Mercurial > hg > truffle
annotate src/os/windows/vm/os_windows.cpp @ 10942:56a86b60c9d3
Early exit of SerialArrayRange barrier if vector length==0
author | Christos Kotselidis <christos.kotselidis@oracle.com> |
---|---|
date | Fri, 02 Aug 2013 13:43:15 +0200 |
parents | 836a62f43af9 |
children | 6b0fd0964b87 |
rev | line source |
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0 | 1 /* |
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2 * Copyright (c) 1997, 2013, 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 | |
6916 | 25 // Must be at least Windows 2000 or XP to use IsDebuggerPresent |
0 | 26 #define _WIN32_WINNT 0x500 |
27 | |
1972 | 28 // no precompiled headers |
29 #include "classfile/classLoader.hpp" | |
30 #include "classfile/systemDictionary.hpp" | |
31 #include "classfile/vmSymbols.hpp" | |
32 #include "code/icBuffer.hpp" | |
33 #include "code/vtableStubs.hpp" | |
34 #include "compiler/compileBroker.hpp" | |
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35 #include "compiler/disassembler.hpp" |
1972 | 36 #include "interpreter/interpreter.hpp" |
37 #include "jvm_windows.h" | |
38 #include "memory/allocation.inline.hpp" | |
39 #include "memory/filemap.hpp" | |
40 #include "mutex_windows.inline.hpp" | |
41 #include "oops/oop.inline.hpp" | |
42 #include "os_share_windows.hpp" | |
43 #include "prims/jniFastGetField.hpp" | |
44 #include "prims/jvm.h" | |
45 #include "prims/jvm_misc.hpp" | |
46 #include "runtime/arguments.hpp" | |
47 #include "runtime/extendedPC.hpp" | |
48 #include "runtime/globals.hpp" | |
49 #include "runtime/interfaceSupport.hpp" | |
50 #include "runtime/java.hpp" | |
51 #include "runtime/javaCalls.hpp" | |
52 #include "runtime/mutexLocker.hpp" | |
53 #include "runtime/objectMonitor.hpp" | |
54 #include "runtime/osThread.hpp" | |
55 #include "runtime/perfMemory.hpp" | |
56 #include "runtime/sharedRuntime.hpp" | |
57 #include "runtime/statSampler.hpp" | |
58 #include "runtime/stubRoutines.hpp" | |
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59 #include "runtime/thread.inline.hpp" |
1972 | 60 #include "runtime/threadCritical.hpp" |
61 #include "runtime/timer.hpp" | |
62 #include "services/attachListener.hpp" | |
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63 #include "services/memTracker.hpp" |
1972 | 64 #include "services/runtimeService.hpp" |
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65 #include "utilities/decoder.hpp" |
1972 | 66 #include "utilities/defaultStream.hpp" |
67 #include "utilities/events.hpp" | |
68 #include "utilities/growableArray.hpp" | |
69 #include "utilities/vmError.hpp" | |
0 | 70 |
71 #ifdef _DEBUG | |
72 #include <crtdbg.h> | |
73 #endif | |
74 | |
75 | |
76 #include <windows.h> | |
77 #include <sys/types.h> | |
78 #include <sys/stat.h> | |
79 #include <sys/timeb.h> | |
80 #include <objidl.h> | |
81 #include <shlobj.h> | |
82 | |
83 #include <malloc.h> | |
84 #include <signal.h> | |
85 #include <direct.h> | |
86 #include <errno.h> | |
87 #include <fcntl.h> | |
88 #include <io.h> | |
89 #include <process.h> // For _beginthreadex(), _endthreadex() | |
90 #include <imagehlp.h> // For os::dll_address_to_function_name | |
91 /* for enumerating dll libraries */ | |
92 #include <vdmdbg.h> | |
93 | |
94 // for timer info max values which include all bits | |
95 #define ALL_64_BITS CONST64(0xFFFFFFFFFFFFFFFF) | |
96 | |
97 // For DLL loading/load error detection | |
98 // Values of PE COFF | |
99 #define IMAGE_FILE_PTR_TO_SIGNATURE 0x3c | |
100 #define IMAGE_FILE_SIGNATURE_LENGTH 4 | |
101 | |
102 static HANDLE main_process; | |
103 static HANDLE main_thread; | |
104 static int main_thread_id; | |
105 | |
106 static FILETIME process_creation_time; | |
107 static FILETIME process_exit_time; | |
108 static FILETIME process_user_time; | |
109 static FILETIME process_kernel_time; | |
110 | |
111 #ifdef _M_IA64 | |
112 #define __CPU__ ia64 | |
113 #elif _M_AMD64 | |
114 #define __CPU__ amd64 | |
115 #else | |
116 #define __CPU__ i486 | |
117 #endif | |
118 | |
119 // save DLL module handle, used by GetModuleFileName | |
120 | |
121 HINSTANCE vm_lib_handle; | |
122 | |
123 BOOL WINAPI DllMain(HINSTANCE hinst, DWORD reason, LPVOID reserved) { | |
124 switch (reason) { | |
125 case DLL_PROCESS_ATTACH: | |
126 vm_lib_handle = hinst; | |
127 if(ForceTimeHighResolution) | |
128 timeBeginPeriod(1L); | |
129 break; | |
130 case DLL_PROCESS_DETACH: | |
131 if(ForceTimeHighResolution) | |
132 timeEndPeriod(1L); | |
133 break; | |
134 default: | |
135 break; | |
136 } | |
137 return true; | |
138 } | |
139 | |
140 static inline double fileTimeAsDouble(FILETIME* time) { | |
141 const double high = (double) ((unsigned int) ~0); | |
142 const double split = 10000000.0; | |
143 double result = (time->dwLowDateTime / split) + | |
144 time->dwHighDateTime * (high/split); | |
145 return result; | |
146 } | |
147 | |
148 // Implementation of os | |
149 | |
150 bool os::getenv(const char* name, char* buffer, int len) { | |
151 int result = GetEnvironmentVariable(name, buffer, len); | |
152 return result > 0 && result < len; | |
153 } | |
154 | |
155 | |
156 // No setuid programs under Windows. | |
157 bool os::have_special_privileges() { | |
158 return false; | |
159 } | |
160 | |
161 | |
162 // This method is a periodic task to check for misbehaving JNI applications | |
163 // under CheckJNI, we can add any periodic checks here. | |
164 // For Windows at the moment does nothing | |
165 void os::run_periodic_checks() { | |
166 return; | |
167 } | |
168 | |
169 #ifndef _WIN64 | |
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170 // previous UnhandledExceptionFilter, if there is one |
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171 static LPTOP_LEVEL_EXCEPTION_FILTER prev_uef_handler = NULL; |
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172 |
0 | 173 LONG WINAPI Handle_FLT_Exception(struct _EXCEPTION_POINTERS* exceptionInfo); |
174 #endif | |
175 void os::init_system_properties_values() { | |
176 /* sysclasspath, java_home, dll_dir */ | |
177 { | |
178 char *home_path; | |
179 char *dll_path; | |
180 char *pslash; | |
181 char *bin = "\\bin"; | |
182 char home_dir[MAX_PATH]; | |
183 | |
184 if (!getenv("_ALT_JAVA_HOME_DIR", home_dir, MAX_PATH)) { | |
185 os::jvm_path(home_dir, sizeof(home_dir)); | |
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186 // Found the full path to jvm.dll. |
0 | 187 // Now cut the path to <java_home>/jre if we can. |
188 *(strrchr(home_dir, '\\')) = '\0'; /* get rid of \jvm.dll */ | |
189 pslash = strrchr(home_dir, '\\'); | |
190 if (pslash != NULL) { | |
191 *pslash = '\0'; /* get rid of \{client|server} */ | |
192 pslash = strrchr(home_dir, '\\'); | |
193 if (pslash != NULL) | |
194 *pslash = '\0'; /* get rid of \bin */ | |
195 } | |
196 } | |
197 | |
6197 | 198 home_path = NEW_C_HEAP_ARRAY(char, strlen(home_dir) + 1, mtInternal); |
0 | 199 if (home_path == NULL) |
200 return; | |
201 strcpy(home_path, home_dir); | |
202 Arguments::set_java_home(home_path); | |
203 | |
6197 | 204 dll_path = NEW_C_HEAP_ARRAY(char, strlen(home_dir) + strlen(bin) + 1, mtInternal); |
0 | 205 if (dll_path == NULL) |
206 return; | |
207 strcpy(dll_path, home_dir); | |
208 strcat(dll_path, bin); | |
209 Arguments::set_dll_dir(dll_path); | |
210 | |
211 if (!set_boot_path('\\', ';')) | |
212 return; | |
213 } | |
214 | |
215 /* library_path */ | |
216 #define EXT_DIR "\\lib\\ext" | |
217 #define BIN_DIR "\\bin" | |
218 #define PACKAGE_DIR "\\Sun\\Java" | |
219 { | |
220 /* Win32 library search order (See the documentation for LoadLibrary): | |
221 * | |
222 * 1. The directory from which application is loaded. | |
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223 * 2. The system wide Java Extensions directory (Java only) |
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224 * 3. System directory (GetSystemDirectory) |
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225 * 4. Windows directory (GetWindowsDirectory) |
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226 * 5. The PATH environment variable |
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227 * 6. The current directory |
0 | 228 */ |
229 | |
230 char *library_path; | |
231 char tmp[MAX_PATH]; | |
232 char *path_str = ::getenv("PATH"); | |
233 | |
234 library_path = NEW_C_HEAP_ARRAY(char, MAX_PATH * 5 + sizeof(PACKAGE_DIR) + | |
6197 | 235 sizeof(BIN_DIR) + (path_str ? strlen(path_str) : 0) + 10, mtInternal); |
0 | 236 |
237 library_path[0] = '\0'; | |
238 | |
239 GetModuleFileName(NULL, tmp, sizeof(tmp)); | |
240 *(strrchr(tmp, '\\')) = '\0'; | |
241 strcat(library_path, tmp); | |
242 | |
243 GetWindowsDirectory(tmp, sizeof(tmp)); | |
244 strcat(library_path, ";"); | |
245 strcat(library_path, tmp); | |
246 strcat(library_path, PACKAGE_DIR BIN_DIR); | |
247 | |
248 GetSystemDirectory(tmp, sizeof(tmp)); | |
249 strcat(library_path, ";"); | |
250 strcat(library_path, tmp); | |
251 | |
252 GetWindowsDirectory(tmp, sizeof(tmp)); | |
253 strcat(library_path, ";"); | |
254 strcat(library_path, tmp); | |
255 | |
256 if (path_str) { | |
257 strcat(library_path, ";"); | |
258 strcat(library_path, path_str); | |
259 } | |
260 | |
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261 strcat(library_path, ";."); |
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262 |
0 | 263 Arguments::set_library_path(library_path); |
6197 | 264 FREE_C_HEAP_ARRAY(char, library_path, mtInternal); |
0 | 265 } |
266 | |
267 /* Default extensions directory */ | |
268 { | |
269 char path[MAX_PATH]; | |
270 char buf[2 * MAX_PATH + 2 * sizeof(EXT_DIR) + sizeof(PACKAGE_DIR) + 1]; | |
271 GetWindowsDirectory(path, MAX_PATH); | |
272 sprintf(buf, "%s%s;%s%s%s", Arguments::get_java_home(), EXT_DIR, | |
273 path, PACKAGE_DIR, EXT_DIR); | |
274 Arguments::set_ext_dirs(buf); | |
275 } | |
276 #undef EXT_DIR | |
277 #undef BIN_DIR | |
278 #undef PACKAGE_DIR | |
279 | |
280 /* Default endorsed standards directory. */ | |
281 { | |
282 #define ENDORSED_DIR "\\lib\\endorsed" | |
283 size_t len = strlen(Arguments::get_java_home()) + sizeof(ENDORSED_DIR); | |
6197 | 284 char * buf = NEW_C_HEAP_ARRAY(char, len, mtInternal); |
0 | 285 sprintf(buf, "%s%s", Arguments::get_java_home(), ENDORSED_DIR); |
286 Arguments::set_endorsed_dirs(buf); | |
287 #undef ENDORSED_DIR | |
288 } | |
289 | |
290 #ifndef _WIN64 | |
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291 // set our UnhandledExceptionFilter and save any previous one |
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292 prev_uef_handler = SetUnhandledExceptionFilter(Handle_FLT_Exception); |
0 | 293 #endif |
294 | |
295 // Done | |
296 return; | |
297 } | |
298 | |
299 void os::breakpoint() { | |
300 DebugBreak(); | |
301 } | |
302 | |
303 // Invoked from the BREAKPOINT Macro | |
304 extern "C" void breakpoint() { | |
305 os::breakpoint(); | |
306 } | |
307 | |
6197 | 308 /* |
309 * RtlCaptureStackBackTrace Windows API may not exist prior to Windows XP. | |
310 * So far, this method is only used by Native Memory Tracking, which is | |
311 * only supported on Windows XP or later. | |
312 */ | |
313 address os::get_caller_pc(int n) { | |
314 #ifdef _NMT_NOINLINE_ | |
315 n ++; | |
316 #endif | |
317 address pc; | |
318 if (os::Kernel32Dll::RtlCaptureStackBackTrace(n + 1, 1, (PVOID*)&pc, NULL) == 1) { | |
319 return pc; | |
320 } | |
321 return NULL; | |
322 } | |
323 | |
324 | |
0 | 325 // os::current_stack_base() |
326 // | |
327 // Returns the base of the stack, which is the stack's | |
328 // starting address. This function must be called | |
329 // while running on the stack of the thread being queried. | |
330 | |
331 address os::current_stack_base() { | |
332 MEMORY_BASIC_INFORMATION minfo; | |
333 address stack_bottom; | |
334 size_t stack_size; | |
335 | |
336 VirtualQuery(&minfo, &minfo, sizeof(minfo)); | |
337 stack_bottom = (address)minfo.AllocationBase; | |
338 stack_size = minfo.RegionSize; | |
339 | |
340 // Add up the sizes of all the regions with the same | |
341 // AllocationBase. | |
342 while( 1 ) | |
343 { | |
344 VirtualQuery(stack_bottom+stack_size, &minfo, sizeof(minfo)); | |
