src/share/vm/runtime/os.hpp

Wed, 27 Aug 2014 08:19:12 -0400

author
zgu
date
Wed, 27 Aug 2014 08:19:12 -0400
changeset 7074
833b0f92429a
parent 6782
f73af4455d7d
child 7273
c12e6bac4ad0
permissions
-rw-r--r--

8046598: Scalable Native memory tracking development
Summary: Enhance scalability of native memory tracking
Reviewed-by: coleenp, ctornqvi, gtriantafill

duke@435 1 /*
hseigel@6755 2 * Copyright (c) 1997, 2014, 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 #ifndef SHARE_VM_RUNTIME_OS_HPP
stefank@2314 26 #define SHARE_VM_RUNTIME_OS_HPP
stefank@2314 27
stefank@2314 28 #include "jvmtifiles/jvmti.h"
stefank@2314 29 #include "runtime/atomic.hpp"
stefank@2314 30 #include "runtime/extendedPC.hpp"
stefank@2314 31 #include "runtime/handles.hpp"
stefank@2314 32 #include "utilities/top.hpp"
stefank@2314 33 #ifdef TARGET_OS_FAMILY_linux
stefank@2314 34 # include "jvm_linux.h"
rbackman@5424 35 # include <setjmp.h>
stefank@2314 36 #endif
stefank@2314 37 #ifdef TARGET_OS_FAMILY_solaris
stefank@2314 38 # include "jvm_solaris.h"
rbackman@5424 39 # include <setjmp.h>
stefank@2314 40 #endif
stefank@2314 41 #ifdef TARGET_OS_FAMILY_windows
stefank@2314 42 # include "jvm_windows.h"
stefank@2314 43 #endif
goetz@6461 44 #ifdef TARGET_OS_FAMILY_aix
goetz@6461 45 # include "jvm_aix.h"
goetz@6461 46 # include <setjmp.h>
goetz@6461 47 #endif
never@3156 48 #ifdef TARGET_OS_FAMILY_bsd
never@3156 49 # include "jvm_bsd.h"
rbackman@5424 50 # include <setjmp.h>
sla@6667 51 # ifdef __APPLE__
sla@6667 52 # include <mach/mach_time.h>
sla@6667 53 # endif
never@3156 54 #endif
stefank@2314 55
bpittore@5585 56 class AgentLibrary;
bpittore@5585 57
duke@435 58 // os defines the interface to operating system; this includes traditional
duke@435 59 // OS services (time, I/O) as well as other functionality with system-
duke@435 60 // dependent code.
duke@435 61
duke@435 62 typedef void (*dll_func)(...);
duke@435 63
duke@435 64 class Thread;
duke@435 65 class JavaThread;
duke@435 66 class Event;
duke@435 67 class DLL;
duke@435 68 class FileHandle;
zgu@7074 69 class NativeCallStack;
zgu@7074 70
iveresov@576 71 template<class E> class GrowableArray;
duke@435 72
duke@435 73 // %%%%% Moved ThreadState, START_FN, OSThread to new osThread.hpp. -- Rose
duke@435 74
duke@435 75 // Platform-independent error return values from OS functions
duke@435 76 enum OSReturn {
duke@435 77 OS_OK = 0, // Operation was successful
duke@435 78 OS_ERR = -1, // Operation failed
duke@435 79 OS_INTRPT = -2, // Operation was interrupted
duke@435 80 OS_TIMEOUT = -3, // Operation timed out
duke@435 81 OS_NOMEM = -5, // Operation failed for lack of memory
duke@435 82 OS_NORESOURCE = -6 // Operation failed for lack of nonmemory resource
duke@435 83 };
duke@435 84
duke@435 85 enum ThreadPriority { // JLS 20.20.1-3
duke@435 86 NoPriority = -1, // Initial non-priority value
duke@435 87 MinPriority = 1, // Minimum priority
duke@435 88 NormPriority = 5, // Normal (non-daemon) priority
duke@435 89 NearMaxPriority = 9, // High priority, used for VMThread
phh@3481 90 MaxPriority = 10, // Highest priority, used for WatcherThread
duke@435 91 // ensures that VMThread doesn't starve profiler
phh@3481 92 CriticalPriority = 11 // Critical thread priority
duke@435 93 };
duke@435 94
dcubed@5255 95 // Executable parameter flag for os::commit_memory() and
dcubed@5255 96 // os::commit_memory_or_exit().
dcubed@5255 97 const bool ExecMem = true;
dcubed@5255 98
duke@435 99 // Typedef for structured exception handling support
duke@435 100 typedef void (*java_call_t)(JavaValue* value, methodHandle* method, JavaCallArguments* args, Thread* thread);
duke@435 101
zgu@7074 102 class MallocTracker;
zgu@7074 103
duke@435 104 class os: AllStatic {
twisti@5726 105 friend class VMStructs;
zgu@7074 106 friend class MallocTracker;
phh@1558 107 public:
duke@435 108 enum { page_sizes_max = 9 }; // Size of _page_sizes array (8 plus a sentinel)
duke@435 109
phh@1558 110 private:
duke@435 111 static OSThread* _starting_thread;
duke@435 112 static address _polling_page;
duke@435 113 static volatile int32_t * _mem_serialize_page;
duke@435 114 static uintptr_t _serialize_page_mask;
phh@1558 115 public:
duke@435 116 static size_t _page_sizes[page_sizes_max];
duke@435 117
phh@1558 118 private:
duke@435 119 static void init_page_sizes(size_t default_page_size) {
duke@435 120 _page_sizes[0] = default_page_size;
duke@435 121 _page_sizes[1] = 0; // sentinel
duke@435 122 }
duke@435 123
zgu@3900 124 static char* pd_reserve_memory(size_t bytes, char* addr = 0,
zgu@3900 125 size_t alignment_hint = 0);
zgu@3900 126 static char* pd_attempt_reserve_memory_at(size_t bytes, char* addr);
zgu@3900 127 static void pd_split_reserved_memory(char *base, size_t size,
zgu@3900 128 size_t split, bool realloc);
dcubed@5255 129 static bool pd_commit_memory(char* addr, size_t bytes, bool executable);
zgu@3900 130 static bool pd_commit_memory(char* addr, size_t size, size_t alignment_hint,
dcubed@5255 131 bool executable);
dcubed@5255 132 // Same as pd_commit_memory() that either succeeds or calls
dcubed@5255 133 // vm_exit_out_of_memory() with the specified mesg.
