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[Feature #18364] Add GC.stat_heap to get stats for memory heaps
GC.stat_heap will return stats for memory heaps. This is used for the Variable Width Allocation feature.
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122
gc.c
122
gc.c
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@ -10643,6 +10643,128 @@ rb_gc_stat(VALUE key)
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}
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}
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enum gc_stat_heap_sym {
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gc_stat_heap_sym_slot_size,
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gc_stat_heap_sym_heap_allocatable_pages,
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gc_stat_heap_sym_heap_eden_pages,
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gc_stat_heap_sym_heap_eden_slots,
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gc_stat_heap_sym_heap_tomb_pages,
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gc_stat_heap_sym_heap_tomb_slots,
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gc_stat_heap_sym_last
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};
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static VALUE gc_stat_heap_symbols[gc_stat_heap_sym_last];
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static void
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setup_gc_stat_heap_symbols(void)
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{
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if (gc_stat_heap_symbols[0] == 0) {
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#define S(s) gc_stat_heap_symbols[gc_stat_heap_sym_##s] = ID2SYM(rb_intern_const(#s))
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S(slot_size);
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S(heap_allocatable_pages);
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S(heap_eden_pages);
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S(heap_eden_slots);
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S(heap_tomb_pages);
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S(heap_tomb_slots);
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#undef S
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}
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}
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static size_t
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gc_stat_heap_internal(int size_pool_idx, VALUE hash_or_sym)
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{
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rb_objspace_t *objspace = &rb_objspace;
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VALUE hash = Qnil, key = Qnil;
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setup_gc_stat_heap_symbols();
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if (RB_TYPE_P(hash_or_sym, T_HASH)) {
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hash = hash_or_sym;
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}
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else if (SYMBOL_P(hash_or_sym)) {
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key = hash_or_sym;
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}
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else {
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rb_raise(rb_eTypeError, "non-hash or symbol argument");
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}
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if (size_pool_idx < 0 || size_pool_idx >= SIZE_POOL_COUNT) {
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rb_raise(rb_eArgError, "size pool index out of range");
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}
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rb_size_pool_t *size_pool = &size_pools[size_pool_idx];
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#define SET(name, attr) \
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if (key == gc_stat_heap_symbols[gc_stat_heap_sym_##name]) \
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return attr; \
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else if (hash != Qnil) \
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rb_hash_aset(hash, gc_stat_heap_symbols[gc_stat_heap_sym_##name], SIZET2NUM(attr));
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SET(slot_size, size_pool->slot_size);
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SET(heap_allocatable_pages, size_pool->allocatable_pages);
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SET(heap_eden_pages, SIZE_POOL_EDEN_HEAP(size_pool)->total_pages);
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SET(heap_eden_slots, SIZE_POOL_EDEN_HEAP(size_pool)->total_slots);
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SET(heap_tomb_pages, SIZE_POOL_TOMB_HEAP(size_pool)->total_pages);
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SET(heap_tomb_slots, SIZE_POOL_TOMB_HEAP(size_pool)->total_slots);
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#undef SET
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if (!NIL_P(key)) { /* matched key should return above */
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rb_raise(rb_eArgError, "unknown key: %"PRIsVALUE, rb_sym2str(key));
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}
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return 0;
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}
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static VALUE
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gc_stat_heap(rb_execution_context_t *ec, VALUE self, VALUE heap_name, VALUE arg)
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{
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if (NIL_P(heap_name)) {
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if (NIL_P(arg)) {
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arg = rb_hash_new();
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}
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else if (RB_TYPE_P(arg, T_HASH)) {
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// ok
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}
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else {
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rb_raise(rb_eTypeError, "non-hash given");
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}
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for (int i = 0; i < SIZE_POOL_COUNT; i++) {
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VALUE hash = rb_hash_aref(arg, INT2FIX(i));
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if (NIL_P(hash)) {
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hash = rb_hash_new();
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rb_hash_aset(arg, INT2FIX(i), hash);
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}
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gc_stat_heap_internal(i, hash);
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}
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}
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else if (FIXNUM_P(heap_name)) {
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int size_pool_idx = FIX2INT(heap_name);
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if (NIL_P(arg)) {
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arg = rb_hash_new();
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}
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else if (SYMBOL_P(arg)) {
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size_t value = gc_stat_heap_internal(size_pool_idx, arg);
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return SIZET2NUM(value);
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}
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else if (RB_TYPE_P(arg, T_HASH)) {
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// ok
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}
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else {
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rb_raise(rb_eTypeError, "non-hash or symbol given");
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}
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gc_stat_heap_internal(size_pool_idx, arg);
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}
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else {
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rb_raise(rb_eTypeError, "heap_name must be nil or an Integer");
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}
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return arg;
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}
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static VALUE
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gc_stress_get(rb_execution_context_t *ec, VALUE self)
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{
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34
gc.rb
34
gc.rb
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@ -205,6 +205,40 @@ module GC
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Primitive.gc_stat hash_or_key
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end
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# call-seq:
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# GC.stat_heap -> Hash
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# GC.stat_heap(nil, hash) -> Hash
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# GC.stat_heap(heap_name) -> Hash
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# GC.stat_heap(heap_name, hash) -> Hash
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# GC.stat_heap(heap_name, :key) -> Numeric
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#
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# Returns information for memory pools in the GC.