345 if ( stack_bottom == (address)minfo.AllocationBase ) | |
346 stack_size += minfo.RegionSize; | |
347 else | |
348 break; | |
349 } | |
350 | |
351 #ifdef _M_IA64 | |
352 // IA64 has memory and register stacks | |
7994 | 353 // |
354 // This is the stack layout you get on NT/IA64 if you specify 1MB stack limit | |
355 // at thread creation (1MB backing store growing upwards, 1MB memory stack | |
356 // growing downwards, 2MB summed up) | |
357 // | |
358 // ... | |
359 // ------- top of stack (high address) ----- | |
360 // | | |
361 // | 1MB | |
362 // | Backing Store (Register Stack) | |
363 // | | |
364 // | / \ | |
365 // | | | |
366 // | | | |
367 // | | | |
368 // ------------------------ stack base ----- | |
369 // | 1MB | |
370 // | Memory Stack | |
371 // | | |
372 // | | | |
373 // | | | |
374 // | | | |
375 // | \ / | |
376 // | | |
377 // ----- bottom of stack (low address) ----- | |
378 // ... | |
379 | |
0 | 380 stack_size = stack_size / 2; |
381 #endif | |
382 return stack_bottom + stack_size; | |
383 } | |
384 | |
385 size_t os::current_stack_size() { | |
386 size_t sz; | |
387 MEMORY_BASIC_INFORMATION minfo; | |
388 VirtualQuery(&minfo, &minfo, sizeof(minfo)); | |
389 sz = (size_t)os::current_stack_base() - (size_t)minfo.AllocationBase; | |
390 return sz; | |
391 } | |
392 | |
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393 struct tm* os::localtime_pd(const time_t* clock, struct tm* res) { |
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394 const struct tm* time_struct_ptr = localtime(clock); |
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395 if (time_struct_ptr != NULL) { |
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396 *res = *time_struct_ptr; |
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397 return res; |
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398 } |
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399 return NULL; |
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400 } |
0 | 401 |
402 LONG WINAPI topLevelExceptionFilter(struct _EXCEPTION_POINTERS* exceptionInfo); | |
403 | |
404 // Thread start routine for all new Java threads | |
405 static unsigned __stdcall java_start(Thread* thread) { | |
406 // Try to randomize the cache line index of hot stack frames. | |
407 // This helps when threads of the same stack traces evict each other's | |
408 // cache lines. The threads can be either from the same JVM instance, or | |
409 // from different JVM instances. The benefit is especially true for | |
410 // processors with hyperthreading technology. | |
411 static int counter = 0; | |
412 int pid = os::current_process_id(); | |
413 _alloca(((pid ^ counter++) & 7) * 128); | |
414 | |
415 OSThread* osthr = thread->osthread(); | |
416 assert(osthr->get_state() == RUNNABLE, "invalid os thread state"); | |
417 | |
418 if (UseNUMA) { | |
419 int lgrp_id = os::numa_get_group_id(); | |
420 if (lgrp_id != -1) { | |
421 thread->set_lgrp_id(lgrp_id); | |
422 } | |
423 } | |
424 | |
425 | |
6916 | 426 // Install a win32 structured exception handler around every thread created |
427 // by VM, so VM can genrate error dump when an exception occurred in non- | |
428 // Java thread (e.g. VM thread). | |
429 __try { | |
430 thread->run(); | |
431 } __except(topLevelExceptionFilter( | |
432 (_EXCEPTION_POINTERS*)_exception_info())) { | |
433 // Nothing to do. | |
0 | 434 } |
435 | |
436 // One less thread is executing | |
437 // When the VMThread gets here, the main thread may have already exited | |
438 // which frees the CodeHeap containing the Atomic::add code | |
439 if (thread != VMThread::vm_thread() && VMThread::vm_thread() != NULL) { | |
440 Atomic::dec_ptr((intptr_t*)&os::win32::_os_thread_count); | |
441 } | |
442 | |
443 return 0; | |
444 } | |
445 | |
446 static OSThread* create_os_thread(Thread* thread, HANDLE thread_handle, int thread_id) { | |
447 // Allocate the OSThread object | |
448 OSThread* osthread = new OSThread(NULL, NULL); | |
449 if (osthread == NULL) return NULL; | |
450 | |
451 // Initialize support for Java interrupts | |
452 HANDLE interrupt_event = CreateEvent(NULL, true, false, NULL); | |
453 if (interrupt_event == NULL) { | |
454 delete osthread; | |
455 return NULL; | |
456 } | |
457 osthread->set_interrupt_event(interrupt_event); | |
458 | |
459 // Store info on the Win32 thread into the OSThread | |
460 osthread->set_thread_handle(thread_handle); | |
461 osthread->set_thread_id(thread_id); | |
462 | |
463 if (UseNUMA) { | |
464 int lgrp_id = os::numa_get_group_id(); | |
465 if (lgrp_id != -1) { | |
466 thread->set_lgrp_id(lgrp_id); | |
467 } | |
468 } | |
469 | |
470 // Initial thread state is INITIALIZED, not SUSPENDED | |
471 osthread->set_state(INITIALIZED); | |
472 | |
473 return osthread; | |
474 } | |
475 | |
476 | |
477 bool os::create_attached_thread(JavaThread* thread) { | |
478 #ifdef ASSERT | |
479 thread->verify_not_published(); | |
480 #endif | |
481 HANDLE thread_h; | |
482 if (!DuplicateHandle(main_process, GetCurrentThread(), GetCurrentProcess(), | |
483 &thread_h, THREAD_ALL_ACCESS, false, 0)) { | |
484 fatal("DuplicateHandle failed\n"); | |
485 } | |
486 OSThread* osthread = create_os_thread(thread, thread_h, | |
487 (int)current_thread_id()); | |
488 if (osthread == NULL) { | |
489 return false; | |
490 } | |
491 | |
492 // Initial thread state is RUNNABLE | |
493 osthread->set_state(RUNNABLE); | |
494 | |
495 thread->set_osthread(osthread); | |
496 return true; | |
497 } | |
498 | |
499 bool os::create_main_thread(JavaThread* thread) { | |
500 #ifdef ASSERT | |
501 thread->verify_not_published(); | |
502 #endif | |
503 if (_starting_thread == NULL) { | |
504 _starting_thread = create_os_thread(thread, main_thread, main_thread_id); | |
505 if (_starting_thread == NULL) { | |
506 return false; | |
507 } | |
508 } | |
509 | |
510 // The primordial thread is runnable from the start) | |
511 _starting_thread->set_state(RUNNABLE); | |
512 | |
513 thread->set_osthread(_starting_thread); | |
514 return true; | |
515 } | |
516 | |
517 // Allocate and initialize a new OSThread | |
518 bool os::create_thread(Thread* thread, ThreadType thr_type, size_t stack_size) { | |
519 unsigned thread_id; | |
520 | |
521 // Allocate the OSThread object | |
522 OSThread* osthread = new OSThread(NULL, NULL); | |
523 if (osthread == NULL) { | |
524 return false; | |
525 } | |
526 | |
527 // Initialize support for Java interrupts | |
528 HANDLE interrupt_event = CreateEvent(NULL, true, false, NULL); | |
529 if (interrupt_event == NULL) { | |
530 delete osthread; | |
531 return NULL; | |
532 } | |
533 osthread->set_interrupt_event(interrupt_event); | |
534 osthread->set_interrupted(false); | |
535 | |
536 thread->set_osthread(osthread); | |
537 | |
538 if (stack_size == 0) { | |
539 switch (thr_type) { | |
540 case os::java_thread: | |
541 // Java threads use ThreadStackSize which default value can be changed with the flag -Xss | |
542 if (JavaThread::stack_size_at_create() > 0) | |
543 stack_size = JavaThread::stack_size_at_create(); | |
544 break; | |
545 case os::compiler_thread: | |
546 if (CompilerThreadStackSize > 0) { | |
547 stack_size = (size_t)(CompilerThreadStackSize * K); | |
548 break; | |
549 } // else fall through: | |
550 // use VMThreadStackSize if CompilerThreadStackSize is not defined | |
551 case os::vm_thread: | |
552 case os::pgc_thread: | |
553 case os::cgc_thread: | |
554 case os::watcher_thread: | |
555 if (VMThreadStackSize > 0) stack_size = (size_t)(VMThreadStackSize * K); | |
556 break; | |
557 } | |
558 } | |
559 | |
560 // Create the Win32 thread | |
561 // | |
562 // Contrary to what MSDN document says, "stack_size" in _beginthreadex() | |
563 // does not specify stack size. Instead, it specifies the size of | |
564 // initially committed space. The stack size is determined by | |
565 // PE header in the executable. If the committed "stack_size" is larger | |
566 // than default value in the PE header, the stack is rounded up to the | |
567 // nearest multiple of 1MB. For example if the launcher has default | |
568 // stack size of 320k, specifying any size less than 320k does not | |
569 // affect the actual stack size at all, it only affects the initial | |
570 // commitment. On the other hand, specifying 'stack_size' larger than | |
571 // default value may cause significant increase in memory usage, because | |
572 // not only the stack space will be rounded up to MB, but also the | |
573 // entire space is committed upfront. | |
574 // | |
575 // Finally Windows XP added a new flag 'STACK_SIZE_PARAM_IS_A_RESERVATION' | |
576 // for CreateThread() that can treat 'stack_size' as stack size. However we | |
577 // are not supposed to call CreateThread() directly according to MSDN | |
578 // document because JVM uses C runtime library. The good news is that the | |
579 // flag appears to work with _beginthredex() as well. | |
580 | |
581 #ifndef STACK_SIZE_PARAM_IS_A_RESERVATION | |
582 #define STACK_SIZE_PARAM_IS_A_RESERVATION (0x10000) | |
583 #endif | |
584 | |
585 HANDLE thread_handle = | |
586 (HANDLE)_beginthreadex(NULL, | |
587 (unsigned)stack_size, | |
588 (unsigned (__stdcall *)(void*)) java_start, | |
589 thread, | |
590 CREATE_SUSPENDED | STACK_SIZE_PARAM_IS_A_RESERVATION, | |
591 &thread_id); | |
592 if (thread_handle == NULL) { | |
593 // perhaps STACK_SIZE_PARAM_IS_A_RESERVATION is not supported, try again | |
594 // without the flag. | |
595 thread_handle = | |
596 (HANDLE)_beginthreadex(NULL, | |
597 (unsigned)stack_size, | |
598 (unsigned (__stdcall *)(void*)) java_start, | |
599 thread, | |
600 CREATE_SUSPENDED, | |
601 &thread_id); | |
602 } | |
603 if (thread_handle == NULL) { | |
604 // Need to clean up stuff we've allocated so far | |
605 CloseHandle(osthread->interrupt_event()); | |
606 thread->set_osthread(NULL); | |
607 delete osthread; | |
608 return NULL; | |
609 } | |
610 | |
611 Atomic::inc_ptr((intptr_t*)&os::win32::_os_thread_count); | |
612 | |
613 // Store info on the Win32 thread into the OSThread | |
614 osthread->set_thread_handle(thread_handle); | |
615 osthread->set_thread_id(thread_id); | |
616 | |
617 // Initial thread state is INITIALIZED, not SUSPENDED | |
618 osthread->set_state(INITIALIZED); | |
619 | |
620 // The thread is returned suspended (in state INITIALIZED), and is started higher up in the call chain | |
621 return true; | |
622 } | |
623 | |
624 | |
625 // Free Win32 resources related to the OSThread | |
626 void os::free_thread(OSThread* osthread) { | |
627 assert(osthread != NULL, "osthread not set"); | |
628 CloseHandle(osthread->thread_handle()); | |
629 CloseHandle(osthread->interrupt_event()); | |
630 delete osthread; | |
631 } | |
632 | |
633 | |
634 static int has_performance_count = 0; | |
635 static jlong first_filetime; | |
636 static jlong initial_performance_count; | |
637 static jlong performance_frequency; | |
638 | |
639 | |
640 jlong as_long(LARGE_INTEGER x) { | |
641 jlong result = 0; // initialization to avoid warning | |
642 set_high(&result, x.HighPart); | |
643 set_low(&result, x.LowPart); | |
644 return result; | |
645 } | |
646 | |
647 | |
648 jlong os::elapsed_counter() { | |
649 LARGE_INTEGER count; | |
650 if (has_performance_count) { | |
651 QueryPerformanceCounter(&count); | |
652 return as_long(count) - initial_performance_count; | |
653 } else { | |
654 FILETIME wt; | |
655 GetSystemTimeAsFileTime(&wt); | |
656 return (jlong_from(wt.dwHighDateTime, wt.dwLowDateTime) - first_filetime); | |
657 } | |
658 } | |
659 | |
660 | |
661 jlong os::elapsed_frequency() { | |
662 if (has_performance_count) { | |
663 return performance_frequency; | |
664 } else { | |
665 // the FILETIME time is the number of 100-nanosecond intervals since January 1,1601. | |
666 return 10000000; | |
667 } | |
668 } | |
669 | |
670 | |
671 julong os::available_memory() { | |
672 return win32::available_memory(); | |
673 } | |
674 | |
675 julong os::win32::available_memory() { | |
877
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676 // Use GlobalMemoryStatusEx() because GlobalMemoryStatus() may return incorrect |
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677 // value if total memory is larger than 4GB |
