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annotate src/share/vm/gc_implementation/parNew/parGCAllocBuffer.hpp @ 4625:73f935f28920
in esa mode, check that values in stateAfter are all ready after LIRGen of a ValudeNode
author | Gilles Duboscq <duboscq@ssw.jku.at> |
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date | Fri, 17 Feb 2012 11:37:44 +0100 |
parents | c760f78e0a53 |
children | d2a62e0f25eb |
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0 | 1 /* |
1972 | 2 * Copyright (c) 2001, 2010, Oracle and/or its affiliates. All rights reserved. |
0 | 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
4 * | |
5 * This code is free software; you can redistribute it and/or modify it | |
6 * under the terms of the GNU General Public License version 2 only, as | |
7 * published by the Free Software Foundation. | |
8 * | |
9 * This code is distributed in the hope that it will be useful, but WITHOUT | |
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or | |
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License | |
12 * version 2 for more details (a copy is included in the LICENSE file that | |
13 * accompanied this code). | |
14 * | |
15 * You should have received a copy of the GNU General Public License version | |
16 * 2 along with this work; if not, write to the Free Software Foundation, | |
17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. | |
18 * | |
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19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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20 * or visit www.oracle.com if you need additional information or have any |
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21 * questions. |
0 | 22 * |
23 */ | |
24 | |
1972 | 25 #ifndef SHARE_VM_GC_IMPLEMENTATION_PARNEW_PARGCALLOCBUFFER_HPP |
26 #define SHARE_VM_GC_IMPLEMENTATION_PARNEW_PARGCALLOCBUFFER_HPP | |
27 | |
28 #include "memory/allocation.hpp" | |
1983
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29 #include "memory/blockOffsetTable.hpp" |
1972 | 30 #include "memory/threadLocalAllocBuffer.hpp" |
31 #include "utilities/globalDefinitions.hpp" | |
32 | |
0 | 33 // Forward decl. |
34 | |
35 class PLABStats; | |
36 | |
37 // A per-thread allocation buffer used during GC. | |
38 class ParGCAllocBuffer: public CHeapObj { | |
39 protected: | |
40 char head[32]; | |
41 size_t _word_sz; // in HeapWord units | |
42 HeapWord* _bottom; | |
43 HeapWord* _top; | |
44 HeapWord* _end; // last allocatable address + 1 | |
45 HeapWord* _hard_end; // _end + AlignmentReserve | |
46 bool _retained; // whether we hold a _retained_filler | |
47 MemRegion _retained_filler; | |
48 // In support of ergonomic sizing of PLAB's | |
49 size_t _allocated; // in HeapWord units | |
50 size_t _wasted; // in HeapWord units | |
51 char tail[32]; | |
113
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52 static size_t FillerHeaderSize; |
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53 static size_t AlignmentReserve; |
0 | 54 |
55 public: | |
56 // Initializes the buffer to be empty, but with the given "word_sz". | |
57 // Must get initialized with "set_buf" for an allocation to succeed. | |
58 ParGCAllocBuffer(size_t word_sz); | |
59 | |
60 static const size_t min_size() { | |
61 return ThreadLocalAllocBuffer::min_size(); | |
62 } | |
63 | |
64 static const size_t max_size() { | |
65 return ThreadLocalAllocBuffer::max_size(); | |
66 } | |
67 | |
68 // If an allocation of the given "word_sz" can be satisfied within the | |
69 // buffer, do the allocation, returning a pointer to the start of the | |
70 // allocated block. If the allocation request cannot be satisfied, | |
71 // return NULL. | |
72 HeapWord* allocate(size_t word_sz) { | |
73 HeapWord* res = _top; | |
634 | 74 if (pointer_delta(_end, _top) >= word_sz) { |
75 _top = _top + word_sz; | |
0 | 76 return res; |
77 } else { | |
78 return NULL; | |
79 } | |
80 } | |
81 | |
82 // Undo the last allocation in the buffer, which is required to be of the | |
83 // "obj" of the given "word_sz". | |
84 void undo_allocation(HeapWord* obj, size_t word_sz) { | |
634 | 85 assert(pointer_delta(_top, _bottom) >= word_sz, "Bad undo"); |
86 assert(pointer_delta(_top, obj) == word_sz, "Bad undo"); | |
87 _top = obj; | |
0 | 88 } |
89 | |
90 // The total (word) size of the buffer, including both allocated and | |
91 // unallocted space. | |
92 size_t word_sz() { return _word_sz; } | |
93 | |
94 // Should only be done if we are about to reset with a new buffer of the | |
95 // given size. | |
96 void set_word_size(size_t new_word_sz) { | |
97 assert(new_word_sz > AlignmentReserve, "Too small"); | |
98 _word_sz = new_word_sz; | |
99 } | |
100 | |
101 // The number of words of unallocated space remaining in the buffer. | |
102 size_t words_remaining() { | |
103 assert(_end >= _top, "Negative buffer"); | |
104 return pointer_delta(_end, _top, HeapWordSize); | |
