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*/
// A generic mark bitmap for concurrent marking. This is essentially a wrapper // around the BitMap class that is based on HeapWords, with one bit per (1 << _shifter) HeapWords. class MarkBitMap { protected:
MemRegion _covered; // The heap area covered by this bitmap.
constint _shifter; // Shift amount from heap index to bit index in the bitmap.
// Convert from bit offset to address.
HeapWord* offset_to_addr(size_t offset) const { return _covered.start() + (offset << _shifter);
} // Convert from address to bit offset.
size_t addr_to_offset(const HeapWord* addr) const { return pointer_delta(addr, _covered.start()) >> _shifter;
}
// Clear bitmap range void do_clear(MemRegion mr, bool large);
// Returns the amount of bytes on the heap between two marks in the bitmap. static size_t mark_distance();
public: static size_t compute_size(size_t heap_size); // Returns how many bytes (or bits) of the heap a single byte (or bit) of the // mark bitmap corresponds to. This is the same as the mark distance above. static size_t heap_map_factor() { return mark_distance();
}
// Initializes the underlying BitMap to cover the given area. void initialize(MemRegion heap, MemRegion storage);
// Read marks bool is_marked(oop obj) const; bool is_marked(HeapWord* addr) const {
assert(_covered.contains(addr), "Address " PTR_FORMAT " is outside underlying space from " PTR_FORMAT " to " PTR_FORMAT,
p2i(addr), p2i(_covered.start()), p2i(_covered.end())); return _bm.at(addr_to_offset(addr));
}
// Return the address corresponding to the next marked bit at or after // "addr", and before "limit", if "limit" is non-NULL. If there is no // such bit, returns "limit" if that is non-NULL, or else "endWord()". inline HeapWord* get_next_marked_addr(const HeapWord* addr,
HeapWord* limit) const;
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