dcubed@5255 134 static void pd_commit_memory_or_exit(char* addr, size_t bytes,
dcubed@5255 135 bool executable, const char* mesg);
dcubed@5255 136 static void pd_commit_memory_or_exit(char* addr, size_t size,
dcubed@5255 137 size_t alignment_hint,
dcubed@5255 138 bool executable, const char* mesg);
zgu@3900 139 static bool pd_uncommit_memory(char* addr, size_t bytes);
zgu@3900 140 static bool pd_release_memory(char* addr, size_t bytes);
zgu@3900 141
zgu@3900 142 static char* pd_map_memory(int fd, const char* file_name, size_t file_offset,
zgu@3900 143 char *addr, size_t bytes, bool read_only = false,
zgu@3900 144 bool allow_exec = false);
zgu@3900 145 static char* pd_remap_memory(int fd, const char* file_name, size_t file_offset,
zgu@3900 146 char *addr, size_t bytes, bool read_only,
zgu@3900 147 bool allow_exec);
zgu@3900 148 static bool pd_unmap_memory(char *addr, size_t bytes);
zgu@3900 149 static void pd_free_memory(char *addr, size_t bytes, size_t alignment_hint);
zgu@3900 150 static void pd_realign_memory(char *addr, size_t bytes, size_t alignment_hint);
zgu@3900 151
zgu@3900 152
duke@435 153 public:
bobv@2036 154 static void init(void); // Called before command line parsing
tschatzl@5701 155 static void init_before_ergo(void); // Called after command line parsing
tschatzl@5701 156 // before VM ergonomics processing.
bobv@2036 157 static jint init_2(void); // Called after command line parsing
tschatzl@5701 158 // and VM ergonomics processing
phh@3378 159 static void init_globals(void) { // Called from init_globals() in init.cpp
phh@3378 160 init_globals_ext();
phh@3378 161 }
bobv@2036 162 static void init_3(void); // Called at the end of vm init
duke@435 163
duke@435 164 // File names are case-insensitive on windows only
duke@435 165 // Override me as needed
duke@435 166 static int file_name_strcmp(const char* s1, const char* s2);
duke@435 167
zgu@7074 168 // get/unset environment variable
duke@435 169 static bool getenv(const char* name, char* buffer, int len);
zgu@7074 170 static bool unsetenv(const char* name);
zgu@7074 171
duke@435 172 static bool have_special_privileges();
duke@435 173
duke@435 174 static jlong javaTimeMillis();
duke@435 175 static jlong javaTimeNanos();
duke@435 176 static void javaTimeNanos_info(jvmtiTimerInfo *info_ptr);
duke@435 177 static void run_periodic_checks();
duke@435 178
duke@435 179
duke@435 180 // Returns the elapsed time in seconds since the vm started.
duke@435 181 static double elapsedTime();
duke@435 182
duke@435 183 // Returns real time in seconds since an arbitrary point
duke@435 184 // in the past.
duke@435 185 static bool getTimesSecs(double* process_real_time,
duke@435 186 double* process_user_time,
duke@435 187 double* process_system_time);
duke@435 188
duke@435 189 // Interface to the performance counter
duke@435 190 static jlong elapsed_counter();
duke@435 191 static jlong elapsed_frequency();
duke@435 192
ysr@777 193 // The "virtual time" of a thread is the amount of time a thread has
ysr@777 194 // actually run. The first function indicates whether the OS supports
ysr@777 195 // this functionality for the current thread, and if so:
ysr@777 196 // * the second enables vtime tracking (if that is required).
ysr@777 197 // * the third tells whether vtime is enabled.
ysr@777 198 // * the fourth returns the elapsed virtual time for the current
ysr@777 199 // thread.
ysr@777 200 static bool supports_vtime();
ysr@777 201 static bool enable_vtime();
ysr@777 202 static bool vtime_enabled();
ysr@777 203 static double elapsedVTime();
ysr@777 204
duke@435 205 // Return current local time in a string (YYYY-MM-DD HH:MM:SS).
duke@435 206 // It is MT safe, but not async-safe, as reading time zone
duke@435 207 // information may require a lock on some platforms.
ysr@983 208 static char* local_time_string(char *buf, size_t buflen);
ysr@983 209 static struct tm* localtime_pd (const time_t* clock, struct tm* res);
duke@435 210 // Fill in buffer with current local time as an ISO-8601 string.
duke@435 211 // E.g., YYYY-MM-DDThh:mm:ss.mmm+zzzz.
duke@435 212 // Returns buffer, or NULL if it failed.
duke@435 213 static char* iso8601_time(char* buffer, size_t buffer_length);
duke@435 214
duke@435 215 // Interface for detecting multiprocessor system
duke@435 216 static inline bool is_MP() {
zgu@7074 217 #if !INCLUDE_NMT
duke@435 218 assert(_processor_count > 0, "invalid processor count");
minqi@4845 219 return _processor_count > 1 || AssumeMP;
zgu@7074 220 #else
zgu@7074 221 // NMT needs atomic operations before this initialization.
zgu@7074 222 return true;
zgu@7074 223 #endif
duke@435 224 }
duke@435 225 static julong available_memory();
duke@435 226 static julong physical_memory();
tschatzl@4854 227 static bool has_allocatable_memory_limit(julong* limit);
duke@435 228 static bool is_server_class_machine();
duke@435 229
duke@435 230 // number of CPUs
duke@435 231 static int processor_count() {
duke@435 232 return _processor_count;
duke@435 233 }
phh@1558 234 static void set_processor_count(int count) { _processor_count = count; }
duke@435 235
duke@435 236 // Returns the number of CPUs this process is currently allowed to run on.
duke@435 237 // Note that on some OSes this can change dynamically.
duke@435 238 static int active_processor_count();
duke@435 239
duke@435 240 // Bind processes to processors.
duke@435 241 // This is a two step procedure:
duke@435 242 // first you generate a distribution of processes to processors,
duke@435 243 // then you bind processes according to that distribution.
duke@435 244 // Compute a distribution for number of processes to processors.
duke@435 245 // Stores the processor id's into the distribution array argument.
duke@435 246 // Returns true if it worked, false if it didn't.
duke@435 247 static bool distribute_processes(uint length, uint* distribution);
duke@435 248 // Binds the current process to a processor.
duke@435 249 // Returns true if it worked, false if it didn't.
duke@435 250 static bool bind_to_processor(uint processor_id);
duke@435 251
dcubed@3202 252 // Give a name to the current thread.
dcubed@3202 253 static void set_native_thread_name(const char *name);
dcubed@3202 254
duke@435 255 // Interface for stack banging (predetect possible stack overflow for
duke@435 256 // exception processing) There are guard pages, and above that shadow
duke@435 257 // pages for stack overflow checking.
duke@435 258 static bool uses_stack_guard_pages();
duke@435 259 static bool allocate_stack_guard_pages();
duke@435 260 static void bang_stack_shadow_pages();
duke@435 261 static bool stack_shadow_pages_available(Thread *thread, methodHandle method);
duke@435 262
duke@435 263 // OS interface to Virtual Memory
duke@435 264
duke@435 265 // Return the default page size.
