hotspot/src/share/vm/gc_implementation/g1/g1BiasedArray.hpp
author tschatzl
Wed, 25 Sep 2013 13:25:24 +0200
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7163191: G1: introduce a "heap spanning table" abstraction Summary: Add G1BiasedArray<T> that is an array where each element represents a fixed-sized subdivision of the heap. Use this abstraction to refactor the HeapRegionSeq class. Reviewed-by: brutisso
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/*
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 * Copyright (c) 2013, Oracle and/or its affiliates. All rights reserved.
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 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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 *
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 * This code is free software; you can redistribute it and/or modify it
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 * under the terms of the GNU General Public License version 2 only, as
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 * published by the Free Software Foundation.
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 *
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 * This code is distributed in the hope that it will be useful, but WITHOUT
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 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
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 * version 2 for more details (a copy is included in the LICENSE file that
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 * accompanied this code).
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 *
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 * You should have received a copy of the GNU General Public License version
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 * 2 along with this work; if not, write to the Free Software Foundation,
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 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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 *
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 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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 * or visit www.oracle.com if you need additional information or have any
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 * questions.
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 *
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 */
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#ifndef SHARE_VM_GC_IMPLEMENTATION_G1_G1BIASEDARRAY_HPP
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#define SHARE_VM_GC_IMPLEMENTATION_G1_G1BIASEDARRAY_HPP
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#include "utilities/debug.hpp"
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#include "memory/allocation.inline.hpp"
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// Implements the common base functionality for arrays that contain provisions
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// for accessing its elements using a biased index.
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// The element type is defined by the instantiating the template.
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class G1BiasedMappedArrayBase VALUE_OBJ_CLASS_SPEC {
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  friend class VMStructs;
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public:
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  typedef size_t idx_t;
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protected:
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  address _base;          // the real base address
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  size_t _length;         // the length of the array
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  address _biased_base;   // base address biased by "bias" elements
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  size_t _bias;           // the bias, i.e. the offset biased_base is located to the right in elements
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  uint _shift_by;         // the amount of bits to shift right when mapping to an index of the array.
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protected:
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  G1BiasedMappedArrayBase() : _base(NULL), _length(0), _biased_base(NULL),
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    _bias(0), _shift_by(0) { }
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  // Allocate a new array, generic version.
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  static address create_new_base_array(size_t length, size_t elem_size) {
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    assert(length > 0, "just checking");
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    assert(elem_size > 0, "just checking");
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    return NEW_C_HEAP_ARRAY(u_char, length * elem_size, mtGC);
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  }
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  // Initialize the members of this class. The biased start address of this array
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  // is the bias (in elements) multiplied by the element size.
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  void initialize_base(address base, size_t length, size_t bias, size_t elem_size, uint shift_by) {
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    assert(base != NULL, "just checking");
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    assert(length > 0, "just checking");
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    assert(shift_by < sizeof(uintptr_t) * 8, err_msg("Shifting by %zd, larger than word size?", shift_by));
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    _base = base;
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    _length = length;
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    _biased_base = base - (bias * elem_size);
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    _bias = bias;
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    _shift_by = shift_by;
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  }
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  // Allocate and initialize this array to cover the heap addresses in the range
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  // of [bottom, end).