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678 MEMORYSTATUSEX ms; |
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679 ms.dwLength = sizeof(ms); |
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680 GlobalMemoryStatusEx(&ms); |
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681 |
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682 return (julong)ms.ullAvailPhys; |
0 | 683 } |
684 | |
685 julong os::physical_memory() { | |
686 return win32::physical_memory(); | |
687 } | |
688 | |
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689 bool os::has_allocatable_memory_limit(julong* limit) { |
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690 MEMORYSTATUSEX ms; |
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691 ms.dwLength = sizeof(ms); |
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692 GlobalMemoryStatusEx(&ms); |
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693 #ifdef _LP64 |
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694 *limit = (julong)ms.ullAvailVirtual; |
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695 return true; |
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696 #else |
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697 // Limit to 1400m because of the 2gb address space wall |
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698 *limit = MIN2((julong)1400*M, (julong)ms.ullAvailVirtual); |
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699 return true; |
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700 #endif |
0 | 701 } |
702 | |
703 // VC6 lacks DWORD_PTR | |
704 #if _MSC_VER < 1300 | |
705 typedef UINT_PTR DWORD_PTR; | |
706 #endif | |
707 | |
708 int os::active_processor_count() { | |
709 DWORD_PTR lpProcessAffinityMask = 0; | |
710 DWORD_PTR lpSystemAffinityMask = 0; | |
711 int proc_count = processor_count(); | |
712 if (proc_count <= sizeof(UINT_PTR) * BitsPerByte && | |
713 GetProcessAffinityMask(GetCurrentProcess(), &lpProcessAffinityMask, &lpSystemAffinityMask)) { | |
714 // Nof active processors is number of bits in process affinity mask | |
715 int bitcount = 0; | |
716 while (lpProcessAffinityMask != 0) { | |
717 lpProcessAffinityMask = lpProcessAffinityMask & (lpProcessAffinityMask-1); | |
718 bitcount++; | |
719 } | |
720 return bitcount; | |
721 } else { | |
722 return proc_count; | |
723 } | |
724 } | |
725 | |
4006 | 726 void os::set_native_thread_name(const char *name) { |
727 // Not yet implemented. | |
728 return; | |
729 } | |
730 | |
0 | 731 bool os::distribute_processes(uint length, uint* distribution) { |
732 // Not yet implemented. | |
733 return false; | |
734 } | |
735 | |
736 bool os::bind_to_processor(uint processor_id) { | |
737 // Not yet implemented. | |
738 return false; | |
739 } | |
740 | |
741 static void initialize_performance_counter() { | |
742 LARGE_INTEGER count; | |
743 if (QueryPerformanceFrequency(&count)) { | |
744 has_performance_count = 1; | |
745 performance_frequency = as_long(count); | |
746 QueryPerformanceCounter(&count); | |
747 initial_performance_count = as_long(count); | |
748 } else { | |
749 has_performance_count = 0; | |
750 FILETIME wt; | |
751 GetSystemTimeAsFileTime(&wt); | |
752 first_filetime = jlong_from(wt.dwHighDateTime, wt.dwLowDateTime); | |
753 } | |
754 } | |
755 | |
756 | |
757 double os::elapsedTime() { | |
758 return (double) elapsed_counter() / (double) elapsed_frequency(); | |
759 } | |
760 | |
761 | |
762 // Windows format: | |
763 // The FILETIME structure is a 64-bit value representing the number of 100-nanosecond intervals since January 1, 1601. | |
764 // Java format: | |
765 // Java standards require the number of milliseconds since 1/1/1970 | |
766 | |
767 // Constant offset - calculated using offset() | |
768 static jlong _offset = 116444736000000000; | |
769 // Fake time counter for reproducible results when debugging | |
770 static jlong fake_time = 0; | |
771 | |
772 #ifdef ASSERT | |
773 // Just to be safe, recalculate the offset in debug mode | |
774 static jlong _calculated_offset = 0; | |
775 static int _has_calculated_offset = 0; | |
776 | |
777 jlong offset() { | |
778 if (_has_calculated_offset) return _calculated_offset; | |
779 SYSTEMTIME java_origin; | |
780 java_origin.wYear = 1970; | |
781 java_origin.wMonth = 1; | |
782 java_origin.wDayOfWeek = 0; // ignored | |
783 java_origin.wDay = 1; | |
784 java_origin.wHour = 0; | |
785 java_origin.wMinute = 0; | |
786 java_origin.wSecond = 0; | |
787 java_origin.wMilliseconds = 0; | |
788 FILETIME jot; | |
789 if (!SystemTimeToFileTime(&java_origin, &jot)) { | |
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790 fatal(err_msg("Error = %d\nWindows error", GetLastError())); |
0 | 791 } |
792 _calculated_offset = jlong_from(jot.dwHighDateTime, jot.dwLowDateTime); | |
793 _has_calculated_offset = 1; | |
794 assert(_calculated_offset == _offset, "Calculated and constant time offsets must be equal"); | |
795 return _calculated_offset; | |
796 } | |
797 #else | |
798 jlong offset() { | |
799 return _offset; | |
800 } | |
801 #endif | |
802 | |
803 jlong windows_to_java_time(FILETIME wt) { | |
804 jlong a = jlong_from(wt.dwHighDateTime, wt.dwLowDateTime); | |
805 return (a - offset()) / 10000; | |
806 } | |
807 | |
808 FILETIME java_to_windows_time(jlong l) { | |
809 jlong a = (l * 10000) + offset(); | |
810 FILETIME result; | |
811 result.dwHighDateTime = high(a); | |
812 result.dwLowDateTime = low(a); | |
813 return result; | |
814 } | |
815 | |
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816 bool os::supports_vtime() { return true; } |
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817 bool os::enable_vtime() { return false; } |
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818 bool os::vtime_enabled() { return false; } |
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819 |
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820 double os::elapsedVTime() { |
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821 FILETIME created; |
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822 FILETIME exited; |
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823 FILETIME kernel; |
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824 FILETIME user; |
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825 if (GetThreadTimes(GetCurrentThread(), &created, &exited, &kernel, &user) != 0) { |
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826 // the resolution of windows_to_java_time() should be sufficient (ms) |
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827 return (double) (windows_to_java_time(kernel) + windows_to_java_time(user)) / MILLIUNITS; |
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828 } else { |
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829 return elapsedTime(); |
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830 } |
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831 } |
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832 |
0 | 833 jlong os::javaTimeMillis() { |
834 if (UseFakeTimers) { | |
835 return fake_time++; | |
836 } else { | |
61 | 837 FILETIME wt; |
838 GetSystemTimeAsFileTime(&wt); | |
839 return windows_to_java_time(wt); | |
0 | 840 } |
841 } | |
842 | |
843 jlong os::javaTimeNanos() { | |
844 if (!has_performance_count) { | |
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845 return javaTimeMillis() * NANOSECS_PER_MILLISEC; // the best we can do. |
0 | 846 } else { |
847 LARGE_INTEGER current_count; | |
848 QueryPerformanceCounter(¤t_count); | |
849 double current = as_long(current_count); | |
850 double freq = performance_frequency; | |
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851 jlong time = (jlong)((current/freq) * NANOSECS_PER_SEC); |
0 | 852 return time; |
853 } | |
854 } | |
855 | |
856 void os::javaTimeNanos_info(jvmtiTimerInfo *info_ptr) { | |
857 if (!has_performance_count) { | |
858 // javaTimeMillis() doesn't have much percision, | |
859 // but it is not going to wrap -- so all 64 bits | |
860 info_ptr->max_value = ALL_64_BITS; | |
861 | |
862 // this is a wall clock timer, so may skip | |
863 info_ptr->may_skip_backward = true; | |
864 info_ptr->may_skip_forward = true; | |
865 } else { | |
866 jlong freq = performance_frequency; | |
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867 if (freq < NANOSECS_PER_SEC) { |
0 | 868 // the performance counter is 64 bits and we will |
869 // be multiplying it -- so no wrap in 64 bits | |
870 info_ptr->max_value = ALL_64_BITS; | |
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871 } else if (freq > NANOSECS_PER_SEC) { |
0 | 872 // use the max value the counter can reach to |
873 // determine the max value which could be returned | |
874 julong max_counter = (julong)ALL_64_BITS; | |
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875 info_ptr->max_value = (jlong)(max_counter / (freq / NANOSECS_PER_SEC)); |
0 | 876 } else { |
877 // the performance counter is 64 bits and we will | |
878 // be using it directly -- so no wrap in 64 bits | |
879 info_ptr->max_value = ALL_64_BITS; | |
880 } | |
881 | |
882 // using a counter, so no skipping | |
883 info_ptr->may_skip_backward = false; | |
884 info_ptr->may_skip_forward = false; | |
885 } | |
886 info_ptr->kind = JVMTI_TIMER_ELAPSED; // elapsed not CPU time | |
887 } | |
888 | |
889 char* os::local_time_string(char *buf, size_t buflen) { | |
890 SYSTEMTIME st; | |
891 GetLocalTime(&st); | |
892 jio_snprintf(buf, buflen, "%d-%02d-%02d %02d:%02d:%02d", | |
893 st.wYear, st.wMonth, st.wDay, st.wHour, st.wMinute, st.wSecond); | |
894 return buf; | |
895 } | |
896 | |
897 bool os::getTimesSecs(double* process_real_time, | |
898 double* process_user_time, | |
899 double* process_system_time) { | |
900 HANDLE h_process = GetCurrentProcess(); | |
901 FILETIME create_time, exit_time, kernel_time, user_time; | |
902 BOOL result = GetProcessTimes(h_process, | |
903 &create_time, | |
904 &exit_time, | |
905 &kernel_time, | |
906 &user_time); | |
907 if (result != 0) { | |
908 FILETIME wt; | |
909 GetSystemTimeAsFileTime(&wt); | |
910 jlong rtc_millis = windows_to_java_time(wt); | |
911 jlong user_millis = windows_to_java_time(user_time); | |
912 jlong system_millis = windows_to_java_time(kernel_time); | |
913 *process_real_time = ((double) rtc_millis) / ((double) MILLIUNITS); | |
914 *process_user_time = ((double) user_millis) / ((double) MILLIUNITS); | |
915 *process_system_time = ((double) system_millis) / ((double) MILLIUNITS); | |
916 return true; | |
917 } else { | |
918 return false; | |
919 } | |
920 } | |
921 | |
922 void os::shutdown() { | |
923 | |
924 // allow PerfMemory to attempt cleanup of any persistent resources | |
925 perfMemory_exit(); | |
926 | |
927 // flush buffered output, finish log files | |
928 ostream_abort(); | |
929 | |
930 // Check for abort hook | |
931 abort_hook_t abort_hook = Arguments::abort_hook(); | |
932 if (abort_hook != NULL) { | |
933 abort_hook(); | |
934 } | |
935 } | |
936 | |
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937 |
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938 static BOOL (WINAPI *_MiniDumpWriteDump) ( HANDLE, DWORD, HANDLE, MINIDUMP_TYPE, PMINIDUMP_EXCEPTION_INFORMATION, |
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939 PMINIDUMP_USER_STREAM_INFORMATION, PMINIDUMP_CALLBACK_INFORMATION); |
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940 |
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941 void os::check_or_create_dump(void* exceptionRecord, void* contextRecord, char* buffer, size_t bufferSize) { |
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942 HINSTANCE dbghelp; |
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943 EXCEPTION_POINTERS ep; |
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944 MINIDUMP_EXCEPTION_INFORMATION mei; |
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945 MINIDUMP_EXCEPTION_INFORMATION* pmei; |
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946 |
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947 HANDLE hProcess = GetCurrentProcess(); |