duke@435 266 static int vm_page_size();
duke@435 267
duke@435 268 // Return the page size to use for a region of memory. The min_pages argument
duke@435 269 // is a hint intended to limit fragmentation; it says the returned page size
duke@435 270 // should be <= region_max_size / min_pages. Because min_pages is a hint,
duke@435 271 // this routine may return a size larger than region_max_size / min_pages.
duke@435 272 //
duke@435 273 // The current implementation ignores min_pages if a larger page size is an
duke@435 274 // exact multiple of both region_min_size and region_max_size. This allows
duke@435 275 // larger pages to be used when doing so would not cause fragmentation; in
duke@435 276 // particular, a single page can be used when region_min_size ==
duke@435 277 // region_max_size == a supported page size.
duke@435 278 static size_t page_size_for_region(size_t region_min_size,
duke@435 279 size_t region_max_size,
duke@435 280 uint min_pages);
tschatzl@5701 281 // Return the largest page size that can be used
tschatzl@5701 282 static size_t max_page_size() {
tschatzl@5701 283 // The _page_sizes array is sorted in descending order.
tschatzl@5701 284 return _page_sizes[0];
tschatzl@5701 285 }
duke@435 286
jcoomes@3057 287 // Methods for tracing page sizes returned by the above method; enabled by
duke@435 288 // TracePageSizes. The region_{min,max}_size parameters should be the values
duke@435 289 // passed to page_size_for_region() and page_size should be the result of that
duke@435 290 // call. The (optional) base and size parameters should come from the
duke@435 291 // ReservedSpace base() and size() methods.
jcoomes@3057 292 static void trace_page_sizes(const char* str, const size_t* page_sizes,
jcoomes@3057 293 int count) PRODUCT_RETURN;
duke@435 294 static void trace_page_sizes(const char* str, const size_t region_min_size,
duke@435 295 const size_t region_max_size,
duke@435 296 const size_t page_size,
duke@435 297 const char* base = NULL,
duke@435 298 const size_t size = 0) PRODUCT_RETURN;
duke@435 299
duke@435 300 static int vm_allocation_granularity();
duke@435 301 static char* reserve_memory(size_t bytes, char* addr = 0,
duke@435 302 size_t alignment_hint = 0);
zgu@5053 303 static char* reserve_memory(size_t bytes, char* addr,
zgu@5053 304 size_t alignment_hint, MEMFLAGS flags);
brutisso@4369 305 static char* reserve_memory_aligned(size_t size, size_t alignment);
duke@435 306 static char* attempt_reserve_memory_at(size_t bytes, char* addr);
duke@435 307 static void split_reserved_memory(char *base, size_t size,
duke@435 308 size_t split, bool realloc);
dcubed@5255 309 static bool commit_memory(char* addr, size_t bytes, bool executable);
coleenp@1091 310 static bool commit_memory(char* addr, size_t size, size_t alignment_hint,
dcubed@5255 311 bool executable);
dcubed@5255 312 // Same as commit_memory() that either succeeds or calls
dcubed@5255 313 // vm_exit_out_of_memory() with the specified mesg.
dcubed@5255 314 static void commit_memory_or_exit(char* addr, size_t bytes,
dcubed@5255 315 bool executable, const char* mesg);
dcubed@5255 316 static void commit_memory_or_exit(char* addr, size_t size,
dcubed@5255 317 size_t alignment_hint,
dcubed@5255 318 bool executable, const char* mesg);
duke@435 319 static bool uncommit_memory(char* addr, size_t bytes);
duke@435 320 static bool release_memory(char* addr, size_t bytes);
coleenp@672 321
coleenp@672 322 enum ProtType { MEM_PROT_NONE, MEM_PROT_READ, MEM_PROT_RW, MEM_PROT_RWX };
coleenp@672 323 static bool protect_memory(char* addr, size_t bytes, ProtType prot,
coleenp@912 324 bool is_committed = true);
coleenp@672 325
duke@435 326 static bool guard_memory(char* addr, size_t bytes);
duke@435 327 static bool unguard_memory(char* addr, size_t bytes);
coleenp@1755 328 static bool create_stack_guard_pages(char* addr, size_t bytes);
zgu@3900 329 static bool pd_create_stack_guard_pages(char* addr, size_t bytes);
coleenp@1755 330 static bool remove_stack_guard_pages(char* addr, size_t bytes);
coleenp@1755 331
duke@435 332 static char* map_memory(int fd, const char* file_name, size_t file_offset,
duke@435 333 char *addr, size_t bytes, bool read_only = false,
duke@435 334 bool allow_exec = false);
duke@435 335 static char* remap_memory(int fd, const char* file_name, size_t file_offset,
duke@435 336 char *addr, size_t bytes, bool read_only,
duke@435 337 bool allow_exec);
duke@435 338 static bool unmap_memory(char *addr, size_t bytes);
iveresov@3363 339 static void free_memory(char *addr, size_t bytes, size_t alignment_hint);
duke@435 340 static void realign_memory(char *addr, size_t bytes, size_t alignment_hint);
duke@435 341
duke@435 342 // NUMA-specific interface
iveresov@576 343 static bool numa_has_static_binding();
iveresov@576 344 static bool numa_has_group_homing();
iveresov@576 345 static void numa_make_local(char *addr, size_t bytes, int lgrp_hint);
duke@435 346 static void numa_make_global(char *addr, size_t bytes);
duke@435 347 static size_t numa_get_groups_num();
duke@435 348 static size_t numa_get_leaf_groups(int *ids, size_t size);
duke@435 349 static bool numa_topology_changed();
duke@435 350 static int numa_get_group_id();
duke@435 351
duke@435 352 // Page manipulation
duke@435 353 struct page_info {
duke@435 354 size_t size;
duke@435 355 int lgrp_id;
duke@435 356 };
duke@435 357 static bool get_page_info(char *start, page_info* info);
duke@435 358 static char* scan_pages(char *start, char* end, page_info* page_expected, page_info* page_found);
duke@435 359
duke@435 360 static char* non_memory_address_word();
duke@435 361 // reserve, commit and pin the entire memory region
stefank@5578 362 static char* reserve_memory_special(size_t size, size_t alignment,
stefank@5578 363 char* addr, bool executable);
duke@435 364 static bool release_memory_special(char* addr, size_t bytes);
iveresov@2850 365 static void large_page_init();
duke@435 366 static size_t large_page_size();
duke@435 367 static bool can_commit_large_page_memory();
jcoomes@514 368 static bool can_execute_large_page_memory();
duke@435 369
duke@435 370 // OS interface to polling page
duke@435 371 static address get_polling_page() { return _polling_page; }
duke@435 372 static void set_polling_page(address page) { _polling_page = page; }
duke@435 373 static bool is_poll_address(address addr) { return addr >= _polling_page && addr < (_polling_page + os::vm_page_size()); }
duke@435 374 static void make_polling_page_unreadable();
duke@435 375 static void make_polling_page_readable();
duke@435 376
duke@435 377 // Routines used to serialize the thread state without using membars
duke@435 378 static void serialize_thread_states();
duke@435 379
duke@435 380 // Since we write to the serialize page from every thread, we
duke@435 381 // want stores to be on unique cache lines whenever possible
duke@435 382 // in order to minimize CPU cross talk. We pre-compute the
duke@435 383 // amount to shift the thread* to make this offset unique to
duke@435 384 // each thread.
