src/share/vm/gc_implementation/parallelScavenge/parMarkBitMap.cpp

Fri, 16 Mar 2012 16:14:04 +0100

author
nloodin
date
Fri, 16 Mar 2012 16:14:04 +0100
changeset 3665
8a729074feae
parent 3156
f08d439fab8c
child 3900
d2a62e0f25eb
permissions
-rw-r--r--

7154517: Build error in hotspot-gc without precompiled headers
Reviewed-by: jcoomes, brutisso

duke@435 1 /*
stefank@2314 2 * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved.
duke@435 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@435 4 *
duke@435 5 * This code is free software; you can redistribute it and/or modify it
duke@435 6 * under the terms of the GNU General Public License version 2 only, as
duke@435 7 * published by the Free Software Foundation.
duke@435 8 *
duke@435 9 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@435 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@435 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@435 12 * version 2 for more details (a copy is included in the LICENSE file that
duke@435 13 * accompanied this code).
duke@435 14 *
duke@435 15 * You should have received a copy of the GNU General Public License version
duke@435 16 * 2 along with this work; if not, write to the Free Software Foundation,
duke@435 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@435 18 *
trims@1907 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
trims@1907 20 * or visit www.oracle.com if you need additional information or have any
trims@1907 21 * questions.
duke@435 22 *
duke@435 23 */
duke@435 24
stefank@2314 25 #include "precompiled.hpp"
stefank@2314 26 #include "gc_implementation/parallelScavenge/parMarkBitMap.hpp"
stefank@2314 27 #include "gc_implementation/parallelScavenge/parMarkBitMap.inline.hpp"
stefank@2314 28 #include "gc_implementation/parallelScavenge/psParallelCompact.hpp"
stefank@2314 29 #include "oops/oop.inline.hpp"
stefank@2314 30 #include "runtime/os.hpp"
stefank@2314 31 #include "utilities/bitMap.inline.hpp"
stefank@2314 32 #ifdef TARGET_OS_FAMILY_linux
stefank@2314 33 # include "os_linux.inline.hpp"
stefank@2314 34 #endif
stefank@2314 35 #ifdef TARGET_OS_FAMILY_solaris
stefank@2314 36 # include "os_solaris.inline.hpp"
stefank@2314 37 #endif
stefank@2314 38 #ifdef TARGET_OS_FAMILY_windows
stefank@2314 39 # include "os_windows.inline.hpp"
stefank@2314 40 #endif
never@3156 41 #ifdef TARGET_OS_FAMILY_bsd
never@3156 42 # include "os_bsd.inline.hpp"
never@3156 43 #endif
duke@435 44
duke@435 45 bool
duke@435 46 ParMarkBitMap::initialize(MemRegion covered_region)
duke@435 47 {
duke@435 48 const idx_t bits = bits_required(covered_region);
duke@435 49 // The bits will be divided evenly between two bitmaps; each of them should be
duke@435 50 // an integral number of words.
duke@435 51 assert(bits % (BitsPerWord * 2) == 0, "region size unaligned");
duke@435 52
duke@435 53 const size_t words = bits / BitsPerWord;
duke@435 54 const size_t raw_bytes = words * sizeof(idx_t);
duke@435 55 const size_t page_sz = os::page_size_for_region(raw_bytes, raw_bytes, 10);
duke@435 56 const size_t granularity = os::vm_allocation_granularity();
duke@435 57 const size_t bytes = align_size_up(raw_bytes, MAX2(page_sz, granularity));
duke@435 58
duke@435 59 const size_t rs_align = page_sz == (size_t) os::vm_page_size() ? 0 :
duke@435 60 MAX2(page_sz, granularity);
jcoomes@514 61 ReservedSpace rs(bytes, rs_align, rs_align > 0);
duke@435 62 os::trace_page_sizes("par bitmap", raw_bytes, raw_bytes, page_sz,
duke@435 63 rs.base(), rs.size());
duke@435 64 _virtual_space = new PSVirtualSpace(rs, page_sz);
duke@435 65 if (_virtual_space != NULL && _virtual_space->expand_by(bytes)) {
duke@435 66 _region_start = covered_region.start();
duke@435 67 _region_size = covered_region.word_size();
duke@435 68 idx_t* map = (idx_t*)_virtual_space->reserved_low_addr();
duke@435 69 _beg_bits.set_map(map);
duke@435 70 _beg_bits.set_size(bits / 2);
duke@435 71 _end_bits.set_map(map + words / 2);
duke@435 72 _end_bits.set_size(bits / 2);
duke@435 73 return true;
duke@435 74 }
duke@435 75