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948 DWORD processId = GetCurrentProcessId(); |
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949 HANDLE dumpFile; |
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950 MINIDUMP_TYPE dumpType; |
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951 static const char* cwd; |
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952 |
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953 // Default is to always create dump for debug builds, on product builds only dump on server versions of Windows. |
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954 #ifndef ASSERT |
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955 // If running on a client version of Windows and user has not explicitly enabled dumping |
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956 if (!os::win32::is_windows_server() && !CreateMinidumpOnCrash) { |
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957 VMError::report_coredump_status("Minidumps are not enabled by default on client versions of Windows", false); |
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958 return; |
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959 // If running on a server version of Windows and user has explictly disabled dumping |
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960 } else if (os::win32::is_windows_server() && !FLAG_IS_DEFAULT(CreateMinidumpOnCrash) && !CreateMinidumpOnCrash) { |
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961 VMError::report_coredump_status("Minidump has been disabled from the command line", false); |
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962 return; |
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963 } |
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964 #else |
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965 if (!FLAG_IS_DEFAULT(CreateMinidumpOnCrash) && !CreateMinidumpOnCrash) { |
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966 VMError::report_coredump_status("Minidump has been disabled from the command line", false); |
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967 return; |
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968 } |
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969 #endif |
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970 |
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971 dbghelp = os::win32::load_Windows_dll("DBGHELP.DLL", NULL, 0); |
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972 |
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973 if (dbghelp == NULL) { |
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974 VMError::report_coredump_status("Failed to load dbghelp.dll", false); |
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975 return; |
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976 } |
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977 |
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978 _MiniDumpWriteDump = CAST_TO_FN_PTR( |
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979 BOOL(WINAPI *)( HANDLE, DWORD, HANDLE, MINIDUMP_TYPE, PMINIDUMP_EXCEPTION_INFORMATION, |
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980 PMINIDUMP_USER_STREAM_INFORMATION, PMINIDUMP_CALLBACK_INFORMATION), |
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981 GetProcAddress(dbghelp, "MiniDumpWriteDump")); |
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982 |
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983 if (_MiniDumpWriteDump == NULL) { |
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984 VMError::report_coredump_status("Failed to find MiniDumpWriteDump() in module dbghelp.dll", false); |
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985 return; |
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986 } |
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987 |
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988 dumpType = (MINIDUMP_TYPE)(MiniDumpWithFullMemory | MiniDumpWithHandleData); |
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989 |
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990 // Older versions of dbghelp.h doesn't contain all the dumptypes we want, dbghelp.h with |
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991 // API_VERSION_NUMBER 11 or higher contains the ones we want though |
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992 #if API_VERSION_NUMBER >= 11 |
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993 dumpType = (MINIDUMP_TYPE)(dumpType | MiniDumpWithFullMemoryInfo | MiniDumpWithThreadInfo | |
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994 MiniDumpWithUnloadedModules); |
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995 #endif |
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996 |
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997 cwd = get_current_directory(NULL, 0); |
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998 jio_snprintf(buffer, bufferSize, "%s\\hs_err_pid%u.mdmp",cwd, current_process_id()); |
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999 dumpFile = CreateFile(buffer, GENERIC_WRITE, 0, NULL, CREATE_ALWAYS, FILE_ATTRIBUTE_NORMAL, NULL); |
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1000 |
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1001 if (dumpFile == INVALID_HANDLE_VALUE) { |
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1002 VMError::report_coredump_status("Failed to create file for dumping", false); |
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1003 return; |
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1004 } |
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1005 if (exceptionRecord != NULL && contextRecord != NULL) { |
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1006 ep.ContextRecord = (PCONTEXT) contextRecord; |
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1007 ep.ExceptionRecord = (PEXCEPTION_RECORD) exceptionRecord; |
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1008 |
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1009 mei.ThreadId = GetCurrentThreadId(); |
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1010 mei.ExceptionPointers = &ep; |
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1011 pmei = &mei; |
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1012 } else { |
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1013 pmei = NULL; |
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1014 } |
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1015 |
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1016 |
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1017 // Older versions of dbghelp.dll (the one shipped with Win2003 for example) may not support all |
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1018 // the dump types we really want. If first call fails, lets fall back to just use MiniDumpWithFullMemory then. |
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1019 if (_MiniDumpWriteDump(hProcess, processId, dumpFile, dumpType, pmei, NULL, NULL) == false && |
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1020 _MiniDumpWriteDump(hProcess, processId, dumpFile, (MINIDUMP_TYPE)MiniDumpWithFullMemory, pmei, NULL, NULL) == false) { |
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1021 DWORD error = GetLastError(); |
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1022 LPTSTR msgbuf = NULL; |
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1023 |
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1024 if (FormatMessage(FORMAT_MESSAGE_ALLOCATE_BUFFER | |
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1025 FORMAT_MESSAGE_FROM_SYSTEM | |
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1026 FORMAT_MESSAGE_IGNORE_INSERTS, |
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1027 NULL, error, 0, (LPTSTR)&msgbuf, 0, NULL) != 0) { |
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1028 |
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1029 jio_snprintf(buffer, bufferSize, "Call to MiniDumpWriteDump() failed (Error 0x%x: %s)", error, msgbuf); |
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1030 LocalFree(msgbuf); |
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1031 } else { |
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1032 // Call to FormatMessage failed, just include the result from GetLastError |
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1033 jio_snprintf(buffer, bufferSize, "Call to MiniDumpWriteDump() failed (Error 0x%x)", error); |
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1034 } |
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1035 VMError::report_coredump_status(buffer, false); |
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1036 } else { |
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1037 VMError::report_coredump_status(buffer, true); |
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1038 } |
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1039 |
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1040 CloseHandle(dumpFile); |
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1041 } |
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1042 |
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1043 |
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1044 |
0 | 1045 void os::abort(bool dump_core) |
1046 { | |
1047 os::shutdown(); | |
1048 // no core dump on Windows | |
1049 ::exit(1); | |
1050 } | |
1051 | |
1052 // Die immediately, no exit hook, no abort hook, no cleanup. | |
1053 void os::die() { | |
1054 _exit(-1); | |
1055 } | |
1056 | |
1057 // Directory routines copied from src/win32/native/java/io/dirent_md.c | |
1058 // * dirent_md.c 1.15 00/02/02 | |
1059 // | |
1060 // The declarations for DIR and struct dirent are in jvm_win32.h. | |
1061 | |
1062 /* Caller must have already run dirname through JVM_NativePath, which removes | |
1063 duplicate slashes and converts all instances of '/' into '\\'. */ | |
1064 | |
1065 DIR * | |
1066 os::opendir(const char *dirname) | |
1067 { | |
1068 assert(dirname != NULL, "just checking"); // hotspot change | |
6197 | 1069 DIR *dirp = (DIR *)malloc(sizeof(DIR), mtInternal); |
0 | 1070 DWORD fattr; // hotspot change |
1071 char alt_dirname[4] = { 0, 0, 0, 0 }; | |
1072 | |
1073 if (dirp == 0) { | |
1074 errno = ENOMEM; | |
1075 return 0; | |
1076 } | |
1077 | |
1078 /* | |
1079 * Win32 accepts "\" in its POSIX stat(), but refuses to treat it | |
1080 * as a directory in FindFirstFile(). We detect this case here and | |
1081 * prepend the current drive name. | |
1082 */ | |
1083 if (dirname[1] == '\0' && dirname[0] == '\\') { | |
1084 alt_dirname[0] = _getdrive() + 'A' - 1; | |
1085 alt_dirname[1] = ':'; | |
1086 alt_dirname[2] = '\\'; | |
1087 alt_dirname[3] = '\0'; | |
1088 dirname = alt_dirname; | |
1089 } | |
1090 | |
6197 | 1091 dirp->path = (char *)malloc(strlen(dirname) + 5, mtInternal); |
0 | 1092 if (dirp->path == 0) { |
6197 | 1093 free(dirp, mtInternal); |
0 | 1094 errno = ENOMEM; |
1095 return 0; | |
1096 } | |
1097 strcpy(dirp->path, dirname); | |
1098 | |
1099 fattr = GetFileAttributes(dirp->path); | |
1100 if (fattr == 0xffffffff) { | |
6197 | 1101 free(dirp->path, mtInternal); |
1102 free(dirp, mtInternal); | |
0 | 1103 errno = ENOENT; |
1104 return 0; | |
1105 } else if ((fattr & FILE_ATTRIBUTE_DIRECTORY) == 0) { | |
6197 | 1106 free(dirp->path, mtInternal); |
1107 free(dirp, mtInternal); | |
0 | 1108 errno = ENOTDIR; |
1109 return 0; | |
1110 } | |
1111 | |
1112 /* Append "*.*", or possibly "\\*.*", to path */ | |
1113 if (dirp->path[1] == ':' | |
1114 && (dirp->path[2] == '\0' | |
1115 || (dirp->path[2] == '\\' && dirp->path[3] == '\0'))) { | |
1116 /* No '\\' needed for cases like "Z:" or "Z:\" */ | |
1117 strcat(dirp->path, "*.*"); | |
1118 } else { | |
1119 strcat(dirp->path, "\\*.*"); | |
1120 } | |
1121 | |
1122 dirp->handle = FindFirstFile(dirp->path, &dirp->find_data); | |
1123 if (dirp->handle == INVALID_HANDLE_VALUE) { | |
1124 if (GetLastError() != ERROR_FILE_NOT_FOUND) { | |
6197 | 1125 free(dirp->path, mtInternal); |