duke@435 385 static int get_serialize_page_shift_count() {
duke@435 386 return SerializePageShiftCount;
duke@435 387 }
duke@435 388
duke@435 389 static void set_serialize_page_mask(uintptr_t mask) {
duke@435 390 _serialize_page_mask = mask;
duke@435 391 }
duke@435 392
duke@435 393 static unsigned int get_serialize_page_mask() {
duke@435 394 return _serialize_page_mask;
duke@435 395 }
duke@435 396
duke@435 397 static void set_memory_serialize_page(address page);
duke@435 398
duke@435 399 static address get_memory_serialize_page() {
duke@435 400 return (address)_mem_serialize_page;
duke@435 401 }
duke@435 402
duke@435 403 static inline void write_memory_serialize_page(JavaThread *thread) {
duke@435 404 uintptr_t page_offset = ((uintptr_t)thread >>
duke@435 405 get_serialize_page_shift_count()) &
duke@435 406 get_serialize_page_mask();
duke@435 407 *(volatile int32_t *)((uintptr_t)_mem_serialize_page+page_offset) = 1;
duke@435 408 }
duke@435 409
duke@435 410 static bool is_memory_serialize_page(JavaThread *thread, address addr) {
duke@435 411 if (UseMembar) return false;
twisti@1513 412 // Previously this function calculated the exact address of this
twisti@1513 413 // thread's serialize page, and checked if the faulting address
twisti@1513 414 // was equal. However, some platforms mask off faulting addresses
twisti@1513 415 // to the page size, so now we just check that the address is
twisti@1513 416 // within the page. This makes the thread argument unnecessary,
twisti@1513 417 // but we retain the NULL check to preserve existing behaviour.
duke@435 418 if (thread == NULL) return false;
twisti@1513 419 address page = (address) _mem_serialize_page;
twisti@1513 420 return addr >= page && addr < (page + os::vm_page_size());
duke@435 421 }
duke@435 422
duke@435 423 static void block_on_serialize_page_trap();
duke@435 424
duke@435 425 // threads
duke@435 426
duke@435 427 enum ThreadType {
duke@435 428 vm_thread,
duke@435 429 cgc_thread, // Concurrent GC thread
duke@435 430 pgc_thread, // Parallel GC thread
duke@435 431 java_thread,
duke@435 432 compiler_thread,
bobv@2036 433 watcher_thread,
bobv@2036 434 os_thread
duke@435 435 };
duke@435 436
duke@435 437 static bool create_thread(Thread* thread,
duke@435 438 ThreadType thr_type,
duke@435 439 size_t stack_size = 0);
duke@435 440 static bool create_main_thread(JavaThread* thread);
duke@435 441 static bool create_attached_thread(JavaThread* thread);
duke@435 442 static void pd_start_thread(Thread* thread);
duke@435 443 static void start_thread(Thread* thread);
duke@435 444
zgu@4079 445 static void initialize_thread(Thread* thr);
duke@435 446 static void free_thread(OSThread* osthread);
duke@435 447
duke@435 448 // thread id on Linux/64bit is 64bit, on Windows and Solaris, it's 32bit
duke@435 449 static intx current_thread_id();
duke@435 450 static int current_process_id();
duke@435 451 static int sleep(Thread* thread, jlong ms, bool interruptable);
dsimms@6348 452 // Short standalone OS sleep suitable for slow path spin loop.
dsimms@6348 453 // Ignores Thread.interrupt() (so keep it short).
dsimms@6348 454 // ms = 0, will sleep for the least amount of time allowed by the OS.
dsimms@6348 455 static void naked_short_sleep(jlong ms);
duke@435 456 static void infinite_sleep(); // never returns, use with CAUTION
duke@435 457 static void yield(); // Yields to all threads with same priority
duke@435 458 enum YieldResult {
duke@435 459 YIELD_SWITCHED = 1, // caller descheduled, other ready threads exist & ran
duke@435 460 YIELD_NONEREADY = 0, // No other runnable/ready threads.
duke@435 461 // platform-specific yield return immediately
duke@435 462 YIELD_UNKNOWN = -1 // Unknown: platform doesn't support _SWITCHED or _NONEREADY
duke@435 463 // YIELD_SWITCHED and YIELD_NONREADY imply the platform supports a "strong"
duke@435 464 // yield that can be used in lieu of blocking.
duke@435 465 } ;
duke@435 466 static YieldResult NakedYield () ;
duke@435 467 static void yield_all(int attempts = 0); // Yields to all other threads including lower priority
duke@435 468 static void loop_breaker(int attempts); // called from within tight loops to possibly influence time-sharing
duke@435 469 static OSReturn set_priority(Thread* thread, ThreadPriority priority);
duke@435 470 static OSReturn get_priority(const Thread* const thread, ThreadPriority& priority);
duke@435 471
duke@435 472 static void interrupt(Thread* thread);
duke@435 473 static bool is_interrupted(Thread* thread, bool clear_interrupted);
duke@435 474
duke@435 475 static int pd_self_suspend_thread(Thread* thread);
duke@435 476
duke@435 477 static ExtendedPC fetch_frame_from_context(void* ucVoid, intptr_t** sp, intptr_t** fp);
duke@435 478 static frame fetch_frame_from_context(void* ucVoid);
duke@435 479
duke@435 480 static ExtendedPC get_thread_pc(Thread *thread);
duke@435 481 static void breakpoint();
duke@435 482
duke@435 483 static address current_stack_pointer();
duke@435 484 static address current_stack_base();
duke@435 485 static size_t current_stack_size();
duke@435 486
roland@3606 487 static void verify_stack_alignment() PRODUCT_RETURN;
roland@3606 488
duke@435 489 static int message_box(const char* title, const char* message);
duke@435 490 static char* do_you_want_to_debug(const char* message);
duke@435 491
duke@435 492 // run cmd in a separate process and return its exit code; or -1 on failures
duke@435 493 static int fork_and_exec(char *cmd);
duke@435 494
duke@435 495 // os::exit() is merged with vm_exit()
duke@435 496 // static void exit(int num);
duke@435 497
duke@435 498 // Terminate the VM, but don't exit the process
duke@435 499 static void shutdown();
duke@435 500
duke@435 501 // Terminate with an error. Default is to generate a core file on platforms
duke@435 502 // that support such things. This calls shutdown() and then aborts.