duke@435 76 _region_start = 0;
duke@435 77 _region_size = 0;
duke@435 78 if (_virtual_space != NULL) {
duke@435 79 delete _virtual_space;
duke@435 80 _virtual_space = NULL;
coleenp@672 81 // Release memory reserved in the space.
coleenp@672 82 rs.release();
duke@435 83 }
duke@435 84 return false;
duke@435 85 }
duke@435 86
duke@435 87 #ifdef ASSERT
duke@435 88 extern size_t mark_bitmap_count;
duke@435 89 extern size_t mark_bitmap_size;
duke@435 90 #endif // #ifdef ASSERT
duke@435 91
duke@435 92 bool
duke@435 93 ParMarkBitMap::mark_obj(HeapWord* addr, size_t size)
duke@435 94 {
duke@435 95 const idx_t beg_bit = addr_to_bit(addr);
duke@435 96 if (_beg_bits.par_set_bit(beg_bit)) {
duke@435 97 const idx_t end_bit = addr_to_bit(addr + size - 1);
duke@435 98 bool end_bit_ok = _end_bits.par_set_bit(end_bit);
duke@435 99 assert(end_bit_ok, "concurrency problem");
duke@435 100 DEBUG_ONLY(Atomic::inc_ptr(&mark_bitmap_count));
duke@435 101 DEBUG_ONLY(Atomic::add_ptr(size, &mark_bitmap_size));
duke@435 102 return true;
duke@435 103 }
duke@435 104 return false;
duke@435 105 }
duke@435 106
duke@435 107 size_t
duke@435 108 ParMarkBitMap::live_words_in_range(HeapWord* beg_addr, HeapWord* end_addr) const
duke@435 109 {
duke@435 110 assert(beg_addr <= end_addr, "bad range");
duke@435 111
duke@435 112 idx_t live_bits = 0;
duke@435 113
duke@435 114 // The bitmap routines require the right boundary to be word-aligned.
duke@435 115 const idx_t end_bit = addr_to_bit(end_addr);
duke@435 116 const idx_t range_end = BitMap::word_align_up(end_bit);
duke@435 117
duke@435 118 idx_t beg_bit = find_obj_beg(addr_to_bit(beg_addr), range_end);
duke@435 119 while (beg_bit < end_bit) {
duke@435 120 idx_t tmp_end = find_obj_end(beg_bit, range_end);
duke@435 121 if (tmp_end < end_bit) {
duke@435 122 live_bits += tmp_end - beg_bit + 1;
duke@435 123 beg_bit = find_obj_beg(tmp_end + 1, range_end);
duke@435 124 } else {
duke@435 125 live_bits += end_bit - beg_bit; // No + 1 here; end_bit is not counted.
duke@435 126 return bits_to_words(live_bits);
duke@435 127 }
duke@435 128 }
duke@435 129 return bits_to_words(live_bits);
duke@435 130 }
duke@435 131
duke@435 132 size_t ParMarkBitMap::live_words_in_range(HeapWord* beg_addr, oop end_obj) const
duke@435 133 {
duke@435 134 assert(beg_addr <= (HeapWord*)end_obj, "bad range");
duke@435 135 assert(is_marked(end_obj), "end_obj must be live");
duke@435 136
duke@435 137 idx_t live_bits = 0;
duke@435 138
duke@435 139 // The bitmap routines require the right boundary to be word-aligned.
duke@435 140 const idx_t end_bit = addr_to_bit((HeapWord*)end_obj);
duke@435 141 const idx_t range_end = BitMap::word_align_up(end_bit);
duke@435 142
duke@435 143 idx_t beg_bit = find_obj_beg(addr_to_bit(beg_addr), range_end);
duke@435 144 while (beg_bit < end_bit) {
duke@435 145 idx_t tmp_end = find_obj_end(beg_bit, range_end);
duke@435 146 assert(tmp_end < end_bit, "missing end bit");
duke@435 147 live_bits += tmp_end - beg_bit + 1;
duke@435 148 beg_bit = find_obj_beg(tmp_end + 1, range_end);
duke@435 149 }
duke@435 150 return bits_to_words(live_bits);
duke@435 151 }
duke@435 152
duke@435 153 ParMarkBitMap::IterationStatus
duke@435 154 ParMarkBitMap::iterate(ParMarkBitMapClosure* live_closure,
duke@435 155 idx_t range_beg, idx_t range_end) const
duke@435 156 {
duke@435 157 DEBUG_ONLY(verify_bit(range_beg);)
duke@435 158 DEBUG_ONLY(verify_bit(range_end);)
duke@435 159 assert(range_beg <= range_end, "live range invalid");
duke@435 160
duke@435 161 // The bitmap routines require the right boundary to be word-aligned.
duke@435 162 const idx_t search_end = BitMap::word_align_up(range_end);
duke@435 163
duke@435 164 idx_t cur_beg = find_obj_beg(range_beg, search_end);
duke@435 165 while (cur_beg < range_end) {
duke@435 166 const idx_t cur_end = find_obj_end(cur_beg, search_end);
duke@435 167 if (cur_end >= range_end) {
duke@435 168 // The obj ends outside the range.
duke@435 169 live_closure->set_source(bit_to_addr(cur_beg));
duke@435 170 return incomplete;
duke@435 171 }