1126 free(dirp, mtInternal); | |
0 | 1127 errno = EACCES; |
1128 return 0; | |
1129 } | |
1130 } | |
1131 return dirp; | |
1132 } | |
1133 | |
1134 /* parameter dbuf unused on Windows */ | |
1135 | |
1136 struct dirent * | |
1137 os::readdir(DIR *dirp, dirent *dbuf) | |
1138 { | |
1139 assert(dirp != NULL, "just checking"); // hotspot change | |
1140 if (dirp->handle == INVALID_HANDLE_VALUE) { | |
1141 return 0; | |
1142 } | |
1143 | |
1144 strcpy(dirp->dirent.d_name, dirp->find_data.cFileName); | |
1145 | |
1146 if (!FindNextFile(dirp->handle, &dirp->find_data)) { | |
1147 if (GetLastError() == ERROR_INVALID_HANDLE) { | |
1148 errno = EBADF; | |
1149 return 0; | |
1150 } | |
1151 FindClose(dirp->handle); | |
1152 dirp->handle = INVALID_HANDLE_VALUE; | |
1153 } | |
1154 | |
1155 return &dirp->dirent; | |
1156 } | |
1157 | |
1158 int | |
1159 os::closedir(DIR *dirp) | |
1160 { | |
1161 assert(dirp != NULL, "just checking"); // hotspot change | |
1162 if (dirp->handle != INVALID_HANDLE_VALUE) { | |
1163 if (!FindClose(dirp->handle)) { | |
1164 errno = EBADF; | |
1165 return -1; | |
1166 } | |
1167 dirp->handle = INVALID_HANDLE_VALUE; | |
1168 } | |
6197 | 1169 free(dirp->path, mtInternal); |
1170 free(dirp, mtInternal); | |
0 | 1171 return 0; |
1172 } | |
1173 | |
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1174 // This must be hard coded because it's the system's temporary |
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1175 // directory not the java application's temp directory, ala java.io.tmpdir. |
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1176 const char* os::get_temp_directory() { |
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1177 static char path_buf[MAX_PATH]; |
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1178 if (GetTempPath(MAX_PATH, path_buf)>0) |
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1179 return path_buf; |
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1180 else{ |
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1181 path_buf[0]='\0'; |
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1182 return path_buf; |
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1183 } |
0 | 1184 } |
1185 | |
691 | 1186 static bool file_exists(const char* filename) { |
1187 if (filename == NULL || strlen(filename) == 0) { | |
1188 return false; | |
1189 } | |
1190 return GetFileAttributes(filename) != INVALID_FILE_ATTRIBUTES; | |
1191 } | |
1192 | |
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1193 bool os::dll_build_name(char *buffer, size_t buflen, |
691 | 1194 const char* pname, const char* fname) { |
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1195 bool retval = false; |
691 | 1196 const size_t pnamelen = pname ? strlen(pname) : 0; |
1197 const char c = (pnamelen > 0) ? pname[pnamelen-1] : 0; | |
1198 | |
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1199 // Return error on buffer overflow. |
691 | 1200 if (pnamelen + strlen(fname) + 10 > buflen) { |
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1201 return retval; |
691 | 1202 } |
1203 | |
1204 if (pnamelen == 0) { | |
1205 jio_snprintf(buffer, buflen, "%s.dll", fname); | |
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1206 retval = true; |
691 | 1207 } else if (c == ':' || c == '\\') { |
1208 jio_snprintf(buffer, buflen, "%s%s.dll", pname, fname); | |
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1209 retval = true; |
691 | 1210 } else if (strchr(pname, *os::path_separator()) != NULL) { |
1211 int n; | |
1212 char** pelements = split_path(pname, &n); | |
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1213 if (pelements == NULL) { |
9062 | 1214 return false; |
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1215 } |
691 | 1216 for (int i = 0 ; i < n ; i++) { |
1217 char* path = pelements[i]; | |
1218 // Really shouldn't be NULL, but check can't hurt | |
1219 size_t plen = (path == NULL) ? 0 : strlen(path); | |
1220 if (plen == 0) { | |
1221 continue; // skip the empty path values | |
1222 } | |
1223 const char lastchar = path[plen - 1]; | |
1224 if (lastchar == ':' || lastchar == '\\') { | |
1225 jio_snprintf(buffer, buflen, "%s%s.dll", path, fname); | |
1226 } else { | |
1227 jio_snprintf(buffer, buflen, "%s\\%s.dll", path, fname); | |
1228 } | |
1229 if (file_exists(buffer)) { | |
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1230 retval = true; |
691 | 1231 break; |
1232 } | |
242 | 1233 } |
691 | 1234 // release the storage |
1235 for (int i = 0 ; i < n ; i++) { | |
1236 if (pelements[i] != NULL) { | |
6197 | 1237 FREE_C_HEAP_ARRAY(char, pelements[i], mtInternal); |
691 | 1238 } |
242 | 1239 } |
691 | 1240 if (pelements != NULL) { |
6197 | 1241 FREE_C_HEAP_ARRAY(char*, pelements, mtInternal); |
691 | 1242 } |
1243 } else { | |
1244 jio_snprintf(buffer, buflen, "%s\\%s.dll", pname, fname); | |
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1245 retval = true; |
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1246 } |
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1247 return retval; |
242 | 1248 } |
1249 | |
0 | 1250 // Needs to be in os specific directory because windows requires another |
1251 // header file <direct.h> | |
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1252 const char* os::get_current_directory(char *buf, size_t buflen) { |
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1253 int n = static_cast<int>(buflen); |
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1254 if (buflen > INT_MAX) n = INT_MAX; |
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1255 return _getcwd(buf, n); |
0 | 1256 } |
1257 | |
1258 //----------------------------------------------------------- | |
1259 // Helper functions for fatal error handler | |
1260 #ifdef _WIN64 | |
1261 // Helper routine which returns true if address in | |
1262 // within the NTDLL address space. | |
1263 // | |
1264 static bool _addr_in_ntdll( address addr ) | |
1265 { | |
1266 HMODULE hmod; | |
1267 MODULEINFO minfo; | |
1268 | |
1269 hmod = GetModuleHandle("NTDLL.DLL"); | |
1270 if ( hmod == NULL ) return false; | |
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1271 if ( !os::PSApiDll::GetModuleInformation( GetCurrentProcess(), hmod, |
0 | 1272 &minfo, sizeof(MODULEINFO)) ) |
1273 return false; | |
1274 | |
1275 if ( (addr >= minfo.lpBaseOfDll) && | |
1276 (addr < (address)((uintptr_t)minfo.lpBaseOfDll + (uintptr_t)minfo.SizeOfImage))) | |
1277 return true; | |
1278 else | |
1279 return false; | |
1280 } | |
1281 #endif | |
1282 | |
1283 | |
1284 // Enumerate all modules for a given process ID | |
1285 // | |
1286 // Notice that Windows 95/98/Me and Windows NT/2000/XP have | |
1287 // different API for doing this. We use PSAPI.DLL on NT based | |
1288 // Windows and ToolHelp on 95/98/Me. | |
1289 | |
1290 // Callback function that is called by enumerate_modules() on | |
1291 // every DLL module. | |
1292 // Input parameters: | |
1293 // int pid, | |
1294 // char* module_file_name, | |
1295 // address module_base_addr, | |
1296 // unsigned module_size, | |
1297 // void* param | |
1298 typedef int (*EnumModulesCallbackFunc)(int, char *, address, unsigned, void *); | |
1299 | |
1300 // enumerate_modules for Windows NT, using PSAPI | |
1301 static int _enumerate_modules_winnt( int pid, EnumModulesCallbackFunc func, void * param) | |
1302 { | |
1303 HANDLE hProcess ; | |
1304 | |
1305 # define MAX_NUM_MODULES 128 | |
1306 HMODULE modules[MAX_NUM_MODULES]; | |
1307 static char filename[ MAX_PATH ]; | |
1308 int result = 0; | |
1309 | |
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1310 if (!os::PSApiDll::PSApiAvailable()) { |
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1311 return 0; |
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1312 } |
0 | 1313 |
1314 hProcess = OpenProcess(PROCESS_QUERY_INFORMATION | PROCESS_VM_READ, | |
1315 FALSE, pid ) ; | |
1316 if (hProcess == NULL) return 0; | |
1317 | |
1318 DWORD size_needed; | |
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1319 if (!os::PSApiDll::EnumProcessModules(hProcess, modules, |
0 | 1320 sizeof(modules), &size_needed)) { |
1321 CloseHandle( hProcess ); | |
1322 return 0; | |
1323 } | |
1324 | |
1325 // number of modules that are currently loaded | |
1326 int num_modules = size_needed / sizeof(HMODULE); | |
1327 | |
1328 for (int i = 0; i < MIN2(num_modules, MAX_NUM_MODULES); i++) { | |
1329 // Get Full pathname: | |
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1330 if(!os::PSApiDll::GetModuleFileNameEx(hProcess, modules[i], |
0 | 1331 filename, sizeof(filename))) { |
1332 filename[0] = '\0'; | |
1333 } | |
1334 | |
1335 MODULEINFO modinfo; | |
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1336 if (!os::PSApiDll::GetModuleInformation(hProcess, modules[i], |
0 | 1337 &modinfo, sizeof(modinfo))) { |
1338 modinfo.lpBaseOfDll = NULL; | |
1339 modinfo.SizeOfImage = 0; | |
1340 } | |
1341 | |
1342 // Invoke callback function | |
1343 result = func(pid, filename, (address)modinfo.lpBaseOfDll, | |
1344 modinfo.SizeOfImage, param); | |
1345 if (result) break; | |
1346 } | |
1347 | |
1348 CloseHandle( hProcess ) ; | |
1349 return result; | |
1350 } | |
1351 | |
1352 | |
1353 // enumerate_modules for Windows 95/98/ME, using TOOLHELP | |
1354 static int _enumerate_modules_windows( int pid, EnumModulesCallbackFunc func, void *param) | |
1355 { | |
1356 HANDLE hSnapShot ; | |
1357 static MODULEENTRY32 modentry ; | |
1358 int result = 0; | |
1359 | |
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1360 if (!os::Kernel32Dll::HelpToolsAvailable()) { |
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1361 return 0; |
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1362 } |
0 | 1363 |
1364 // Get a handle to a Toolhelp snapshot of the system | |
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1365 hSnapShot = os::Kernel32Dll::CreateToolhelp32Snapshot(TH32CS_SNAPMODULE, pid ) ; |
0 | 1366 if( hSnapShot == INVALID_HANDLE_VALUE ) { |
1367 return FALSE ; | |
1368 } | |
1369 | |
1370 // iterate through all modules | |
1371 modentry.dwSize = sizeof(MODULEENTRY32) ; | |
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1372 bool not_done = os::Kernel32Dll::Module32First( hSnapShot, &modentry ) != 0; |
0 | 1373 |
1374 while( not_done ) { | |
1375 // invoke the callback | |
1376 result=func(pid, modentry.szExePath, (address)modentry.modBaseAddr, | |
1377 modentry.modBaseSize, param); | |
1378 if (result) break; | |
1379 | |
1380 modentry.dwSize = sizeof(MODULEENTRY32) ; | |
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1381 not_done = os::Kernel32Dll::Module32Next( hSnapShot, &modentry ) != 0; |
0 | 1382 } |
1383 | |
1384 CloseHandle(hSnapShot); | |
1385 return result; | |
1386 } | |
1387 | |
1388 int enumerate_modules( int pid, EnumModulesCallbackFunc func, void * param ) | |
1389 { | |
1390 // Get current process ID if caller doesn't provide it. | |
1391 if (!pid) pid = os::current_process_id(); | |
1392 | |
1393 if (os::win32::is_nt()) return _enumerate_modules_winnt (pid, func, param); | |
1394 else return _enumerate_modules_windows(pid, func, param); | |
1395 } | |
1396 | |
1397 struct _modinfo { | |
1398 address addr; | |
1399 char* full_path; // point to a char buffer | |
1400 int buflen; // size of the buffer | |
1401 address base_addr; | |
1402 }; | |
1403 | |
1404 static int _locate_module_by_addr(int pid, char * mod_fname, address base_addr, | |
1405 unsigned size, void * param) { | |
1406 struct _modinfo *pmod = (struct _modinfo *)param; | |
1407 if (!pmod) return -1; | |
1408 | |
1409 if (base_addr <= pmod->addr && | |
1410 base_addr+size > pmod->addr) { | |
1411 // if a buffer is provided, copy path name to the buffer | |
1412 if (pmod->full_path) { | |
1413 jio_snprintf(pmod->full_path, pmod->buflen, "%s", mod_fname); | |
1414 } | |
1415 pmod->base_addr = base_addr; | |
1416 return 1; | |
1417 } | |
1418 return 0; | |
1419 } | |
1420 | |
1421 bool os::dll_address_to_library_name(address addr, char* buf, | |
1422 int buflen, int* offset) { | |
1423 // NOTE: the reason we don't use SymGetModuleInfo() is it doesn't always | |