duke@435 503 static void abort(bool dump_core = true);
duke@435 504
duke@435 505 // Die immediately, no exit hook, no abort hook, no cleanup.
duke@435 506 static void die();
duke@435 507
ikrylov@2322 508 // File i/o operations
ikrylov@2322 509 static const int default_file_open_flags();
ikrylov@2322 510 static int open(const char *path, int oflag, int mode);
vlivanov@5027 511 static FILE* open(int fd, const char* mode);
ikrylov@2322 512 static int close(int fd);
ikrylov@2322 513 static jlong lseek(int fd, jlong offset, int whence);
ikrylov@2322 514 static char* native_path(char *path);
ikrylov@2322 515 static int ftruncate(int fd, jlong length);
ikrylov@2322 516 static int fsync(int fd);
ikrylov@2322 517 static int available(int fd, jlong *bytes);
ikrylov@2322 518
ikrylov@2322 519 //File i/o operations
ikrylov@2322 520
ikrylov@2322 521 static size_t read(int fd, void *buf, unsigned int nBytes);
ikrylov@2322 522 static size_t restartable_read(int fd, void *buf, unsigned int nBytes);
ikrylov@2322 523 static size_t write(int fd, const void *buf, unsigned int nBytes);
ikrylov@2322 524
duke@435 525 // Reading directories.
duke@435 526 static DIR* opendir(const char* dirname);
duke@435 527 static int readdir_buf_size(const char *path);
duke@435 528 static struct dirent* readdir(DIR* dirp, dirent* dbuf);
duke@435 529 static int closedir(DIR* dirp);
duke@435 530
duke@435 531 // Dynamic library extension
duke@435 532 static const char* dll_file_extension();
duke@435 533
duke@435 534 static const char* get_temp_directory();
vlivanov@5027 535 static const char* get_current_directory(char *buf, size_t buflen);
duke@435 536
kamg@677 537 // Builds a platform-specific full library path given a ld path and lib name
bpittore@4261 538 // Returns true if buffer contains full path to existing file, false otherwise
bpittore@4261 539 static bool dll_build_name(char* buffer, size_t size,
kamg@677 540 const char* pathname, const char* fname);
kamg@677 541
duke@435 542 // Symbol lookup, find nearest function name; basically it implements
duke@435 543 // dladdr() for all platforms. Name of the nearest function is copied
dcubed@5365 544 // to buf. Distance from its base address is optionally returned as offset.
duke@435 545 // If function name is not found, buf[0] is set to '\0' and offset is
dcubed@5365 546 // set to -1 (if offset is non-NULL).
duke@435 547 static bool dll_address_to_function_name(address addr, char* buf,
duke@435 548 int buflen, int* offset);
duke@435 549
duke@435 550 // Locate DLL/DSO. On success, full path of the library is copied to
dcubed@5365 551 // buf, and offset is optionally set to be the distance between addr
dcubed@5365 552 // and the library's base address. On failure, buf[0] is set to '\0'
dcubed@5365 553 // and offset is set to -1 (if offset is non-NULL).
duke@435 554 static bool dll_address_to_library_name(address addr, char* buf,
duke@435 555 int buflen, int* offset);
duke@435 556
duke@435 557 // Find out whether the pc is in the static code for jvm.dll/libjvm.so.
duke@435 558 static bool address_is_in_vm(address addr);
duke@435 559
duke@435 560 // Loads .dll/.so and
duke@435 561 // in case of error it checks if .dll/.so was built for the
duke@435 562 // same architecture as Hotspot is running on
duke@435 563 static void* dll_load(const char *name, char *ebuf, int ebuflen);
duke@435 564
kamg@677 565 // lookup symbol in a shared library
kamg@677 566 static void* dll_lookup(void* handle, const char* name);
kamg@677 567
ikrylov@2322 568 // Unload library
ikrylov@2322 569 static void dll_unload(void *lib);
ikrylov@2322 570
bpittore@5585 571 // Return the handle of this process
bpittore@5585 572 static void* get_default_process_handle();
bpittore@5585 573
bpittore@5585 574 // Check for static linked agent library
bpittore@5585 575 static bool find_builtin_agent(AgentLibrary *agent_lib, const char *syms[],
bpittore@5585 576 size_t syms_len);
bpittore@5585 577
bpittore@5585 578 // Find agent entry point
bpittore@5585 579 static void *find_agent_function(AgentLibrary *agent_lib, bool check_lib,
bpittore@5585 580 const char *syms[], size_t syms_len);
bpittore@5585 581
duke@435 582 // Print out system information; they are called by fatal error handler.
duke@435 583 // Output format may be different on different platforms.
duke@435 584 static void print_os_info(outputStream* st);
nloodin@3783 585 static void print_os_info_brief(outputStream* st);
duke@435 586 static void print_cpu_info(outputStream* st);
jcoomes@2997 587 static void pd_print_cpu_info(outputStream* st);
duke@435 588 static void print_memory_info(outputStream* st);
duke@435 589 static void print_dll_info(outputStream* st);
duke@435 590 static void print_environment_variables(outputStream* st, const char** env_list, char* buffer, int len);
duke@435 591 static void print_context(outputStream* st, void* context);
never@2262 592 static void print_register_info(outputStream* st, void* context);
duke@435 593 static void print_siginfo(outputStream* st, void* siginfo);
duke@435 594 static void print_signal_handlers(outputStream* st, char* buf, size_t buflen);
duke@435 595 static void print_date_and_time(outputStream* st);
duke@435 596
never@2262 597 static void print_location(outputStream* st, intptr_t x, bool verbose = false);
ikrylov@2322 598 static size_t lasterror(char *buf, size_t len);
phh@3379 599 static int get_last_error();
bobv@2036 600
sla@2584 601 // Determines whether the calling process is being debugged by a user-mode debugger.
sla@2584 602 static bool is_debugger_attached();
sla@2584 603
sla@2584 604 // wait for a key press if PauseAtExit is set
sla@2584 605 static void wait_for_keypress_at_exit(void);
sla@2584 606
duke@435 607 // The following two functions are used by fatal error handler to trace
duke@435 608 // native (C) frames. They are not part of frame.hpp/frame.cpp because
duke@435 609 // frame.hpp/cpp assume thread is JavaThread, and also because different
duke@435 610 // OS/compiler may have different convention or provide different API to
duke@435 611 // walk C frames.
duke@435 612 //
duke@435 613 // We don't attempt to become a debugger, so we only follow frames if that
duke@435 614 // does not require a lookup in the unwind table, which is part of the binary
duke@435 615 // file but may be unsafe to read after a fatal error. So on x86, we can
duke@435 616 // only walk stack if %ebp is used as frame pointer; on ia64, it's not
duke@435 617 // possible to walk C stack without having the unwind table.
