src/share/vm/gc_implementation/g1/ptrQueue.hpp

Wed, 16 Dec 2009 15:12:51 -0800

author
iveresov
date
Wed, 16 Dec 2009 15:12:51 -0800
changeset 1546
44f61c24ddab
parent 1063
7bb995fbd3c0
child 1752
d4197f8d516a
permissions
-rw-r--r--

6862387: tune concurrent refinement further
Summary: Reworked the concurrent refinement: threads activation, feedback-based threshold adjustment, other miscellaneous fixes.
Reviewed-by: apetrusenko, tonyp

ysr@777 1 /*
xdono@1014 2 * Copyright 2001-2009 Sun Microsystems, Inc. All Rights Reserved.
ysr@777 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
ysr@777 4 *
ysr@777 5 * This code is free software; you can redistribute it and/or modify it
ysr@777 6 * under the terms of the GNU General Public License version 2 only, as
ysr@777 7 * published by the Free Software Foundation.
ysr@777 8 *
ysr@777 9 * This code is distributed in the hope that it will be useful, but WITHOUT
ysr@777 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
ysr@777 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
ysr@777 12 * version 2 for more details (a copy is included in the LICENSE file that
ysr@777 13 * accompanied this code).
ysr@777 14 *
ysr@777 15 * You should have received a copy of the GNU General Public License version
ysr@777 16 * 2 along with this work; if not, write to the Free Software Foundation,
ysr@777 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
ysr@777 18 *
ysr@777 19 * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
ysr@777 20 * CA 95054 USA or visit www.sun.com if you need additional information or
ysr@777 21 * have any questions.
ysr@777 22 *
ysr@777 23 */
ysr@777 24
ysr@777 25 // There are various techniques that require threads to be able to log
ysr@777 26 // addresses. For example, a generational write barrier might log
ysr@777 27 // the addresses of modified old-generation objects. This type supports
ysr@777 28 // this operation.
ysr@777 29
iveresov@1546 30 // The definition of placement operator new(size_t, void*) in the <new>.
iveresov@1546 31 #include <new>
iveresov@1546 32
ysr@777 33 class PtrQueueSet;
apetrusenko@984 34 class PtrQueue VALUE_OBJ_CLASS_SPEC {
ysr@777 35
ysr@777 36 protected:
ysr@777 37 // The ptr queue set to which this queue belongs.
ysr@777 38 PtrQueueSet* _qset;
ysr@777 39
ysr@777 40 // Whether updates should be logged.
ysr@777 41 bool _active;
ysr@777 42
ysr@777 43 // The buffer.
ysr@777 44 void** _buf;
ysr@777 45 // The index at which an object was last enqueued. Starts at "_sz"
ysr@777 46 // (indicating an empty buffer) and goes towards zero.
ysr@777 47 size_t _index;
ysr@777 48
ysr@777 49 // The size of the buffer.
ysr@777 50 size_t _sz;
ysr@777 51
ysr@777 52 // If true, the queue is permanent, and doesn't need to deallocate
ysr@777 53 // its buffer in the destructor (since that obtains a lock which may not
ysr@777 54 // be legally locked by then.
ysr@777 55 bool _perm;
ysr@777 56
ysr@777 57 // If there is a lock associated with this buffer, this is that lock.
ysr@777 58 Mutex* _lock;
ysr@777 59
ysr@777 60 PtrQueueSet* qset() { return _qset; }
ysr@777 61
ysr@777 62 public:
ysr@777 63 // Initialize this queue to contain a null buffer, and be part of the
ysr@777 64 // given PtrQueueSet.
ysr@777 65 PtrQueue(PtrQueueSet*, bool perm = false);
ysr@777 66 // Release any contained resources.
iveresov@876 67 void flush();
iveresov@876 68 // Calls flush() when destroyed.
iveresov@876 69 ~PtrQueue() { flush(); }
ysr@777 70
ysr@777 71 // Associate a lock with a ptr queue.