1424 // return the full path to the DLL file, sometimes it returns path | |
1425 // to the corresponding PDB file (debug info); sometimes it only | |
1426 // returns partial path, which makes life painful. | |
1427 | |
1428 struct _modinfo mi; | |
1429 mi.addr = addr; | |
1430 mi.full_path = buf; | |
1431 mi.buflen = buflen; | |
1432 int pid = os::current_process_id(); | |
1433 if (enumerate_modules(pid, _locate_module_by_addr, (void *)&mi)) { | |
1434 // buf already contains path name | |
1435 if (offset) *offset = addr - mi.base_addr; | |
1436 return true; | |
1437 } else { | |
1438 if (buf) buf[0] = '\0'; | |
1439 if (offset) *offset = -1; | |
1440 return false; | |
1441 } | |
1442 } | |
1443 | |
1444 bool os::dll_address_to_function_name(address addr, char *buf, | |
1445 int buflen, int *offset) { | |
4803 | 1446 if (Decoder::decode(addr, buf, buflen, offset)) { |
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1447 return true; |
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1448 } |
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1449 if (offset != NULL) *offset = -1; |
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1450 if (buf != NULL) buf[0] = '\0'; |
0 | 1451 return false; |
1452 } | |
1453 | |
1454 // save the start and end address of jvm.dll into param[0] and param[1] | |
1455 static int _locate_jvm_dll(int pid, char* mod_fname, address base_addr, | |
1456 unsigned size, void * param) { | |
1457 if (!param) return -1; | |
1458 | |
1459 if (base_addr <= (address)_locate_jvm_dll && | |
1460 base_addr+size > (address)_locate_jvm_dll) { | |
1461 ((address*)param)[0] = base_addr; | |
1462 ((address*)param)[1] = base_addr + size; | |
1463 return 1; | |
1464 } | |
1465 return 0; | |
1466 } | |
1467 | |
1468 address vm_lib_location[2]; // start and end address of jvm.dll | |
1469 | |
1470 // check if addr is inside jvm.dll | |
1471 bool os::address_is_in_vm(address addr) { | |
1472 if (!vm_lib_location[0] || !vm_lib_location[1]) { | |
1473 int pid = os::current_process_id(); | |
1474 if (!enumerate_modules(pid, _locate_jvm_dll, (void *)vm_lib_location)) { | |
1475 assert(false, "Can't find jvm module."); | |
1476 return false; | |
1477 } | |
1478 } | |
1479 | |
1480 return (vm_lib_location[0] <= addr) && (addr < vm_lib_location[1]); | |
1481 } | |
1482 | |
1483 // print module info; param is outputStream* | |
1484 static int _print_module(int pid, char* fname, address base, | |
1485 unsigned size, void* param) { | |
1486 if (!param) return -1; | |
1487 | |
1488 outputStream* st = (outputStream*)param; | |
1489 | |
1490 address end_addr = base + size; | |
1491 st->print(PTR_FORMAT " - " PTR_FORMAT " \t%s\n", base, end_addr, fname); | |
1492 return 0; | |
1493 } | |
1494 | |
1495 // Loads .dll/.so and | |
1496 // in case of error it checks if .dll/.so was built for the | |
1497 // same architecture as Hotspot is running on | |
1498 void * os::dll_load(const char *name, char *ebuf, int ebuflen) | |
1499 { | |
1500 void * result = LoadLibrary(name); | |
1501 if (result != NULL) | |
1502 { | |
1503 return result; | |
1504 } | |
1505 | |
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changeset
|
1506 DWORD errcode = GetLastError(); |
0 | 1507 if (errcode == ERROR_MOD_NOT_FOUND) { |
1508 strncpy(ebuf, "Can't find dependent libraries", ebuflen-1); | |
1509 ebuf[ebuflen-1]='\0'; | |
1510 return NULL; | |
1511 } | |
1512 | |
1513 // Parsing dll below | |
1514 // If we can read dll-info and find that dll was built | |
1515 // for an architecture other than Hotspot is running in | |
1516 // - then print to buffer "DLL was built for a different architecture" | |
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|
1517 // else call os::lasterror to obtain system error message |
0 | 1518 |
1519 // Read system error message into ebuf | |
1520 // It may or may not be overwritten below (in the for loop and just above) | |
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1521 lasterror(ebuf, (size_t) ebuflen); |
0 | 1522 ebuf[ebuflen-1]='\0'; |
1523 int file_descriptor=::open(name, O_RDONLY | O_BINARY, 0); | |
1524 if (file_descriptor<0) | |
1525 { | |
1526 return NULL; | |
1527 } | |
1528 | |
1529 uint32_t signature_offset; | |
1530 uint16_t lib_arch=0; | |
1531 bool failed_to_get_lib_arch= | |
1532 ( | |
1533 //Go to position 3c in the dll | |
1534 (os::seek_to_file_offset(file_descriptor,IMAGE_FILE_PTR_TO_SIGNATURE)<0) | |
1535 || | |
1536 // Read loacation of signature | |
1537 (sizeof(signature_offset)!= | |
1538 (os::read(file_descriptor, (void*)&signature_offset,sizeof(signature_offset)))) | |
1539 || | |
1540 //Go to COFF File Header in dll | |
1541 //that is located after"signature" (4 bytes long) | |
1542 (os::seek_to_file_offset(file_descriptor, | |
1543 signature_offset+IMAGE_FILE_SIGNATURE_LENGTH)<0) | |
1544 || | |
1545 //Read field that contains code of architecture | |
1546 // that dll was build for | |
1547 (sizeof(lib_arch)!= | |
1548 (os::read(file_descriptor, (void*)&lib_arch,sizeof(lib_arch)))) | |
1549 ); | |
1550 | |
1551 ::close(file_descriptor); | |
1552 if (failed_to_get_lib_arch) | |
1553 { | |
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|
1554 // file i/o error - report os::lasterror(...) msg |
0 | 1555 return NULL; |
1556 } | |
1557 | |
1558 typedef struct | |
1559 { | |
1560 uint16_t arch_code; | |
1561 char* arch_name; | |
1562 } arch_t; | |
1563 | |
1564 static const arch_t arch_array[]={ | |
1565 {IMAGE_FILE_MACHINE_I386, (char*)"IA 32"}, | |
1566 {IMAGE_FILE_MACHINE_AMD64, (char*)"AMD 64"}, | |
1567 {IMAGE_FILE_MACHINE_IA64, (char*)"IA 64"} | |
1568 }; | |
1569 #if (defined _M_IA64) | |
1570 static const uint16_t running_arch=IMAGE_FILE_MACHINE_IA64; | |
1571 #elif (defined _M_AMD64) | |
1572 static const uint16_t running_arch=IMAGE_FILE_MACHINE_AMD64; | |
1573 #elif (defined _M_IX86) | |
1574 static const uint16_t running_arch=IMAGE_FILE_MACHINE_I386; | |
1575 #else | |
1576 #error Method os::dll_load requires that one of following \ | |
1577 is defined :_M_IA64,_M_AMD64 or _M_IX86 | |
1578 #endif | |
1579 | |
1580 | |
1581 // Obtain a string for printf operation | |
1582 // lib_arch_str shall contain string what platform this .dll was built for | |
1583 // running_arch_str shall string contain what platform Hotspot was built for | |
1584 char *running_arch_str=NULL,*lib_arch_str=NULL; | |
1585 for (unsigned int i=0;i<ARRAY_SIZE(arch_array);i++) | |
1586 { | |
1587 if (lib_arch==arch_array[i].arch_code) | |
1588 lib_arch_str=arch_array[i].arch_name; | |
1589 if (running_arch==arch_array[i].arch_code) | |
1590 running_arch_str=arch_array[i].arch_name; | |
1591 } | |
1592 | |
1593 assert(running_arch_str, | |
1594 "Didn't find runing architecture code in arch_array"); | |
1595 | |
1596 // If the architure is right | |
4750
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1597 // but some other error took place - report os::lasterror(...) msg |
0 | 1598 if (lib_arch == running_arch) |
1599 { | |
1600 return NULL; | |
1601 } | |
1602 | |
1603 if (lib_arch_str!=NULL) | |
1604 { | |
1605 ::_snprintf(ebuf, ebuflen-1, | |
1606 "Can't load %s-bit .dll on a %s-bit platform", | |
1607 lib_arch_str,running_arch_str); | |
1608 } | |
1609 else | |
1610 { | |
1611 // don't know what architecture this dll was build for | |
1612 ::_snprintf(ebuf, ebuflen-1, | |
1613 "Can't load this .dll (machine code=0x%x) on a %s-bit platform", | |
1614 lib_arch,running_arch_str); | |
1615 } | |
1616 | |
1617 return NULL; | |
1618 } | |
1619 | |
1620 | |
1621 void os::print_dll_info(outputStream *st) { | |
1622 int pid = os::current_process_id(); | |
1623 st->print_cr("Dynamic libraries:"); | |
1624 enumerate_modules(pid, _print_module, (void *)st); | |
1625 } | |
1626 | |
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7165755: OS Information much longer on linux than other platforms
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|
1627 void os::print_os_info_brief(outputStream* st) { |
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diff
changeset
|
1628 os::print_os_info(st); |
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diff
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|
1629 } |
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|
1630 |
0 | 1631 void os::print_os_info(outputStream* st) { |
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1632 st->print("OS:"); |
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1633 |
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|
1634 os::win32::print_windows_version(st); |
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diff
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|
1635 } |
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|
1636 |
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|
1637 void os::win32::print_windows_version(outputStream* st) { |
273
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1638 OSVERSIONINFOEX osvi; |
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1639 ZeroMemory(&osvi, sizeof(OSVERSIONINFOEX)); |
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1640 osvi.dwOSVersionInfoSize = sizeof(OSVERSIONINFOEX); |
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1641 |
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|
1642 if (!GetVersionEx((OSVERSIONINFO *)&osvi)) { |
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1643 st->print_cr("N/A"); |
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1644 return; |
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|
1645 } |
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|
1646 |
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1647 int os_vers = osvi.dwMajorVersion * 1000 + osvi.dwMinorVersion; |
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1648 if (osvi.dwPlatformId == VER_PLATFORM_WIN32_NT) { |
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1649 switch (os_vers) { |
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|
1650 case 3051: st->print(" Windows NT 3.51"); break; |
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|
1651 case 4000: st->print(" Windows NT 4.0"); break; |
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6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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|
1652 case 5000: st->print(" Windows 2000"); break; |
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6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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changeset
|
1653 case 5001: st->print(" Windows XP"); break; |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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diff
changeset
|
1654 case 5002: |
962
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6821003: Update hotspot windows os_win32 for windows 7
asaha
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diff
changeset
|
1655 case 6000: |
6126
de909f001528
7170275: os::print_os_info needs to know about Windows 8
mikael
parents:
6080
diff
changeset
|
1656 case 6001: |
de909f001528
7170275: os::print_os_info needs to know about Windows 8
mikael
parents:
6080
diff
changeset
|
1657 case 6002: { |
273
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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diff
changeset
|
1658 // Retrieve SYSTEM_INFO from GetNativeSystemInfo call so that we could |
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6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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diff
changeset
|
1659 // find out whether we are running on 64 bit processor or not. |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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diff
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|
1660 SYSTEM_INFO si; |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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diff
changeset
|
1661 ZeroMemory(&si, sizeof(SYSTEM_INFO)); |
3833
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
1662 if (!os::Kernel32Dll::GetNativeSystemInfoAvailable()){ |
273