duke@435 618 static bool is_first_C_frame(frame *fr);
duke@435 619 static frame get_sender_for_C_frame(frame *fr);
duke@435 620
duke@435 621 // return current frame. pc() and sp() are set to NULL on failure.
duke@435 622 static frame current_frame();
duke@435 623
duke@435 624 static void print_hex_dump(outputStream* st, address start, address end, int unitsize);
duke@435 625
duke@435 626 // returns a string to describe the exception/signal;
duke@435 627 // returns NULL if exception_code is not an OS exception/signal.
duke@435 628 static const char* exception_name(int exception_code, char* buf, size_t buflen);
duke@435 629
duke@435 630 // Returns native Java library, loads if necessary
duke@435 631 static void* native_java_library();
duke@435 632
ikrylov@2322 633 // Fills in path to jvm.dll/libjvm.so (used by the Disassembler)
duke@435 634 static void jvm_path(char *buf, jint buflen);
duke@435 635
bobv@2036 636 // Returns true if we are running in a headless jre.
bobv@2036 637 static bool is_headless_jre();
bobv@2036 638
duke@435 639 // JNI names
duke@435 640 static void print_jni_name_prefix_on(outputStream* st, int args_size);
duke@435 641 static void print_jni_name_suffix_on(outputStream* st, int args_size);
duke@435 642
duke@435 643 // File conventions
duke@435 644 static const char* file_separator();
duke@435 645 static const char* line_separator();
duke@435 646 static const char* path_separator();
duke@435 647
duke@435 648 // Init os specific system properties values
duke@435 649 static void init_system_properties_values();
duke@435 650
duke@435 651 // IO operations, non-JVM_ version.
duke@435 652 static int stat(const char* path, struct stat* sbuf);
duke@435 653 static bool dir_is_empty(const char* path);
duke@435 654
duke@435 655 // IO operations on binary files
duke@435 656 static int create_binary_file(const char* path, bool rewrite_existing);
duke@435 657 static jlong current_file_offset(int fd);
duke@435 658 static jlong seek_to_file_offset(int fd, jlong offset);
duke@435 659
duke@435 660 // Thread Local Storage
duke@435 661 static int allocate_thread_local_storage();
duke@435 662 static void thread_local_storage_at_put(int index, void* value);
duke@435 663 static void* thread_local_storage_at(int index);
duke@435 664 static void free_thread_local_storage(int index);
duke@435 665
zgu@7074 666 // Retrieve native stack frames.
zgu@7074 667 // Parameter:
zgu@7074 668 // stack: an array to storage stack pointers.
zgu@7074 669 // frames: size of above array.
zgu@7074 670 // toSkip: number of stack frames to skip at the beginning.
zgu@7074 671 // Return: number of stack frames captured.
zgu@7074 672 static int get_native_stack(address* stack, int size, int toSkip = 0);
zgu@3900 673
duke@435 674 // General allocation (must be MT-safe)
zgu@7074 675 static void* malloc (size_t size, MEMFLAGS flags, const NativeCallStack& stack);
zgu@7074 676 static void* malloc (size_t size, MEMFLAGS flags);
zgu@7074 677 static void* realloc (void *memblock, size_t size, MEMFLAGS flag, const NativeCallStack& stack);
zgu@7074 678 static void* realloc (void *memblock, size_t size, MEMFLAGS flag);
zgu@7074 679
zgu@3900 680 static void free (void *memblock, MEMFLAGS flags = mtNone);
duke@435 681 static bool check_heap(bool force = false); // verify C heap integrity
zgu@3900 682 static char* strdup(const char *, MEMFLAGS flags = mtInternal); // Like strdup
duke@435 683
duke@435 684 #ifndef PRODUCT
kvn@2557 685 static julong num_mallocs; // # of calls to malloc/realloc
kvn@2557 686 static julong alloc_bytes; // # of bytes allocated
kvn@2557 687 static julong num_frees; // # of calls to free
kvn@2557 688 static julong free_bytes; // # of bytes freed
duke@435 689 #endif
duke@435 690
ikrylov@2322 691 // SocketInterface (ex HPI SocketInterface )
ikrylov@2322 692 static int socket(int domain, int type, int protocol);
ikrylov@2322 693 static int socket_close(int fd);
ikrylov@2322 694 static int socket_shutdown(int fd, int howto);
phh@3344 695 static int recv(int fd, char* buf, size_t nBytes, uint flags);
phh@3344 696 static int send(int fd, char* buf, size_t nBytes, uint flags);
phh@3344 697 static int raw_send(int fd, char* buf, size_t nBytes, uint flags);
ikrylov@2322 698 static int timeout(int fd, long timeout);
ikrylov@2322 699 static int listen(int fd, int count);
phh@3344 700 static int connect(int fd, struct sockaddr* him, socklen_t len);
phh@3344 701 static int bind(int fd, struct sockaddr* him, socklen_t len);
phh@3344 702 static int accept(int fd, struct sockaddr* him, socklen_t* len);
phh@3344 703 static int recvfrom(int fd, char* buf, size_t nbytes, uint flags,
phh@3344 704 struct sockaddr* from, socklen_t* fromlen);
phh@3344 705 static int get_sock_name(int fd, struct sockaddr* him, socklen_t* len);
phh@3344 706 static int sendto(int fd, char* buf, size_t len, uint flags,
phh@3344 707 struct sockaddr* to, socklen_t tolen);
phh@3344 708 static int socket_available(int fd, jint* pbytes);
ikrylov@2322 709
ikrylov@2322 710 static int get_sock_opt(int fd, int level, int optname,
phh@3344 711 char* optval, socklen_t* optlen);
ikrylov@2322 712 static int set_sock_opt(int fd, int level, int optname,
phh@3344 713 const char* optval, socklen_t optlen);
ikrylov@2322 714 static int get_host_name(char* name, int namelen);
ikrylov@2322 715
phh@3344 716 static struct hostent* get_host_by_name(char* name);
ikrylov@2322 717
duke@435 718 // Support for signals (see JVM_RaiseSignal, JVM_RegisterSignal)
duke@435 719 static void signal_init();
duke@435 720 static void signal_init_pd();
duke@435 721 static void signal_notify(int signal_number);
duke@435 722 static void* signal(int signal_number, void* handler);
duke@435 723 static void signal_raise(int signal_number);
duke@435 724 static int signal_wait();
duke@435 725 static int signal_lookup();
duke@435 726 static void* user_handler();
duke@435 727 static void terminate_signal_thread();
duke@435 728 static int sigexitnum_pd();
duke@435 729
duke@435 730 // random number generation
duke@435 731 static long random(); // return 32bit pseudorandom number
duke@435 732 static void init_random(long initval); // initialize random sequence
duke@435 733
duke@435 734 // Structured OS Exception support
duke@435 735 static void os_exception_wrapper(java_call_t f, JavaValue* value, methodHandle* method, JavaCallArguments* args, Thread* thread);
duke@435 736
ctornqvi@2520 737 // On Windows this will create an actual minidump, on Linux/Solaris it will simply check core dump limits
ctornqvi@2520 738 static void check_or_create_dump(void* exceptionRecord, void* contextRecord, char* buffer, size_t bufferSize);
ctornqvi@2520 739
mikael@3903 740 // Get the default path to the core file
mikael@3903 741 // Returns the length of the string
mikael@3903 742 static int get_core_path(char* buffer, size_t bufferSize);
mikael@3903 743
duke@435 744 // JVMTI & JVM monitoring and management support
duke@435 745 // The thread_cpu_time() and current_thread_cpu_time() are only
duke@435 746 // supported if is_thread_cpu_time_supported() returns true.
