALID_P2M_ENTRY value and are considered "missing."
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+ *
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+ * This is what the p2m ends up looking (for the E820 above) with this
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+ * fabulous drawing:
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+ *
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+ * p2m /--------------\
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+ * /-----\ | &mfn_list[0],| /-----------------\
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+ * | 0 |------>| &mfn_list[1],| /---------------\ | ~0, ~0, .. |
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+ * |-----| | ..., ~0, ~0 | | ~0, ~0, [x]---+----->| IDENTITY [@256] |
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+ * | 1 |---\ \--------------/ | [p2m_identity]+\ | IDENTITY [@257] |
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+ * |-----| \ | [p2m_identity]+\\ | .... |
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+ * | 2 |--\ \-------------------->| ... | \\ \----------------/
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+ * |-----| \ \---------------/ \\
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+ * | 3 |\ \ \\ p2m_identity
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+ * |-----| \ \-------------------->/---------------\ /-----------------\
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+ * | .. +->+ | [p2m_identity]+-->| ~0, ~0, ~0, ... |
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+ * \-----/ / | [p2m_identity]+-->| ..., ~0 |
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+ * / /---------------\ | .... | \-----------------/
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+ * / | IDENTITY[@0] | /-+-[x], ~0, ~0.. |
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+ * / | IDENTITY[@256]|<----/ \---------------/
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+ * / | ~0, ~0, .... |
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+ * | \---------------/
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+ * |
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+ * p2m_missing p2m_missing
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+ * /------------------\ /------------\
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+ * | [p2m_mid_missing]+---->| ~0, ~0, ~0 |
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+ * | [p2m_mid_missing]+---->| ..., ~0 |
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+ * \------------------/ \------------/
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+ *
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+ * where ~0 is INVALID_P2M_ENTRY. IDENTITY is (PFN | IDENTITY_BIT)
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*/
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#include <linux/init.h>
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@@ -30,6 +153,7 @@
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#include <linux/list.h>
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#include <linux/hash.h>
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#include <linux/sched.h>
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+#include <linux/seq_file.h>
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#include <asm/cache.h>
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#include <asm/setup.h>
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@@ -59,9 +183,15 @@ static RESERVE_BRK_ARRAY(unsigned long **, p2m_top, P2M_TOP_PER_PAGE);
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static RESERVE_BRK_ARRAY(unsigned long, p2m_top_mfn, P2M_TOP_PER_PAGE);
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static RESERVE_BRK_ARRAY(unsigned long *, p2m_top_mfn_p, P2M_TOP_PER_PAGE);
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+static RESERVE_BRK_ARRAY(unsigned long, p2m_identity, P2M_PER_PAGE);
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+
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RESERVE_BRK(p2m_mid, PAGE_SIZE * (MAX_DOMAIN_PAGES / (P2M_PER_PAGE * P2M_MID_PER_PAGE)));
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RESERVE_BRK(p2m_mid_mfn, PAGE_SIZE * (MAX_DOMAIN_PAGES / (P2M_PER_PAGE * P2M_MID_PER_PAGE)));
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+/* We might hit two boundary violations at the start and end, at max each
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+ * boundary violation will require three middle nodes. */
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+RESERVE_BRK(p2m_mid_identity, PAGE_SIZE * 2 * 3);
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+
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static inline unsigned p2m_top_index(unsigned long pfn)
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{
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BUG_ON(pfn >= MAX_P2M_PFN);
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@@ -221,6 +351,9 @@ void __init xen_build_dynamic_phys_to_machine(void)
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p2m_top = extend_brk(PAGE_SIZE, PAGE_SIZE);
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p2m_top_init(p2m_top);
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+ p2m_identity = extend_brk(PAGE_SIZE, PAGE_SIZE);
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+ p2m_init(p2m_identity);
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+
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/*
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* The domain builder gives us a pre-constructed p2m array in
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* mfn_list for all the pages initially given to us, so we just
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@@ -266,6 +399,14 @@ unsigned long get_phys_to_machine(unsigned long pfn)
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mididx = p2m_mid_index(pfn);
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idx = p2m_index(pfn);
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+ /*
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+ * The INVALID_P2M_ENTRY is filled in both p2m_*identity
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+ * and in p2m_*missing, so returning the INVALID_P2M_ENTRY
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+ * would be wrong.