ysr@777 72 void set_lock(Mutex* lock) { _lock = lock; }
ysr@777 73
ysr@777 74 void reset() { if (_buf != NULL) _index = _sz; }
ysr@777 75
ysr@777 76 // Enqueues the given "obj".
ysr@777 77 void enqueue(void* ptr) {
ysr@777 78 if (!_active) return;
ysr@777 79 else enqueue_known_active(ptr);
ysr@777 80 }
ysr@777 81
iveresov@1546 82 void handle_zero_index();
ysr@777 83 void locking_enqueue_completed_buffer(void** buf);
ysr@777 84
ysr@777 85 void enqueue_known_active(void* ptr);
ysr@777 86
ysr@777 87 size_t size() {
ysr@777 88 assert(_sz >= _index, "Invariant.");
ysr@777 89 return _buf == NULL ? 0 : _sz - _index;
ysr@777 90 }
ysr@777 91
ysr@777 92 // Set the "active" property of the queue to "b". An enqueue to an
ysr@777 93 // inactive thread is a no-op. Setting a queue to inactive resets its
ysr@777 94 // log to the empty state.
ysr@777 95 void set_active(bool b) {
ysr@777 96 _active = b;
ysr@777 97 if (!b && _buf != NULL) {
ysr@777 98 _index = _sz;
ysr@777 99 } else if (b && _buf != NULL) {
ysr@777 100 assert(_index == _sz, "invariant: queues are empty when activated.");
ysr@777 101 }
ysr@777 102 }
ysr@777 103
ysr@777 104 static int byte_index_to_index(int ind) {
ysr@777 105 assert((ind % oopSize) == 0, "Invariant.");
ysr@777 106 return ind / oopSize;
ysr@777 107 }
ysr@777 108
ysr@777 109 static int index_to_byte_index(int byte_ind) {
ysr@777 110 return byte_ind * oopSize;
ysr@777 111 }
ysr@777 112
ysr@777 113 // To support compiler.
ysr@777 114 static ByteSize byte_offset_of_index() {
ysr@777 115 return byte_offset_of(PtrQueue, _index);
ysr@777 116 }
ysr@777 117 static ByteSize byte_width_of_index() { return in_ByteSize(sizeof(size_t)); }
ysr@777 118
ysr@777 119 static ByteSize byte_offset_of_buf() {
ysr@777 120 return byte_offset_of(PtrQueue, _buf);
ysr@777 121 }
ysr@777 122 static ByteSize byte_width_of_buf() { return in_ByteSize(sizeof(void*)); }
ysr@777 123
ysr@777 124 static ByteSize byte_offset_of_active() {
ysr@777 125 return byte_offset_of(PtrQueue, _active);
ysr@777 126 }
ysr@777 127 static ByteSize byte_width_of_active() { return in_ByteSize(sizeof(bool)); }
ysr@777 128
ysr@777 129 };
ysr@777 130
iveresov@1546 131 class BufferNode {
iveresov@1546 132 size_t _index;
iveresov@1546 133 BufferNode* _next;
iveresov@1546 134 public:
iveresov@1546 135 BufferNode() : _index(0), _next(NULL) { }
iveresov@1546 136 BufferNode* next() const { return _next; }
iveresov@1546 137 void set_next(BufferNode* n) { _next = n; }
iveresov@1546 138 size_t index() const { return _index; }
iveresov@1546 139 void set_index(size_t i) { _index = i; }
iveresov@1546 140
iveresov@1546 141 // Align the size of the structure to the size of the pointer
iveresov@1546 142 static size_t aligned_size() {
iveresov@1546 143 static const size_t alignment = round_to(sizeof(BufferNode), sizeof(void*));
iveresov@1546 144 return alignment;
iveresov@1546 145 }
iveresov@1546 146
iveresov@1546 147 // BufferNode is allocated before the buffer.
iveresov@1546 148 // The chunk of memory that holds both of them is a block.