duke@435 747 // They are not supported on Solaris T1.
duke@435 748
duke@435 749 // Thread CPU Time - return the fast estimate on a platform
duke@435 750 // On Solaris - call gethrvtime (fast) - user time only
duke@435 751 // On Linux - fast clock_gettime where available - user+sys
duke@435 752 // - otherwise: very slow /proc fs - user+sys
duke@435 753 // On Windows - GetThreadTimes - user+sys
duke@435 754 static jlong current_thread_cpu_time();
duke@435 755 static jlong thread_cpu_time(Thread* t);
duke@435 756
duke@435 757 // Thread CPU Time with user_sys_cpu_time parameter.
duke@435 758 //
duke@435 759 // If user_sys_cpu_time is true, user+sys time is returned.
duke@435 760 // Otherwise, only user time is returned
duke@435 761 static jlong current_thread_cpu_time(bool user_sys_cpu_time);
duke@435 762 static jlong thread_cpu_time(Thread* t, bool user_sys_cpu_time);
duke@435 763
duke@435 764 // Return a bunch of info about the timers.
duke@435 765 // Note that the returned info for these two functions may be different
duke@435 766 // on some platforms
duke@435 767 static void current_thread_cpu_time_info(jvmtiTimerInfo *info_ptr);
duke@435 768 static void thread_cpu_time_info(jvmtiTimerInfo *info_ptr);
duke@435 769
duke@435 770 static bool is_thread_cpu_time_supported();
duke@435 771
duke@435 772 // System loadavg support. Returns -1 if load average cannot be obtained.
duke@435 773 static int loadavg(double loadavg[], int nelem);
duke@435 774
duke@435 775 // Hook for os specific jvm options that we don't want to abort on seeing
duke@435 776 static bool obsolete_option(const JavaVMOption *option);
duke@435 777
phh@3378 778 // Extensions
phh@3378 779 #include "runtime/os_ext.hpp"
phh@3378 780
phh@3378 781 public:
rbackman@5424 782 class CrashProtectionCallback : public StackObj {
rbackman@5424 783 public:
rbackman@5424 784 virtual void call() = 0;
rbackman@5424 785 };
phh@3378 786
duke@435 787 // Platform dependent stuff
stefank@2314 788 #ifdef TARGET_OS_FAMILY_linux
stefank@2314 789 # include "os_linux.hpp"
nloodin@3783 790 # include "os_posix.hpp"
stefank@2314 791 #endif
stefank@2314 792 #ifdef TARGET_OS_FAMILY_solaris
stefank@2314 793 # include "os_solaris.hpp"
nloodin@3783 794 # include "os_posix.hpp"
stefank@2314 795 #endif
stefank@2314 796 #ifdef TARGET_OS_FAMILY_windows
stefank@2314 797 # include "os_windows.hpp"
stefank@2314 798 #endif
goetz@6461 799 #ifdef TARGET_OS_FAMILY_aix
goetz@6461 800 # include "os_aix.hpp"
goetz@6461 801 # include "os_posix.hpp"
goetz@6461 802 #endif
never@3156 803 #ifdef TARGET_OS_FAMILY_bsd
nloodin@3783 804 # include "os_posix.hpp"
never@3156 805 # include "os_bsd.hpp"
never@3156 806 #endif
stefank@2314 807 #ifdef TARGET_OS_ARCH_linux_x86
stefank@2314 808 # include "os_linux_x86.hpp"
stefank@2314 809 #endif
stefank@2314 810 #ifdef TARGET_OS_ARCH_linux_sparc
stefank@2314 811 # include "os_linux_sparc.hpp"
stefank@2314 812 #endif
stefank@2314 813 #ifdef TARGET_OS_ARCH_linux_zero
stefank@2314 814 # include "os_linux_zero.hpp"
stefank@2314 815 #endif
stefank@2314 816 #ifdef TARGET_OS_ARCH_solaris_x86
stefank@2314 817 # include "os_solaris_x86.hpp"
stefank@2314 818 #endif
stefank@2314 819 #ifdef TARGET_OS_ARCH_solaris_sparc
stefank@2314 820 # include "os_solaris_sparc.hpp"
stefank@2314 821 #endif
stefank@2314 822 #ifdef TARGET_OS_ARCH_windows_x86
stefank@2314 823 # include "os_windows_x86.hpp"
stefank@2314 824 #endif
bobv@2508 825 #ifdef TARGET_OS_ARCH_linux_arm
bobv@2508 826 # include "os_linux_arm.hpp"
bobv@2508 827 #endif
bobv@2508 828 #ifdef TARGET_OS_ARCH_linux_ppc
bobv@2508 829 # include "os_linux_ppc.hpp"
bobv@2508 830 #endif
goetz@6461 831 #ifdef TARGET_OS_ARCH_aix_ppc
goetz@6461 832 # include "os_aix_ppc.hpp"
goetz@6461 833 #endif
never@3156 834 #ifdef TARGET_OS_ARCH_bsd_x86
never@3156 835 # include "os_bsd_x86.hpp"
never@3156 836 #endif
never@3156 837 #ifdef TARGET_OS_ARCH_bsd_zero
never@3156 838 # include "os_bsd_zero.hpp"
never@3156 839 #endif
stefank@2314 840
phh@3378 841 public:
iklam@5667 842 #ifndef PLATFORM_PRINT_NATIVE_STACK
iklam@5667 843 // No platform-specific code for printing the native stack.
iklam@5667 844 static bool platform_print_native_stack(outputStream* st, void* context,
iklam@5667 845 char *buf, int buf_size) {
iklam@5667 846 return false;
iklam@5667 847 }
iklam@5667 848 #endif
iklam@5667 849
bobv@2036 850 // debugging support (mostly used by debug.cpp but also fatal error handler)
bobv@2036 851 static bool find(address pc, outputStream* st = tty); // OS specific function to make sense out of an address
duke@435 852
duke@435 853 static bool dont_yield(); // when true, JVM_Yield() is nop
duke@435 854 static void print_statistics();
duke@435 855
duke@435 856 // Thread priority helpers (implemented in OS-specific part)
duke@435 857 static OSReturn set_native_priority(Thread* thread, int native_prio);
duke@435 858 static OSReturn get_native_priority(const Thread* const thread, int* priority_ptr);
phh@3481 859 static int java_to_os_priority[CriticalPriority + 1];
duke@435 860 // Hint to the underlying OS that a task switch would not be good.