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+ */
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+ if (p2m_top[topidx][mididx] == p2m_identity)
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+ return IDENTITY_FRAME(pfn);
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+
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return p2m_top[topidx][mididx][idx];
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}
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EXPORT_SYMBOL_GPL(get_phys_to_machine);
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@@ -335,9 +476,11 @@ static bool alloc_p2m(unsigned long pfn)
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p2m_top_mfn_p[topidx] = mid_mfn;
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}
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- if (p2m_top[topidx][mididx] == p2m_missing) {
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+ if (p2m_top[topidx][mididx] == p2m_identity ||
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+ p2m_top[topidx][mididx] == p2m_missing) {
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/* p2m leaf page is missing */
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unsigned long *p2m;
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+ unsigned long *p2m_orig = p2m_top[topidx][mididx];
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p2m = alloc_p2m_page();
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if (!p2m)
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@@ -345,7 +488,7 @@ static bool alloc_p2m(unsigned long pfn)
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p2m_init(p2m);
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- if (cmpxchg(&mid[mididx], p2m_missing, p2m) != p2m_missing)
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+ if (cmpxchg(&mid[mididx], p2m_orig, p2m) != p2m_orig)
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free_p2m_page(p2m);
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else
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mid_mfn[mididx] = virt_to_mfn(p2m);
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@@ -354,11 +497,91 @@ static bool alloc_p2m(unsigned long pfn)
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return true;
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}
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+bool __early_alloc_p2m(unsigned long pfn)
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+{
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+ unsigned topidx, mididx, idx;
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+
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+ topidx = p2m_top_index(pfn);
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+ mididx = p2m_mid_index(pfn);
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+ idx = p2m_index(pfn);
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+
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+ /* Pfff.. No boundary cross-over, lets get out. */
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+ if (!idx)
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+ return false;
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+
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+ WARN(p2m_top[topidx][mididx] == p2m_identity,
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+ "P2M[%d][%d] == IDENTITY, should be MISSING (or alloced)!\n",
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+ topidx, mididx);
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+
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+ /*
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+ * Could be done by xen_build_dynamic_phys_to_machine..
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+ */
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+ if (p2m_top[topidx][mididx] != p2m_missing)
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+ return false;
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+
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+ /* Boundary cross-over for the edges: */
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+ if (idx) {
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+ unsigned long *p2m = extend_brk(PAGE_SIZE, PAGE_SIZE);
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+
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+ p2m_init(p2m);
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+
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+ p2m_top[topidx][mididx] = p2m;
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+
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+ }
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+ return idx != 0;
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+}
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+unsigned long set_phys_range_identity(unsigned long pfn_s,
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+ unsigned long pfn_e)
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+{
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+ unsigned long pfn;
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+
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+ if (unlikely(pfn_s >= MAX_P2M_PFN || pfn_e >= MAX_P2M_PFN))
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+ return 0;
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+
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+ if (unlikely(xen_feature(XENFEAT_auto_translated_physmap)))
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+ return pfn_e - pfn_s;
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+
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+ if (pfn_s > pfn_e)
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+ return 0;
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+
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+ for (pfn = (pfn_s & ~(P2M_MID_PER_PAGE * P2M_PER_PAGE - 1));
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+ pfn < ALIGN(pfn_e, (P2M_MID_PER_PAGE * P2M_PER_PAGE));
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+ pfn += P2M_MID_PER_PAGE * P2M_PER_PAGE)
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+ {
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+ unsigned topidx = p2m_top_index(pfn);
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+ if (p2m_top[topidx] == p2m_mid_missing) {
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+ unsigned long **mid = extend_brk(PAGE_SIZE, PAGE_SIZE);
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+
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+ p2m_mid_init(mid);
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+
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+ p2m_top[topidx] = mid;
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+ }
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+ }
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+
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+ __early_alloc_p2m(pfn_s);
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+ __early_alloc_p2m(pfn_e);
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+
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+ for (pfn = pfn_s; pfn < pfn_e; pfn++)
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+ if (!__set_phys_to_machine(pfn, IDENTITY_FRAME(pfn)))
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+ break;
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+
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+ if (!WARN((pfn - pfn_s) != (pfn_e - pfn_s),
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+ "Identity mapping failed. We are %ld short of 1-1 mappings!\n",
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+ (pfn_e - pfn_s) - (pfn - pfn_s)))
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+ printk(KERN_DEBUG "1-1 mapping on %lx->%lx\n", pfn_s, pfn);
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+
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+ return pfn - pfn_s;
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+}
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+
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/* Try to install p2m mapping; fail if intermediate bits missing */
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bool __set_phys_to_machine(unsigned long pfn, unsigned long mfn)
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{
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unsigned topidx, mididx, idx;
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+ if (unlikely(xen_feature(XENFEAT_auto_translated_physmap))) {
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+ BUG_ON(pfn != mfn && mfn != INVALID_P2M_ENTRY);
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+ return true;
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+ }
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if (unlikely(pfn >= MAX_P2M_PFN)) {
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BUG_ON(mfn != INVALID_P2M_ENTRY);
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return true;
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@@ -368,6 +591,21 @@ bool __set_phys_to_machine(unsigned long pfn, unsigned long mfn)
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mididx = p2m_mid_index(pfn);
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idx = p2m_index(pfn);
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+ /* For sparse holes were the p2m leaf has real PFN along with
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+ * PCI holes, stick in the PFN as the MFN value.