iveresov@1546 149
iveresov@1546 150 // Produce a new BufferNode given a buffer.
iveresov@1546 151 static BufferNode* new_from_buffer(void** buf) {
iveresov@1546 152 return new (make_block_from_buffer(buf)) BufferNode;
iveresov@1546 153 }
iveresov@1546 154
iveresov@1546 155 // The following are the required conversion routines:
iveresov@1546 156 static BufferNode* make_node_from_buffer(void** buf) {
iveresov@1546 157 return (BufferNode*)make_block_from_buffer(buf);
iveresov@1546 158 }
iveresov@1546 159 static void** make_buffer_from_node(BufferNode *node) {
iveresov@1546 160 return make_buffer_from_block(node);
iveresov@1546 161 }
iveresov@1546 162 static void* make_block_from_node(BufferNode *node) {
iveresov@1546 163 return (void*)node;
iveresov@1546 164 }
iveresov@1546 165 static void** make_buffer_from_block(void* p) {
iveresov@1546 166 return (void**)((char*)p + aligned_size());
iveresov@1546 167 }
iveresov@1546 168 static void* make_block_from_buffer(void** p) {
iveresov@1546 169 return (void*)((char*)p - aligned_size());
iveresov@1546 170 }
iveresov@1546 171 };
iveresov@1546 172
ysr@777 173 // A PtrQueueSet represents resources common to a set of pointer queues.
ysr@777 174 // In particular, the individual queues allocate buffers from this shared
ysr@777 175 // set, and return completed buffers to the set.
ysr@777 176 // All these variables are are protected by the TLOQ_CBL_mon. XXX ???
apetrusenko@984 177 class PtrQueueSet VALUE_OBJ_CLASS_SPEC {
ysr@777 178 protected:
ysr@777 179 Monitor* _cbl_mon; // Protects the fields below.
iveresov@1546 180 BufferNode* _completed_buffers_head;
iveresov@1546 181 BufferNode* _completed_buffers_tail;
iveresov@1546 182 int _n_completed_buffers;
iveresov@1546 183 int _process_completed_threshold;
ysr@777 184 volatile bool _process_completed;
ysr@777 185
ysr@777 186 // This (and the interpretation of the first element as a "next"
ysr@777 187 // pointer) are protected by the TLOQ_FL_lock.
ysr@777 188 Mutex* _fl_lock;
iveresov@1546 189 BufferNode* _buf_free_list;
ysr@777 190 size_t _buf_free_list_sz;
iveresov@1051 191 // Queue set can share a freelist. The _fl_owner variable
iveresov@1051 192 // specifies the owner. It is set to "this" by default.
iveresov@1051 193 PtrQueueSet* _fl_owner;
ysr@777 194
ysr@777 195 // The size of all buffers in the set.
ysr@777 196 size_t _sz;
ysr@777 197
ysr@777 198 bool _all_active;
ysr@777 199
ysr@777 200 // If true, notify_all on _cbl_mon when the threshold is reached.
ysr@777 201 bool _notify_when_complete;
ysr@777 202
ysr@777 203 // Maximum number of elements allowed on completed queue: after that,
ysr@777 204 // enqueuer does the work itself. Zero indicates no maximum.
ysr@777 205 int _max_completed_queue;
iveresov@1546 206 int _completed_queue_padding;
ysr@777 207
ysr@777 208 int completed_buffers_list_length();
ysr@777 209 void assert_completed_buffer_list_len_correct_locked();
ysr@777 210 void assert_completed_buffer_list_len_correct();
ysr@777 211
ysr@777 212 protected:
ysr@777 213 // A mutator thread does the the work of processing a buffer.
ysr@777 214 // Returns "true" iff the work is complete (and the buffer may be
ysr@777 215 // deallocated).
ysr@777 216 virtual bool mut_process_buffer(void** buf) {
ysr@777 217 ShouldNotReachHere();
ysr@777 218 return false;
ysr@777 219 }
ysr@777 220
ysr@777 221 public:
ysr@777 222 // Create an empty ptr queue set.