duke@435 861 // Void return because it's a hint and can fail.
duke@435 862 static void hint_no_preempt();
duke@435 863
duke@435 864 // Used at creation if requested by the diagnostic flag PauseAtStartup.
duke@435 865 // Causes the VM to wait until an external stimulus has been applied
duke@435 866 // (for Unix, that stimulus is a signal, for Windows, an external
duke@435 867 // ResumeThread call)
duke@435 868 static void pause();
duke@435 869
bpittore@5585 870 // Builds a platform dependent Agent_OnLoad_<libname> function name
bpittore@5585 871 // which is used to find statically linked in agents.
bpittore@5585 872 static char* build_agent_function_name(const char *sym, const char *cname,
bpittore@5585 873 bool is_absolute_path);
bpittore@5585 874
sla@5237 875 class SuspendedThreadTaskContext {
sla@5237 876 public:
sla@5237 877 SuspendedThreadTaskContext(Thread* thread, void *ucontext) : _thread(thread), _ucontext(ucontext) {}
sla@5237 878 Thread* thread() const { return _thread; }
sla@5237 879 void* ucontext() const { return _ucontext; }
sla@5237 880 private:
sla@5237 881 Thread* _thread;
sla@5237 882 void* _ucontext;
sla@5237 883 };
sla@5237 884
sla@5237 885 class SuspendedThreadTask {
sla@5237 886 public:
sla@5237 887 SuspendedThreadTask(Thread* thread) : _thread(thread), _done(false) {}
sla@5237 888 virtual ~SuspendedThreadTask() {}
sla@5237 889 void run();
sla@5237 890 bool is_done() { return _done; }
sla@5237 891 virtual void do_task(const SuspendedThreadTaskContext& context) = 0;
sla@5237 892 protected:
sla@5237 893 private:
sla@5237 894 void internal_do_task();
sla@5237 895 Thread* _thread;
sla@5237 896 bool _done;
sla@5237 897 };
sla@5237 898
sla@5237 899 #ifndef TARGET_OS_FAMILY_windows
sla@5237 900 // Suspend/resume support
sla@5237 901 // Protocol:
sla@5237 902 //
sla@5237 903 // a thread starts in SR_RUNNING
sla@5237 904 //
sla@5237 905 // SR_RUNNING can go to
sla@5237 906 // * SR_SUSPEND_REQUEST when the WatcherThread wants to suspend it
sla@5237 907 // SR_SUSPEND_REQUEST can go to
sla@5237 908 // * SR_RUNNING if WatcherThread decides it waited for SR_SUSPENDED too long (timeout)
sla@5237 909 // * SR_SUSPENDED if the stopped thread receives the signal and switches state
sla@5237 910 // SR_SUSPENDED can go to
sla@5237 911 // * SR_WAKEUP_REQUEST when the WatcherThread has done the work and wants to resume
sla@5237 912 // SR_WAKEUP_REQUEST can go to
sla@5237 913 // * SR_RUNNING when the stopped thread receives the signal
sla@5237 914 // * SR_WAKEUP_REQUEST on timeout (resend the signal and try again)
sla@5237 915 class SuspendResume {
sla@5237 916 public:
sla@5237 917 enum State {
sla@5237 918 SR_RUNNING,
sla@5237 919 SR_SUSPEND_REQUEST,
sla@5237 920 SR_SUSPENDED,
sla@5237 921 SR_WAKEUP_REQUEST
sla@5237 922 };
sla@5237 923
sla@5237 924 private:
sla@5237 925 volatile State _state;
sla@5237 926
sla@5237 927 private:
sla@5237 928 /* try to switch state from state "from" to state "to"
sla@5237 929 * returns the state set after the method is complete
sla@5237 930 */
sla@5237 931 State switch_state(State from, State to);
sla@5237 932
sla@5237 933 public:
sla@5237 934 SuspendResume() : _state(SR_RUNNING) { }
sla@5237 935
sla@5237 936 State state() const { return _state; }
sla@5237 937
sla@5237 938 State request_suspend() {
sla@5237 939 return switch_state(SR_RUNNING, SR_SUSPEND_REQUEST);
sla@5237 940 }
sla@5237 941
sla@5237 942 State cancel_suspend() {
sla@5237 943 return switch_state(SR_SUSPEND_REQUEST, SR_RUNNING);
sla@5237 944 }
sla@5237 945
sla@5237 946 State suspended() {
sla@5237 947 return switch_state(SR_SUSPEND_REQUEST, SR_SUSPENDED);
sla@5237 948 }
sla@5237 949
sla@5237 950 State request_wakeup() {
sla@5237 951 return switch_state(SR_SUSPENDED, SR_WAKEUP_REQUEST);
sla@5237 952 }
sla@5237 953
sla@5237 954 State running() {
sla@5237 955 return switch_state(SR_WAKEUP_REQUEST, SR_RUNNING);
sla@5237 956 }
sla@5237 957
sla@5237 958 bool is_running() const {
sla@5237 959 return _state == SR_RUNNING;
sla@5237 960 }
sla@5237 961
sla@5237 962 bool is_suspend_request() const {
sla@5237 963 return _state == SR_SUSPEND_REQUEST;
sla@5237 964 }
sla@5237 965
sla@5237 966 bool is_suspended() const {
sla@5237 967 return _state == SR_SUSPENDED;
sla@5237 968 }
sla@5237 969 };
sla@5237 970 #endif
sla@5237 971
sla@5237 972
duke@435 973 protected:
duke@435 974 static long _rand_seed; // seed for random number generator
duke@435 975 static int _processor_count; // number of processors
duke@435 976
duke@435 977 static char* format_boot_path(const char* format_string,
duke@435 978 const char* home,
duke@435 979 int home_len,
duke@435 980 char fileSep,
duke@435 981 char pathSep);
duke@435 982 static bool set_boot_path(char fileSep, char pathSep);
phh@1126 983 static char** split_path(const char* path, int* n);
rbackman@5424 984
duke@435 985 };
duke@435 986
duke@435 987 // Note that "PAUSE" is almost always used with synchronization
duke@435 988 // so arguably we should provide Atomic::SpinPause() instead
duke@435 989 // of the global SpinPause() with C linkage.
duke@435 990 // It'd also be eligible for inlining on many platforms.
duke@435 991
goetz@5400 992 extern "C" int SpinPause();
stefank@2314 993
stefank@2314 994 #endif // SHARE_VM_RUNTIME_OS_HPP

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