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memblock test: Add test to memblock_reserve() 129th region
Reserve 129th region in the memblock, and this will trigger the memblock_double_array() function, this needs valid memory regions. So using dummy_physical_memory_init() to allocate a valid memory region. At the same time, reserve 128 faked memory region, and make sure these reserved region not intersect with the valid memory region. So memblock_double_array() will choose the valid memory region, and it will success. Also need to restore the reserved.regions after memblock_double_array(), to make sure the subsequent tests can run as normal. Signed-off-by: Shaoqin Huang <shaoqin.huang@intel.com> Signed-off-by: Mike Rapoport <rppt@linux.ibm.com> Link: https://lore.kernel.org/r/20221011062128.49359-3-shaoqin.huang@intel.com
This commit is contained in:
committed by
Mike Rapoport
parent
085bdaa6eb
commit
5b27dd7968
@@ -892,6 +892,96 @@ static int memblock_reserve_near_max_check(void)
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return 0;
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}
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/*
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* A test that trying to reserve the 129th memory block.
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* Expect to trigger memblock_double_array() to double the
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* memblock.memory.max, find a new valid memory as
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* reserved.regions.
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*/
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static int memblock_reserve_many_check(void)
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{
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int i;
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void *orig_region;
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struct region r = {
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.base = SZ_16K,
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.size = SZ_16K,
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};
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phys_addr_t memory_base = SZ_128K;
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phys_addr_t new_reserved_regions_size;
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PREFIX_PUSH();
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reset_memblock_regions();
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memblock_allow_resize();
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/* Add a valid memory region used by double_array(). */
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dummy_physical_memory_init();
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memblock_add(dummy_physical_memory_base(), MEM_SIZE);
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for (i = 0; i < INIT_MEMBLOCK_REGIONS; i++) {
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/* Reserve some fakes memory region to fulfill the memblock. */
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memblock_reserve(memory_base, MEM_SIZE);
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ASSERT_EQ(memblock.reserved.cnt, i + 1);
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ASSERT_EQ(memblock.reserved.total_size, (i + 1) * MEM_SIZE);
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/* Keep the gap so these memory region will not be merged. */
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memory_base += MEM_SIZE * 2;
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}
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orig_region = memblock.reserved.regions;
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/* This reserve the 129 memory_region, and makes it double array. */
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memblock_reserve(memory_base, MEM_SIZE);
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/*
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* This is the memory region size used by the doubled reserved.regions,
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* and it has been reserved due to it has been used. The size is used to
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* calculate the total_size that the memblock.reserved have now.
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*/
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new_reserved_regions_size = PAGE_ALIGN((INIT_MEMBLOCK_REGIONS * 2) *
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sizeof(struct memblock_region));
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/*
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* The double_array() will find a free memory region as the new
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* reserved.regions, and the used memory region will be reserved, so
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* there will be one more region exist in the reserved memblock. And the
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* one more reserved region's size is new_reserved_regions_size.
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*/
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ASSERT_EQ(memblock.reserved.cnt, INIT_MEMBLOCK_REGIONS + 2);
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ASSERT_EQ(memblock.reserved.total_size, (INIT_MEMBLOCK_REGIONS + 1) * MEM_SIZE +
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new_reserved_regions_size);
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ASSERT_EQ(memblock.reserved.max, INIT_MEMBLOCK_REGIONS * 2);
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/*
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* Now memblock_double_array() works fine. Let's check after the
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* double_array(), the memblock_reserve() still works as normal.
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*/
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memblock_reserve(r.base, r.size);
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ASSERT_EQ(memblock.reserved.regions[0].base, r.base);
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ASSERT_EQ(memblock.reserved.regions[0].size, r.size);
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ASSERT_EQ(memblock.reserved.cnt, INIT_MEMBLOCK_REGIONS + 3);
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ASSERT_EQ(memblock.reserved.total_size, (INIT_MEMBLOCK_REGIONS + 1) * MEM_SIZE +
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new_reserved_regions_size +
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r.size);
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ASSERT_EQ(memblock.reserved.max, INIT_MEMBLOCK_REGIONS * 2);
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dummy_physical_memory_cleanup();
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/*
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* The current reserved.regions is occupying a range of memory that
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* allocated from dummy_physical_memory_init(). After free the memory,
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* we must not use it. So restore the origin memory region to make sure
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* the tests can run as normal and not affected by the double array.
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*/
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memblock.reserved.regions = orig_region;
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memblock.reserved.cnt = INIT_MEMBLOCK_RESERVED_REGIONS;
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test_pass_pop();
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return 0;
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}
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static int memblock_reserve_checks(void)
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{
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prefix_reset();
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@@ -906,6 +996,7 @@ static int memblock_reserve_checks(void)
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memblock_reserve_twice_check();
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memblock_reserve_between_check();
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memblock_reserve_near_max_check();
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memblock_reserve_many_check();
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prefix_pop();
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