duke@435 172
duke@435 173 const size_t size = obj_size(cur_beg, cur_end);
duke@435 174 IterationStatus status = live_closure->do_addr(bit_to_addr(cur_beg), size);
duke@435 175 if (status != incomplete) {
duke@435 176 assert(status == would_overflow || status == full, "sanity");
duke@435 177 return status;
duke@435 178 }
duke@435 179
duke@435 180 // Successfully processed the object; look for the next object.
duke@435 181 cur_beg = find_obj_beg(cur_end + 1, search_end);
duke@435 182 }
duke@435 183
duke@435 184 live_closure->set_source(bit_to_addr(range_end));
duke@435 185 return complete;
duke@435 186 }
duke@435 187
duke@435 188 ParMarkBitMap::IterationStatus
duke@435 189 ParMarkBitMap::iterate(ParMarkBitMapClosure* live_closure,
duke@435 190 ParMarkBitMapClosure* dead_closure,
duke@435 191 idx_t range_beg, idx_t range_end,
duke@435 192 idx_t dead_range_end) const
duke@435 193 {
duke@435 194 DEBUG_ONLY(verify_bit(range_beg);)
duke@435 195 DEBUG_ONLY(verify_bit(range_end);)
duke@435 196 DEBUG_ONLY(verify_bit(dead_range_end);)
duke@435 197 assert(range_beg <= range_end, "live range invalid");
duke@435 198 assert(range_end <= dead_range_end, "dead range invalid");
duke@435 199
duke@435 200 // The bitmap routines require the right boundary to be word-aligned.
duke@435 201 const idx_t live_search_end = BitMap::word_align_up(range_end);
duke@435 202 const idx_t dead_search_end = BitMap::word_align_up(dead_range_end);
duke@435 203
duke@435 204 idx_t cur_beg = range_beg;
duke@435 205 if (range_beg < range_end && is_unmarked(range_beg)) {
duke@435 206 // The range starts with dead space. Look for the next object, then fill.
duke@435 207 cur_beg = find_obj_beg(range_beg + 1, dead_search_end);
duke@435 208 const idx_t dead_space_end = MIN2(cur_beg - 1, dead_range_end - 1);
duke@435 209 const size_t size = obj_size(range_beg, dead_space_end);
duke@435 210 dead_closure->do_addr(bit_to_addr(range_beg), size);
duke@435 211 }
duke@435 212
duke@435 213 while (cur_beg < range_end) {
duke@435 214 const idx_t cur_end = find_obj_end(cur_beg, live_search_end);
duke@435 215 if (cur_end >= range_end) {
duke@435 216 // The obj ends outside the range.
duke@435 217 live_closure->set_source(bit_to_addr(cur_beg));
duke@435 218 return incomplete;
duke@435 219 }
duke@435 220
duke@435 221 const size_t size = obj_size(cur_beg, cur_end);
duke@435 222 IterationStatus status = live_closure->do_addr(bit_to_addr(cur_beg), size);
duke@435 223 if (status != incomplete) {
duke@435 224 assert(status == would_overflow || status == full, "sanity");
duke@435 225 return status;
duke@435 226 }
duke@435 227
duke@435 228 // Look for the start of the next object.
duke@435 229 const idx_t dead_space_beg = cur_end + 1;
duke@435 230 cur_beg = find_obj_beg(dead_space_beg, dead_search_end);
duke@435 231 if (cur_beg > dead_space_beg) {
duke@435 232 // Found dead space; compute the size and invoke the dead closure.
duke@435 233 const idx_t dead_space_end = MIN2(cur_beg - 1, dead_range_end - 1);
duke@435 234 const size_t size = obj_size(dead_space_beg, dead_space_end);
duke@435 235 dead_closure->do_addr(bit_to_addr(dead_space_beg), size);
duke@435 236 }
duke@435 237 }
duke@435 238
duke@435 239 live_closure->set_source(bit_to_addr(range_end));
duke@435 240 return complete;
duke@435 241 }
duke@435 242
duke@435 243 #ifndef PRODUCT
duke@435 244 void ParMarkBitMap::reset_counters()
duke@435 245 {
duke@435 246 _cas_tries = _cas_retries = _cas_by_another = 0;
duke@435 247 }
duke@435 248 #endif // #ifndef PRODUCT
duke@435 249
duke@435 250 #ifdef ASSERT
duke@435 251 void ParMarkBitMap::verify_clear() const
duke@435 252 {
duke@435 253 const idx_t* const beg = (const idx_t*)_virtual_space->committed_low_addr();
duke@435 254 const idx_t* const end = (const idx_t*)_virtual_space->committed_high_addr();
duke@435 255 for (const idx_t* p = beg; p < end; ++p) {
duke@435 256 assert(*p == 0, "bitmap not clear");
duke@435 257 }
duke@435 258 }
duke@435 259 #endif // #ifdef ASSERT

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