ysr@777 223 PtrQueueSet(bool notify_when_complete = false);
ysr@777 224
ysr@777 225 // Because of init-order concerns, we can't pass these as constructor
ysr@777 226 // arguments.
ysr@777 227 void initialize(Monitor* cbl_mon, Mutex* fl_lock,
iveresov@1546 228 int process_completed_threshold,
iveresov@1546 229 int max_completed_queue,
iveresov@1051 230 PtrQueueSet *fl_owner = NULL) {
ysr@777 231 _max_completed_queue = max_completed_queue;
iveresov@1546 232 _process_completed_threshold = process_completed_threshold;
iveresov@1546 233 _completed_queue_padding = 0;
ysr@777 234 assert(cbl_mon != NULL && fl_lock != NULL, "Init order issue?");
iveresov@1051 235 _cbl_mon = cbl_mon;
iveresov@1051 236 _fl_lock = fl_lock;
iveresov@1051 237 _fl_owner = (fl_owner != NULL) ? fl_owner : this;
ysr@777 238 }
ysr@777 239
ysr@777 240 // Return an empty oop array of size _sz (required to be non-zero).
ysr@777 241 void** allocate_buffer();
ysr@777 242
ysr@777 243 // Return an empty buffer to the free list. The "buf" argument is
ysr@777 244 // required to be a pointer to the head of an array of length "_sz".
ysr@777 245 void deallocate_buffer(void** buf);
ysr@777 246
ysr@777 247 // Declares that "buf" is a complete buffer.
iveresov@1546 248 void enqueue_complete_buffer(void** buf, size_t index = 0);
iveresov@1546 249
iveresov@1546 250 // To be invoked by the mutator.
iveresov@1546 251 bool process_or_enqueue_complete_buffer(void** buf);
ysr@777 252
ysr@777 253 bool completed_buffers_exist_dirty() {
ysr@777 254 return _n_completed_buffers > 0;
ysr@777 255 }
ysr@777 256
ysr@777 257 bool process_completed_buffers() { return _process_completed; }
iveresov@1546 258 void set_process_completed(bool x) { _process_completed = x; }
ysr@777 259
ysr@777 260 bool active() { return _all_active; }
ysr@777 261
ysr@777 262 // Set the buffer size. Should be called before any "enqueue" operation
ysr@777 263 // can be called. And should only be called once.
ysr@777 264 void set_buffer_size(size_t sz);
ysr@777 265
ysr@777 266 // Get the buffer size.
ysr@777 267 size_t buffer_size() { return _sz; }
ysr@777 268
iveresov@1546 269 // Get/Set the number of completed buffers that triggers log processing.
iveresov@1546 270 void set_process_completed_threshold(int sz) { _process_completed_threshold = sz; }
iveresov@1546 271 int process_completed_threshold() const { return _process_completed_threshold; }
ysr@777 272
ysr@777 273 // Must only be called at a safe point. Indicates that the buffer free
ysr@777 274 // list size may be reduced, if that is deemed desirable.
ysr@777 275 void reduce_free_list();
ysr@777 276
iveresov@1546 277 int completed_buffers_num() { return _n_completed_buffers; }
iveresov@1051 278
iveresov@1051 279 void merge_bufferlists(PtrQueueSet* src);
iveresov@1546 280
iveresov@1546 281 void set_max_completed_queue(int m) { _max_completed_queue = m; }
iveresov@1546 282 int max_completed_queue() { return _max_completed_queue; }
iveresov@1546 283
iveresov@1546 284 void set_completed_queue_padding(int padding) { _completed_queue_padding = padding; }
iveresov@1546 285 int completed_queue_padding() { return _completed_queue_padding; }
iveresov@1546 286
iveresov@1546 287 // Notify the consumer if the number of buffers crossed the threshold
iveresov@1546 288 void notify_if_necessary();
ysr@777 289 };

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