105 } | |
106 | |
107 bool contains(void* addr) { | |
108 return (void*)_bottom <= addr && addr < (void*)_hard_end; | |
109 } | |
110 | |
111 // Sets the space of the buffer to be [buf, space+word_sz()). | |
112 void set_buf(HeapWord* buf) { | |
113 _bottom = buf; | |
114 _top = _bottom; | |
115 _hard_end = _bottom + word_sz(); | |
116 _end = _hard_end - AlignmentReserve; | |
117 assert(_end >= _top, "Negative buffer"); | |
118 // In support of ergonomic sizing | |
119 _allocated += word_sz(); | |
120 } | |
121 | |
122 // Flush the stats supporting ergonomic sizing of PLAB's | |
123 void flush_stats(PLABStats* stats); | |
124 void flush_stats_and_retire(PLABStats* stats, bool retain) { | |
125 // We flush the stats first in order to get a reading of | |
126 // unused space in the last buffer. | |
127 if (ResizePLAB) { | |
128 flush_stats(stats); | |
129 } | |
130 // Retire the last allocation buffer. | |
131 retire(true, retain); | |
132 } | |
133 | |
134 // Force future allocations to fail and queries for contains() | |
135 // to return false | |
136 void invalidate() { | |
137 assert(!_retained, "Shouldn't retain an invalidated buffer."); | |
138 _end = _hard_end; | |
139 _wasted += pointer_delta(_end, _top); // unused space | |
140 _top = _end; // force future allocations to fail | |
141 _bottom = _end; // force future contains() queries to return false | |
142 } | |
143 | |
144 // Fills in the unallocated portion of the buffer with a garbage object. | |
145 // If "end_of_gc" is TRUE, is after the last use in the GC. IF "retain" | |
146 // is true, attempt to re-use the unused portion in the next GC. | |
147 void retire(bool end_of_gc, bool retain); | |
148 | |
149 void print() PRODUCT_RETURN; | |
150 }; | |
151 | |
152 // PLAB stats book-keeping | |
153 class PLABStats VALUE_OBJ_CLASS_SPEC { | |
154 size_t _allocated; // total allocated | |
155 size_t _wasted; // of which wasted (internal fragmentation) | |
156 size_t _unused; // Unused in last buffer | |
157 size_t _used; // derived = allocated - wasted - unused | |
158 size_t _desired_plab_sz;// output of filter (below), suitably trimmed and quantized | |
159 AdaptiveWeightedAverage | |
160 _filter; // integrator with decay | |
161 | |
162 public: | |
163 PLABStats(size_t desired_plab_sz_, unsigned wt) : | |
164 _allocated(0), | |
165 _wasted(0), | |
166 _unused(0), | |
167 _used(0), | |
168 _desired_plab_sz(desired_plab_sz_), | |
169 _filter(wt) | |
170 { | |
171 size_t min_sz = min_size(); | |
172 size_t max_sz = max_size(); | |
173 size_t aligned_min_sz = align_object_size(min_sz); | |
174 size_t aligned_max_sz = align_object_size(max_sz); | |
175 assert(min_sz <= aligned_min_sz && max_sz >= aligned_max_sz && | |
176 min_sz <= max_sz, | |
177 "PLAB clipping computation in adjust_desired_plab_sz()" | |
178 " may be incorrect"); | |
179 } | |
180 | |
181 static const size_t min_size() { | |
182 return ParGCAllocBuffer::min_size(); | |
183 } | |
184 | |
185 static const size_t max_size() { | |
186 return ParGCAllocBuffer::max_size(); | |
187 } | |
188 | |
189 size_t desired_plab_sz() { | |
190 return _desired_plab_sz; | |
191 } | |
192 | |
193 void adjust_desired_plab_sz(); // filter computation, latches output to | |
194 // _desired_plab_sz, clears sensor accumulators | |
195 | |
196 void add_allocated(size_t v) { | |
197 Atomic::add_ptr(v, &_allocated); | |
198 } | |
199 | |
200 void add_unused(size_t v) { | |
201 Atomic::add_ptr(v, &_unused); | |
202 } | |
203 | |
204 void add_wasted(size_t v) { | |
205 Atomic::add_ptr(v, &_wasted); | |
206 } | |
207 }; | |
208 | |
209 class ParGCAllocBufferWithBOT: public ParGCAllocBuffer { | |
210 BlockOffsetArrayContigSpace _bt; | |
211 BlockOffsetSharedArray* _bsa; | |
212 HeapWord* _true_end; // end of the whole ParGCAllocBuffer | |
213 | |
214 static const size_t ChunkSizeInWords; | |
215 static const size_t ChunkSizeInBytes; | |
216 HeapWord* allocate_slow(size_t word_sz); | |
217 | |
218 void fill_region_with_block(MemRegion mr, bool contig); | |
219 | |
220 public: | |
221 ParGCAllocBufferWithBOT(size_t word_sz, BlockOffsetSharedArray* bsa); | |
222 | |
223 HeapWord* allocate(size_t word_sz) { | |
224 HeapWord* res = ParGCAllocBuffer::allocate(word_sz); | |
225 if (res != NULL) { | |
226 _bt.alloc_block(res, word_sz); | |
227 } else { | |
228 res = allocate_slow(word_sz); | |
229 } | |
230 return res; | |
231 } | |
232 | |
233 void undo_allocation(HeapWord* obj, size_t word_sz); | |
234 | |
235 void set_buf(HeapWord* buf_start) { | |
236 ParGCAllocBuffer::set_buf(buf_start); | |
237 _true_end = _hard_end; | |
238 _bt.set_region(MemRegion(buf_start, word_sz())); | |
239 _bt.initialize_threshold(); | |
240 } | |
241 | |
242 void retire(bool end_of_gc, bool retain); | |
243 | |
244 MemRegion range() { | |
245 return MemRegion(_top, _true_end); | |
246 } | |
247 }; | |
1972 | 248 |
249 #endif // SHARE_VM_GC_IMPLEMENTATION_PARNEW_PARGCALLOCBUFFER_HPP |