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  void initialize(HeapWord* bottom, HeapWord* end, size_t target_elem_size_in_bytes, size_t mapping_granularity_in_bytes) {
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    assert(mapping_granularity_in_bytes > 0, "just checking");
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    assert(is_power_of_2(mapping_granularity_in_bytes),
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      err_msg("mapping granularity must be power of 2, is %zd", mapping_granularity_in_bytes));
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    assert((uintptr_t)bottom % mapping_granularity_in_bytes == 0,
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      err_msg("bottom mapping area address must be a multiple of mapping granularity %zd, is "PTR_FORMAT,
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        mapping_granularity_in_bytes, bottom));
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    assert((uintptr_t)end % mapping_granularity_in_bytes == 0,
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      err_msg("end mapping area address must be a multiple of mapping granularity %zd, is "PTR_FORMAT,
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        mapping_granularity_in_bytes, end));
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    size_t num_target_elems = (end - bottom) / (mapping_granularity_in_bytes / HeapWordSize);
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    idx_t bias = (uintptr_t)bottom / mapping_granularity_in_bytes;
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    address base = create_new_base_array(num_target_elems, target_elem_size_in_bytes);
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    initialize_base(base, num_target_elems, bias, target_elem_size_in_bytes, log2_intptr(mapping_granularity_in_bytes));
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  }
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  size_t bias() const { return _bias; }
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  uint shift_by() const { return _shift_by; }
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  void verify_index(idx_t index) const PRODUCT_RETURN;
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  void verify_biased_index(idx_t biased_index) const PRODUCT_RETURN;
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  void verify_biased_index_inclusive_end(idx_t biased_index) const PRODUCT_RETURN;
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public:
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   // Return the length of the array in elements.
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   size_t length() const { return _length; }
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};
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// Array that provides biased access and mapping from (valid) addresses in the
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// heap into this array.
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template<class T>
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class G1BiasedMappedArray : public G1BiasedMappedArrayBase {
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public:
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  typedef G1BiasedMappedArrayBase::idx_t idx_t;
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  T* base() const { return (T*)G1BiasedMappedArrayBase::_base; }
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  // Return the element of the given array at the given index. Assume
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  // the index is valid. This is a convenience method that does sanity
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  // checking on the index.
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  T get_by_index(idx_t index) const {
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    verify_index(index);
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    return this->base()[index];
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  }
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  // Set the element of the given array at the given index to the
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  // given value. Assume the index is valid. This is a convenience
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  // method that does sanity checking on the index.
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  void set_by_index(idx_t index, T value) {
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    verify_index(index);
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    this->base()[index] = value;
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  }
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  // The raw biased base pointer.
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  T* biased_base() const { return (T*)G1BiasedMappedArrayBase::_biased_base; }
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  // Return the element of the given array that covers the given word in the
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  // heap. Assumes the index is valid.
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  T get_by_address(HeapWord* value) const {
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    idx_t biased_index = ((uintptr_t)value) >> this->shift_by();
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    this->verify_biased_index(biased_index);
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    return biased_base()[biased_index];
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  }
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  // Set the value of the array entry that corresponds to the given array.
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  void set_by_address(HeapWord * address, T value) {
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    idx_t biased_index = ((uintptr_t)address) >> this->shift_by();
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    this->verify_biased_index(biased_index);
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    biased_base()[biased_index] = value;
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  }
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protected:
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  // Returns the address of the element the given address maps to
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  T* address_mapped_to(HeapWord* address) {
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    idx_t biased_index = ((uintptr_t)address) >> this->shift_by();
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    this->verify_biased_index_inclusive_end(biased_index);
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    return biased_base() + biased_index;
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  }
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public:
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  // Return the smallest address (inclusive) in the heap that this array covers.
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  HeapWord* bottom_address_mapped() const {
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    return (HeapWord*) ((uintptr_t)this->bias() << this->shift_by());
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  }
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  // Return the highest address (exclusive) in the heap that this array covers.
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  HeapWord* end_address_mapped() const {
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    return (HeapWord*) ((uintptr_t)(this->bias() + this->length()) << this->shift_by());
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  }
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protected:
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  virtual T default_value() const = 0;
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  // Set all elements of the given array to the given value.
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  void clear() {
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    T value = default_value();
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    for (idx_t i = 0; i < length(); i++) {
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      set_by_index(i, value);
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    }
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  }
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public:
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  G1BiasedMappedArray() {}
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  // Allocate and initialize this array to cover the heap addresses in the range
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  // of [bottom, end).
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  void initialize(HeapWord* bottom, HeapWord* end, size_t mapping_granularity) {
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    G1BiasedMappedArrayBase::initialize(bottom, end, sizeof(T), mapping_granularity);
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    this->clear();
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  }
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};
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#endif // SHARE_VM_GC_IMPLEMENTATION_G1_G1BIASEDARRAY_HPP