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Introducing dynamically adjustable heap usage limit, so that GC tries to free heap space, when heap usage reached the limit.
JerryScript-DCO-1.0-Signed-off-by: Ruben Ayrapetyan r.ayrapetyan@samsung.com
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@ -55,6 +55,11 @@
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# define CONFIG_MEM_HEAP_AREA_SIZE (256 * 1024)
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#endif /* !CONFIG_MEM_HEAP_AREA_SIZE */
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/**
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* Desired limit of heap usage
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*/
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#define CONFIG_MEM_HEAP_DESIRED_LIMIT (CONFIG_MEM_HEAP_AREA_SIZE / 32)
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/**
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* Log2 of maximum possible offset in the heap
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*
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@ -139,6 +139,9 @@ typedef struct
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size_t heap_size; /**< heap space size */
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mem_block_header_t* first_block_p; /**< first block of the heap */
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mem_block_header_t* last_block_p; /**< last block of the heap */
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size_t allocated_bytes; /**< total size of allocated heap space */
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size_t limit; /**< current limit of heap usage, that is upon being reached,
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* causes call of "try give memory back" callbacks */
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} mem_heap_state_t;
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/**
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@ -382,6 +385,7 @@ mem_heap_init (uint8_t *heap_start, /**< first address of heap space */
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mem_heap.heap_start = heap_start;
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mem_heap.heap_size = heap_size;
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mem_heap.limit = CONFIG_MEM_HEAP_DESIRED_LIMIT;
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VALGRIND_NOACCESS_SPACE(heap_start, heap_size);
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@ -510,6 +514,18 @@ void* mem_heap_alloc_block_internal (size_t size_in_bytes, /**< size
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return NULL;
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}
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mem_heap.allocated_bytes += size_in_bytes;
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JERRY_ASSERT (mem_heap.allocated_bytes <= mem_heap.heap_size);
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if (mem_heap.allocated_bytes >= mem_heap.limit)
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{
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mem_heap.limit = JERRY_MIN (mem_heap.heap_size,
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JERRY_MAX (mem_heap.limit + CONFIG_MEM_HEAP_DESIRED_LIMIT,
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mem_heap.allocated_bytes));
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JERRY_ASSERT (mem_heap.limit >= mem_heap.allocated_bytes);
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}
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/* appropriate block found, allocating space */
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size_t new_block_size_in_chunks = mem_get_block_chunks_count_from_data_size (size_in_bytes);
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size_t found_block_size_in_chunks = mem_get_block_chunks_count (block_p);
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@ -625,6 +641,11 @@ mem_heap_alloc_block (size_t size_in_bytes, /**< size of region to a
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}
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else
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{
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if (mem_heap.allocated_bytes >= mem_heap.limit)
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{
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mem_run_try_to_give_memory_back_callbacks (MEM_TRY_GIVE_MEMORY_BACK_SEVERITY_LOW);
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}
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void *data_space_p = mem_heap_alloc_block_internal (size_in_bytes, alloc_term);
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if (likely (data_space_p != NULL))
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@ -673,6 +694,23 @@ mem_heap_free_block (void *ptr) /**< pointer to beginning of data space of the b
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mem_block_header_t *prev_block_p = mem_get_next_block_by_direction (block_p, MEM_DIRECTION_PREV);
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mem_block_header_t *next_block_p = mem_get_next_block_by_direction (block_p, MEM_DIRECTION_NEXT);
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JERRY_ASSERT (mem_heap.limit >= mem_heap.allocated_bytes);
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size_t bytes = block_p->allocated_bytes;
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JERRY_ASSERT (mem_heap.allocated_bytes >= bytes);
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mem_heap.allocated_bytes -= bytes;
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if (mem_heap.allocated_bytes * 3 <= mem_heap.limit)
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{
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mem_heap.limit /= 2;
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}
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else if (mem_heap.allocated_bytes + CONFIG_MEM_HEAP_DESIRED_LIMIT <= mem_heap.limit)
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{
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mem_heap.limit -= CONFIG_MEM_HEAP_DESIRED_LIMIT;
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}
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JERRY_ASSERT (mem_heap.limit >= mem_heap.allocated_bytes);
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MEM_HEAP_STAT_FREE_BLOCK (block_p);
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VALGRIND_NOACCESS_SPACE(uint8_ptr, block_p->allocated_bytes);
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@ -927,6 +965,7 @@ mem_check_heap (void)
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bool is_last_block_was_met = false;
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size_t chunk_sizes_sum = 0;
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size_t allocated_sum = 0;
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for (mem_block_header_t *block_p = mem_heap.first_block_p, *next_block_p;
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block_p != NULL;
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@ -938,6 +977,11 @@ mem_check_heap (void)
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|| block_p->magic_num == MEM_MAGIC_NUM_OF_ALLOCATED_BLOCK);
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chunk_sizes_sum += mem_get_block_chunks_count (block_p);
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if (block_p->magic_num == MEM_MAGIC_NUM_OF_ALLOCATED_BLOCK)
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{
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allocated_sum += block_p->allocated_bytes;
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}
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next_block_p = mem_get_next_block_by_direction (block_p, MEM_DIRECTION_NEXT);
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if (block_p == mem_heap.last_block_p)
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@ -955,6 +999,7 @@ mem_check_heap (void)
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}
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JERRY_ASSERT(chunk_sizes_sum * MEM_HEAP_CHUNK_SIZE == mem_heap.heap_size);
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JERRY_ASSERT(allocated_sum == mem_heap.allocated_bytes);
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JERRY_ASSERT(is_last_block_was_met);
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bool is_first_block_was_met = false;
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