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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diff
changeset
|
1663 GetSystemInfo(&si); |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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242
diff
changeset
|
1664 } else { |
3833
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
1665 os::Kernel32Dll::GetNativeSystemInfo(&si); |
273
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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diff
changeset
|
1666 } |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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242
diff
changeset
|
1667 if (os_vers == 5002) { |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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242
diff
changeset
|
1668 if (osvi.wProductType == VER_NT_WORKSTATION && |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
xlu
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242
diff
changeset
|
1669 si.wProcessorArchitecture == PROCESSOR_ARCHITECTURE_AMD64) |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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|
1670 st->print(" Windows XP x64 Edition"); |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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diff
changeset
|
1671 else |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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diff
changeset
|
1672 st->print(" Windows Server 2003 family"); |
962
aafa4232dfd7
6821003: Update hotspot windows os_win32 for windows 7
asaha
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diff
changeset
|
1673 } else if (os_vers == 6000) { |
273
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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242
diff
changeset
|
1674 if (osvi.wProductType == VER_NT_WORKSTATION) |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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changeset
|
1675 st->print(" Windows Vista"); |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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diff
changeset
|
1676 else |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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242
diff
changeset
|
1677 st->print(" Windows Server 2008"); |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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diff
changeset
|
1678 if (si.wProcessorArchitecture == PROCESSOR_ARCHITECTURE_AMD64) |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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diff
changeset
|
1679 st->print(" , 64 bit"); |
962
aafa4232dfd7
6821003: Update hotspot windows os_win32 for windows 7
asaha
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diff
changeset
|
1680 } else if (os_vers == 6001) { |
aafa4232dfd7
6821003: Update hotspot windows os_win32 for windows 7
asaha
parents:
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diff
changeset
|
1681 if (osvi.wProductType == VER_NT_WORKSTATION) { |
aafa4232dfd7
6821003: Update hotspot windows os_win32 for windows 7
asaha
parents:
877
diff
changeset
|
1682 st->print(" Windows 7"); |
aafa4232dfd7
6821003: Update hotspot windows os_win32 for windows 7
asaha
parents:
877
diff
changeset
|
1683 } else { |
aafa4232dfd7
6821003: Update hotspot windows os_win32 for windows 7
asaha
parents:
877
diff
changeset
|
1684 // Unrecognized windows, print out its major and minor versions |
aafa4232dfd7
6821003: Update hotspot windows os_win32 for windows 7
asaha
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diff
changeset
|
1685 st->print(" Windows NT %d.%d", osvi.dwMajorVersion, osvi.dwMinorVersion); |
aafa4232dfd7
6821003: Update hotspot windows os_win32 for windows 7
asaha
parents:
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diff
changeset
|
1686 } |
aafa4232dfd7
6821003: Update hotspot windows os_win32 for windows 7
asaha
parents:
877
diff
changeset
|
1687 if (si.wProcessorArchitecture == PROCESSOR_ARCHITECTURE_AMD64) |
aafa4232dfd7
6821003: Update hotspot windows os_win32 for windows 7
asaha
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diff
changeset
|
1688 st->print(" , 64 bit"); |
6126
de909f001528
7170275: os::print_os_info needs to know about Windows 8
mikael
parents:
6080
diff
changeset
|
1689 } else if (os_vers == 6002) { |
de909f001528
7170275: os::print_os_info needs to know about Windows 8
mikael
parents:
6080
diff
changeset
|
1690 if (osvi.wProductType == VER_NT_WORKSTATION) { |
de909f001528
7170275: os::print_os_info needs to know about Windows 8
mikael
parents:
6080
diff
changeset
|
1691 st->print(" Windows 8"); |
de909f001528
7170275: os::print_os_info needs to know about Windows 8
mikael
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6080
diff
changeset
|
1692 } else { |
de909f001528
7170275: os::print_os_info needs to know about Windows 8
mikael
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6080
diff
changeset
|
1693 st->print(" Windows Server 2012"); |
de909f001528
7170275: os::print_os_info needs to know about Windows 8
mikael
parents:
6080
diff
changeset
|
1694 } |
de909f001528
7170275: os::print_os_info needs to know about Windows 8
mikael
parents:
6080
diff
changeset
|
1695 if (si.wProcessorArchitecture == PROCESSOR_ARCHITECTURE_AMD64) |
de909f001528
7170275: os::print_os_info needs to know about Windows 8
mikael
parents:
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diff
changeset
|
1696 st->print(" , 64 bit"); |
962
aafa4232dfd7
6821003: Update hotspot windows os_win32 for windows 7
asaha
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diff
changeset
|
1697 } else { // future os |
aafa4232dfd7
6821003: Update hotspot windows os_win32 for windows 7
asaha
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877
diff
changeset
|
1698 // Unrecognized windows, print out its major and minor versions |
aafa4232dfd7
6821003: Update hotspot windows os_win32 for windows 7
asaha
parents:
877
diff
changeset
|
1699 st->print(" Windows NT %d.%d", osvi.dwMajorVersion, osvi.dwMinorVersion); |
aafa4232dfd7
6821003: Update hotspot windows os_win32 for windows 7
asaha
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diff
changeset
|
1700 if (si.wProcessorArchitecture == PROCESSOR_ARCHITECTURE_AMD64) |
aafa4232dfd7
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asaha
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diff
changeset
|
1701 st->print(" , 64 bit"); |
273
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|
1702 } |
6f17a7c9f8b4
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diff
changeset
|
1703 break; |
6f17a7c9f8b4
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diff
changeset
|
1704 } |
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|
1705 default: // future windows, print out its major and minor versions |
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|
1706 st->print(" Windows NT %d.%d", osvi.dwMajorVersion, osvi.dwMinorVersion); |
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|
1707 } |
6f17a7c9f8b4
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|
1708 } else { |
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changeset
|
1709 switch (os_vers) { |
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|
1710 case 4000: st->print(" Windows 95"); break; |
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|
1711 case 4010: st->print(" Windows 98"); break; |
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|
1712 case 4090: st->print(" Windows Me"); break; |
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|
1713 default: // future windows, print out its major and minor versions |
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|
1714 st->print(" Windows %d.%d", osvi.dwMajorVersion, osvi.dwMinorVersion); |
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|
1715 } |
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|
1716 } |
6f17a7c9f8b4
6719981: Update Hotspot Windows os_win32 for windows XP 64 bit and windows 2008
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1717 st->print(" Build %d", osvi.dwBuildNumber); |
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1718 st->print(" %s", osvi.szCSDVersion); // service pack |
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1719 st->cr(); |
0 | 1720 } |
1721 | |
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1722 void os::pd_print_cpu_info(outputStream* st) { |
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1723 // Nothing to do for now. |
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1724 } |
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1725 |
0 | 1726 void os::print_memory_info(outputStream* st) { |
1727 st->print("Memory:"); | |
1728 st->print(" %dk page", os::vm_page_size()>>10); | |
1729 | |
877
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1730 // Use GlobalMemoryStatusEx() because GlobalMemoryStatus() may return incorrect |
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1731 // value if total memory is larger than 4GB |
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1732 MEMORYSTATUSEX ms; |
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1733 ms.dwLength = sizeof(ms); |
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1734 GlobalMemoryStatusEx(&ms); |
0 | 1735 |
1736 st->print(", physical %uk", os::physical_memory() >> 10); | |
1737 st->print("(%uk free)", os::available_memory() >> 10); | |
1738 | |
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1739 st->print(", swap %uk", ms.ullTotalPageFile >> 10); |
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1740 st->print("(%uk free)", ms.ullAvailPageFile >> 10); |
0 | 1741 st->cr(); |
1742 } | |
1743 | |
1744 void os::print_siginfo(outputStream *st, void *siginfo) { | |
1745 EXCEPTION_RECORD* er = (EXCEPTION_RECORD*)siginfo; | |
1746 st->print("siginfo:"); | |
1747 st->print(" ExceptionCode=0x%x", er->ExceptionCode); | |
1748 | |
1749 if (er->ExceptionCode == EXCEPTION_ACCESS_VIOLATION && | |
1750 er->NumberParameters >= 2) { | |
1751 switch (er->ExceptionInformation[0]) { | |
1752 case 0: st->print(", reading address"); break; | |
1753 case 1: st->print(", writing address"); break; | |
1754 default: st->print(", ExceptionInformation=" INTPTR_FORMAT, | |
1755 er->ExceptionInformation[0]); | |
1756 } | |
1757 st->print(" " INTPTR_FORMAT, er->ExceptionInformation[1]); | |
1758 } else if (er->ExceptionCode == EXCEPTION_IN_PAGE_ERROR && | |
1759 er->NumberParameters >= 2 && UseSharedSpaces) { | |
1760 FileMapInfo* mapinfo = FileMapInfo::current_info(); | |
1761 if (mapinfo->is_in_shared_space((void*)er->ExceptionInformation[1])) { | |
1762 st->print("\n\nError accessing class data sharing archive." \ | |
1763 " Mapped file inaccessible during execution, " \ | |
1764 " possible disk/network problem."); | |
1765 } | |
1766 } else { | |
1767 int num = er->NumberParameters; | |
1768 if (num > 0) { | |
1769 st->print(", ExceptionInformation="); | |
1770 for (int i = 0; i < num; i++) { | |
1771 st->print(INTPTR_FORMAT " ", er->ExceptionInformation[i]); | |
1772 } | |
1773 } | |
1774 } | |
1775 st->cr(); | |
1776 } | |
1777 | |
1778 void os::print_signal_handlers(outputStream* st, char* buf, size_t buflen) { | |
1779 // do nothing | |
1780 } | |
1781 | |
1782 static char saved_jvm_path[MAX_PATH] = {0}; | |
1783 | |
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1784 // Find the full path to the current module, jvm.dll |
0 | 1785 void os::jvm_path(char *buf, jint buflen) { |
1786 // Error checking. | |
1787 if (buflen < MAX_PATH) { | |
1788 assert(false, "must use a large-enough buffer"); | |
1789 buf[0] = '\0'; | |
1790 return; | |
1791 } | |
1792 // Lazy resolve the path to current module. | |
1793 if (saved_jvm_path[0] != 0) { | |
1794 strcpy(buf, saved_jvm_path); | |
1795 return; | |
1796 } | |
1797 | |
1985 | 1798 buf[0] = '\0'; |
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1799 if (Arguments::created_by_gamma_launcher()) { |
1985 | 1800 // Support for the gamma launcher. Check for an |
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1801 // JAVA_HOME environment variable |
