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@@ -523,6 +523,34 @@ static void process_info(struct hv_dynmem_device *dm, struct dm_info_msg *msg)
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}
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}
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+unsigned long compute_balloon_floor(void)
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+{
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+ unsigned long min_pages;
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+#define MB2PAGES(mb) ((mb) << (20 - PAGE_SHIFT))
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+ /* Simple continuous piecewiese linear function:
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+ * max MiB -> min MiB gradient
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+ * 0 0
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+ * 16 16
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+ * 32 24
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+ * 128 72 (1/2)
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+ * 512 168 (1/4)
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+ * 2048 360 (1/8)
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+ * 8192 552 (1/32)
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+ * 32768 1320
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+ * 131072 4392
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+ */
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+ if (totalram_pages < MB2PAGES(128))
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+ min_pages = MB2PAGES(8) + (totalram_pages >> 1);
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+ else if (totalram_pages < MB2PAGES(512))
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+ min_pages = MB2PAGES(40) + (totalram_pages >> 2);
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+ else if (totalram_pages < MB2PAGES(2048))
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+ min_pages = MB2PAGES(104) + (totalram_pages >> 3);
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+ else
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+ min_pages = MB2PAGES(296) + (totalram_pages >> 5);
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+#undef MB2PAGES
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+ return min_pages;
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+}
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+
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/*
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* Post our status as it relates memory pressure to the
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* host. Host expects the guests to post this status
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@@ -552,9 +580,14 @@ static void post_status(struct hv_dynmem_device *dm)
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* The host expects the guest to report free memory.
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* Further, the host expects the pressure information to
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* include the ballooned out pages.
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+ * For a given amount of memory that we are managing, we
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+ * need to compute a floor below which we should not balloon.
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+ * Compute this and add it to the pressure report.
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*/
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status.num_avail = val.freeram;
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- status.num_committed = vm_memory_committed() + dm->num_pages_ballooned;
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+ status.num_committed = vm_memory_committed() +
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+ dm->num_pages_ballooned +
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+ compute_balloon_floor();
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vmbus_sendpacket(dm->dev->channel, &status,
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sizeof(struct dm_status),
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