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+ */
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+ if (mfn != INVALID_P2M_ENTRY && (mfn & IDENTITY_FRAME_BIT)) {
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+ if (p2m_top[topidx][mididx] == p2m_identity)
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+ return true;
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+
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+ /* Swap over from MISSING to IDENTITY if needed. */
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+ if (p2m_top[topidx][mididx] == p2m_missing) {
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+ WARN_ON(cmpxchg(&p2m_top[topidx][mididx], p2m_missing,
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+ p2m_identity) != p2m_missing);
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+ return true;
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+ }
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+ }
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+
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if (p2m_top[topidx][mididx] == p2m_missing)
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return mfn == INVALID_P2M_ENTRY;
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@@ -378,11 +616,6 @@ bool __set_phys_to_machine(unsigned long pfn, unsigned long mfn)
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bool set_phys_to_machine(unsigned long pfn, unsigned long mfn)
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{
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- if (unlikely(xen_feature(XENFEAT_auto_translated_physmap))) {
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- BUG_ON(pfn != mfn && mfn != INVALID_P2M_ENTRY);
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- return true;
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- }
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-
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if (unlikely(!__set_phys_to_machine(pfn, mfn))) {
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if (!alloc_p2m(pfn))
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return false;
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@@ -520,3 +753,80 @@ unsigned long m2p_find_override_pfn(unsigned long mfn, unsigned long pfn)
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return ret;
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}
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EXPORT_SYMBOL_GPL(m2p_find_override_pfn);
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+
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+#ifdef CONFIG_XEN_DEBUG_FS
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+
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+int p2m_dump_show(struct seq_file *m, void *v)
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+{
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+ static const char * const level_name[] = { "top", "middle",
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+ "entry", "abnormal" };
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+ static const char * const type_name[] = { "identity", "missing",
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+ "pfn", "abnormal"};
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+#define TYPE_IDENTITY 0
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+#define TYPE_MISSING 1
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+#define TYPE_PFN 2
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+#define TYPE_UNKNOWN 3
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+ unsigned long pfn, prev_pfn_type = 0, prev_pfn_level = 0;
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+ unsigned int uninitialized_var(prev_level);
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+ unsigned int uninitialized_var(prev_type);
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+
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+ if (!p2m_top)
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+ return 0;
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+
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+ for (pfn = 0; pfn < MAX_DOMAIN_PAGES; pfn++) {
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+ unsigned topidx = p2m_top_index(pfn);
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+ unsigned mididx = p2m_mid_index(pfn);
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+ unsigned idx = p2m_index(pfn);
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+ unsigned lvl, type;
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+
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+ lvl = 4;
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+ type = TYPE_UNKNOWN;
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+ if (p2m_top[topidx] == p2m_mid_missing) {
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+ lvl = 0; type = TYPE_MISSING;
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+ } else if (p2m_top[topidx] == NULL) {
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+ lvl = 0; type = TYPE_UNKNOWN;
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+ } else if (p2m_top[topidx][mididx] == NULL) {
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+ lvl = 1; type = TYPE_UNKNOWN;
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+ } else if (p2m_top[topidx][mididx] == p2m_identity) {
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+ lvl = 1; type = TYPE_IDENTITY;
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+ } else if (p2m_top[topidx][mididx] == p2m_missing) {
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+ lvl = 1; type = TYPE_MISSING;
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+ } else if (p2m_top[topidx][mididx][idx] == 0) {
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+ lvl = 2; type = TYPE_UNKNOWN;
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+ } else if (p2m_top[topidx][mididx][idx] == IDENTITY_FRAME(pfn)) {
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|
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+ lvl = 2; type = TYPE_IDENTITY;
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+ } else if (p2m_top[topidx][mididx][idx] == INVALID_P2M_ENTRY) {
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+ lvl = 2; type = TYPE_MISSING;
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+ } else if (p2m_top[topidx][mididx][idx] == pfn) {
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+ lvl = 2; type = TYPE_PFN;
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+ } else if (p2m_top[topidx][mididx][idx] != pfn) {
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+ lvl = 2; type = TYPE_PFN;
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|
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+ }
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+ if (pfn == 0) {
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|
+ prev_level = lvl;
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+ prev_type = type;
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|
|
+ }
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+ if (pfn == MAX_DOMAIN_PAGES-1) {
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|
+ lvl = 3;
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|
|
+ type = TYPE_UNKNOWN;
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|
|
+ }
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|
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+ if (prev_type != type) {
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|
|
+ seq_printf(m, " [0x%lx->0x%lx] %s\n",
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|
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+ prev_pfn_type, pfn, type_name[prev_type]);
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|
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+ prev_pfn_type = pfn;
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|
|
+ prev_type = type;
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|
|
+ }
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|
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+ if (prev_level != lvl) {
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|
|
+ seq_printf(m, " [0x%lx->0x%lx] level %s\n",
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|
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+ prev_pfn_level, pfn, level_name[prev_level]);
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|
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+ prev_pfn_level = pfn;
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|
|
+ prev_level = lvl;
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|
|
+ }
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|
|
+ }
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|
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+ return 0;
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|
|
+#undef TYPE_IDENTITY
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|
|
+#undef TYPE_MISSING
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|
|
+#undef TYPE_PFN
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|
|
+#undef TYPE_UNKNOWN
|
|
|
+}
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|
|
+#endif
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