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#
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# If the first optional argument, +heap_name+, is passed in and not +nil+, it
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# returns a +Hash+ containing information about the particular memory pool.
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# Otherwise, it will return a +Hash+ with memory pool names as keys and
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# a +Hash+ containing information about the memory pool as values.
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#
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# If the second optional argument, +hash_or_key+, is given as +Hash+, it will
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# be overwritten and returned. This is intended to avoid the probe effect.
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#
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# If both optional arguments are passed in and the second optional argument is
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# a symbol, it will return a +Numeric+ of the value for the particular memory
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# pool.
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#
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# On CRuby, +heap_name+ is of the type +Integer+ but may be of type +String+
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# on other implementations.
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#
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# The contents of the hash are implementation specific and may change in
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# the future without notice.
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#
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# If the optional argument, hash, is given, it is overwritten and returned.
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#
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# This method is only expected to work on CRuby.
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def self.stat_heap heap_name = nil, hash_or_key = nil
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Primitive.gc_stat_heap heap_name, hash_or_key
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end
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# call-seq:
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# GC.latest_gc_info -> {:gc_by=>:newobj}
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# GC.latest_gc_info(hash) -> hash
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@ -139,6 +139,72 @@ class TestGc < Test::Unit::TestCase
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end
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end
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def test_stat_heap
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skip 'stress' if GC.stress
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stat_heap = {}
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stat = {}
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# Initialize to prevent GC in future calls
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GC.stat_heap(0, stat_heap)
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GC.stat(stat)
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GC::INTERNAL_CONSTANTS[:SIZE_POOL_COUNT].times do |i|
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GC.stat_heap(i, stat_heap)
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GC.stat(stat)
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assert_equal GC::INTERNAL_CONSTANTS[:RVALUE_SIZE] * (2**i), stat_heap[:slot_size]
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assert_operator stat_heap[:heap_allocatable_pages], :<=, stat[:heap_allocatable_pages]
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assert_operator stat_heap[:heap_eden_pages], :<=, stat[:heap_eden_pages]
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assert_operator stat_heap[:heap_eden_slots], :>=, 0
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assert_operator stat_heap[:heap_tomb_pages], :<=, stat[:heap_tomb_pages]
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assert_operator stat_heap[:heap_tomb_slots], :>=, 0
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end
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GC.stat_heap(0, stat_heap)
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assert_equal stat_heap[:slot_size], GC.stat_heap(0, :slot_size)
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assert_equal stat_heap[:slot_size], GC.stat_heap(0)[:slot_size]
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assert_raise(ArgumentError) { GC.stat_heap(-1) }
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assert_raise(ArgumentError) { GC.stat_heap(GC::INTERNAL_CONSTANTS[:SIZE_POOL_COUNT]) }
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end
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def test_stat_heap_all
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stat_heap_all = {}
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stat_heap = {}
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2.times do
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GC.stat_heap(0, stat_heap)
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GC.stat_heap(nil, stat_heap_all)
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end
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GC::INTERNAL_CONSTANTS[:SIZE_POOL_COUNT].times do |i|
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GC.stat_heap(i, stat_heap)
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assert_equal stat_heap, stat_heap_all[i]
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end
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assert_raise(TypeError) { GC.stat_heap(nil, :slot_size) }
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end
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def test_stat_heap_constraints
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skip 'stress' if GC.stress
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stat = GC.stat
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stat_heap = GC.stat_heap
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GC.stat(stat)
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GC.stat_heap(nil, stat_heap)
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stat_heap_sum = Hash.new(0)
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stat_heap.values.each do |hash|
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hash.each { |k, v| stat_heap_sum[k] += v }
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end
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assert_equal stat[:heap_allocatable_pages], stat_heap_sum[:heap_allocatable_pages]
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assert_equal stat[:heap_eden_pages], stat_heap_sum[:heap_eden_pages]
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assert_equal stat[:heap_tomb_pages], stat_heap_sum[:heap_tomb_pages]
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assert_equal stat[:heap_available_slots], stat_heap_sum[:heap_eden_slots] + stat_heap_sum[:heap_tomb_slots]
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end
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def test_latest_gc_info
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omit 'stress' if GC.stress
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