1985 | 1802 // and fix up the path so it looks like |
1803 // libjvm.so is installed there (append a fake suffix | |
1804 // hotspot/libjvm.so). | |
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1805 char* java_home_var = ::getenv("JAVA_HOME"); |
1985 | 1806 if (java_home_var != NULL && java_home_var[0] != 0) { |
1807 | |
1808 strncpy(buf, java_home_var, buflen); | |
1809 | |
1810 // determine if this is a legacy image or modules image | |
1811 // modules image doesn't have "jre" subdirectory | |
1812 size_t len = strlen(buf); | |
1813 char* jrebin_p = buf + len; | |
1814 jio_snprintf(jrebin_p, buflen-len, "\\jre\\bin\\"); | |
1815 if (0 != _access(buf, 0)) { | |
1816 jio_snprintf(jrebin_p, buflen-len, "\\bin\\"); | |
1817 } | |
1818 len = strlen(buf); | |
1819 jio_snprintf(buf + len, buflen-len, "hotspot\\jvm.dll"); | |
1820 } | |
1821 } | |
1822 | |
1823 if(buf[0] == '\0') { | |
0 | 1824 GetModuleFileName(vm_lib_handle, buf, buflen); |
1985 | 1825 } |
0 | 1826 strcpy(saved_jvm_path, buf); |
1827 } | |
1828 | |
1829 | |
1830 void os::print_jni_name_prefix_on(outputStream* st, int args_size) { | |
1831 #ifndef _WIN64 | |
1832 st->print("_"); | |
1833 #endif | |
1834 } | |
1835 | |
1836 | |
1837 void os::print_jni_name_suffix_on(outputStream* st, int args_size) { | |
1838 #ifndef _WIN64 | |
1839 st->print("@%d", args_size * sizeof(int)); | |
1840 #endif | |
1841 } | |
1842 | |
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1843 // This method is a copy of JDK's sysGetLastErrorString |
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1844 // from src/windows/hpi/src/system_md.c |
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1845 |
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1846 size_t os::lasterror(char* buf, size_t len) { |
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1847 DWORD errval; |
1980
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1848 |
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1849 if ((errval = GetLastError()) != 0) { |
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1850 // DOS error |
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1851 size_t n = (size_t)FormatMessage( |
1980
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1852 FORMAT_MESSAGE_FROM_SYSTEM|FORMAT_MESSAGE_IGNORE_INSERTS, |
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1853 NULL, |
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1854 errval, |
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1855 0, |
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1856 buf, |
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1857 (DWORD)len, |
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1858 NULL); |
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1859 if (n > 3) { |
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1860 // Drop final '.', CR, LF |
1980
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1861 if (buf[n - 1] == '\n') n--; |
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1862 if (buf[n - 1] == '\r') n--; |
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1863 if (buf[n - 1] == '.') n--; |
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1864 buf[n] = '\0'; |
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1865 } |
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1866 return n; |
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1867 } |
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1868 |
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1869 if (errno != 0) { |
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1870 // C runtime error that has no corresponding DOS error code |
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1871 const char* s = strerror(errno); |
1980
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1872 size_t n = strlen(s); |
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1873 if (n >= len) n = len - 1; |
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1874 strncpy(buf, s, n); |
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1875 buf[n] = '\0'; |
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1876 return n; |
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|
1877 } |
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1878 |
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1879 return 0; |
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1880 } |
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1881 |
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1882 int os::get_last_error() { |
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1883 DWORD error = GetLastError(); |
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1884 if (error == 0) |
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1885 error = errno; |
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1886 return (int)error; |
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1887 } |
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1888 |
0 | 1889 // sun.misc.Signal |
1890 // NOTE that this is a workaround for an apparent kernel bug where if | |
1891 // a signal handler for SIGBREAK is installed then that signal handler | |
1892 // takes priority over the console control handler for CTRL_CLOSE_EVENT. | |
1893 // See bug 4416763. | |
1894 static void (*sigbreakHandler)(int) = NULL; | |
1895 | |
1896 static void UserHandler(int sig, void *siginfo, void *context) { | |
1897 os::signal_notify(sig); | |
1898 // We need to reinstate the signal handler each time... | |
1899 os::signal(sig, (void*)UserHandler); | |
1900 } | |
1901 | |
1902 void* os::user_handler() { | |
1903 return (void*) UserHandler; | |
1904 } | |
1905 | |
1906 void* os::signal(int signal_number, void* handler) { | |
1907 if ((signal_number == SIGBREAK) && (!ReduceSignalUsage)) { | |
1908 void (*oldHandler)(int) = sigbreakHandler; | |
1909 sigbreakHandler = (void (*)(int)) handler; | |
1910 return (void*) oldHandler; | |
1911 } else { | |
1912 return (void*)::signal(signal_number, (void (*)(int))handler); | |
1913 } | |
1914 } | |
1915 | |
1916 void os::signal_raise(int signal_number) { | |
1917 raise(signal_number); | |
1918 } | |
1919 | |
1920 // The Win32 C runtime library maps all console control events other than ^C | |
1921 // into SIGBREAK, which makes it impossible to distinguish ^BREAK from close, | |
1922 // logoff, and shutdown events. We therefore install our own console handler | |
1923 // that raises SIGTERM for the latter cases. | |
1924 // | |
1925 static BOOL WINAPI consoleHandler(DWORD event) { | |
1926 switch(event) { | |
1927 case CTRL_C_EVENT: | |
1928 if (is_error_reported()) { | |
1929 // Ctrl-C is pressed during error reporting, likely because the error | |
1930 // handler fails to abort. Let VM die immediately. | |
1931 os::die(); | |
1932 } | |
1933 | |
1934 os::signal_raise(SIGINT); | |
1935 return TRUE; | |
1936 break; | |
1937 case CTRL_BREAK_EVENT: | |
1938 if (sigbreakHandler != NULL) { | |
1939 (*sigbreakHandler)(SIGBREAK); | |
1940 } | |
1941 return TRUE; | |
1942 break; | |
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1943 case CTRL_LOGOFF_EVENT: { |
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1944 // Don't terminate JVM if it is running in a non-interactive session, |
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1945 // such as a service process. |
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1946 USEROBJECTFLAGS flags; |
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1947 HANDLE handle = GetProcessWindowStation(); |
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1948 if (handle != NULL && |
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1949 GetUserObjectInformation(handle, UOI_FLAGS, &flags, |
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1950 sizeof( USEROBJECTFLAGS), NULL)) { |
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1951 // If it is a non-interactive session, let next handler to deal |
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1952 // with it. |
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1953 if ((flags.dwFlags & WSF_VISIBLE) == 0) { |
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1954 return FALSE; |
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1955 } |
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1956 } |
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1957 } |
0 | 1958 case CTRL_CLOSE_EVENT: |
1959 case CTRL_SHUTDOWN_EVENT: | |
1960 os::signal_raise(SIGTERM); | |
1961 return TRUE; | |
1962 break; | |
1963 default: | |
1964 break; | |
1965 } | |
1966 return FALSE; | |
1967 } | |
1968 | |
1969 /* | |
1970 * The following code is moved from os.cpp for making this | |
1971 * code platform specific, which it is by its very nature. | |
1972 */ | |
1973 | |
1974 // Return maximum OS signal used + 1 for internal use only | |
1975 // Used as exit signal for signal_thread | |
1976 int os::sigexitnum_pd(){ | |
1977 return NSIG; | |
1978 } | |
1979 | |
1980 // a counter for each possible signal value, including signal_thread exit signal | |
1981 static volatile jint pending_signals[NSIG+1] = { 0 }; | |
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1982 static HANDLE sig_sem = NULL; |
0 | 1983 |
1984 void os::signal_init_pd() { | |
1985 // Initialize signal structures | |
1986 memset((void*)pending_signals, 0, sizeof(pending_signals)); | |
1987 | |
1988 sig_sem = ::CreateSemaphore(NULL, 0, NSIG+1, NULL); | |
1989 | |
1990 // Programs embedding the VM do not want it to attempt to receive | |
1991 // events like CTRL_LOGOFF_EVENT, which are used to implement the | |
1992 // shutdown hooks mechanism introduced in 1.3. For example, when | |
1993 // the VM is run as part of a Windows NT service (i.e., a servlet | |
1994 // engine in a web server), the correct behavior is for any console | |
1995 // control handler to return FALSE, not TRUE, because the OS's | |
1996 // "final" handler for such events allows the process to continue if | |
1997 // it is a service (while terminating it if it is not a service). | |
1998 // To make this behavior uniform and the mechanism simpler, we | |
1999 // completely disable the VM's usage of these console events if -Xrs | |
2000 // (=ReduceSignalUsage) is specified. This means, for example, that | |
2001 // the CTRL-BREAK thread dump mechanism is also disabled in this | |
2002 // case. See bugs 4323062, 4345157, and related bugs. | |
2003 | |
2004 if (!ReduceSignalUsage) { | |
2005 // Add a CTRL-C handler | |
2006 SetConsoleCtrlHandler(consoleHandler, TRUE); | |
2007 } | |
2008 } | |
2009 | |
2010 void os::signal_notify(int signal_number) { | |
2011 BOOL ret; | |
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2012 if (sig_sem != NULL) { |
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2013 Atomic::inc(&pending_signals[signal_number]); |
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2014 ret = ::ReleaseSemaphore(sig_sem, 1, NULL); |
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2015 assert(ret != 0, "ReleaseSemaphore() failed"); |
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2016 } |
0 | 2017 } |
2018 | |
2019 static int check_pending_signals(bool wait_for_signal) { | |
2020 DWORD ret; | |
2021 while (true) { | |
2022 for (int i = 0; i < NSIG + 1; i++) { | |
2023 jint n = pending_signals[i]; | |
2024 if (n > 0 && n == Atomic::cmpxchg(n - 1, &pending_signals[i], n)) { | |
2025 return i; | |
2026 } | |
2027 } | |
2028 if (!wait_for_signal) { | |
2029 return -1; | |
2030 } | |
2031 | |
2032 JavaThread *thread = JavaThread::current(); | |
2033 | |
2034 ThreadBlockInVM tbivm(thread); | |
2035 | |
2036 bool threadIsSuspended; | |
2037 do { | |
2038 thread->set_suspend_equivalent(); | |
2039 // cleared by handle_special_suspend_equivalent_condition() or java_suspend_self() | |
2040 ret = ::WaitForSingleObject(sig_sem, INFINITE); | |
2041 assert(ret == WAIT_OBJECT_0, "WaitForSingleObject() failed"); | |
2042 | |
2043 // were we externally suspended while we were waiting? | |
2044 threadIsSuspended = thread->handle_special_suspend_equivalent_condition(); | |
2045 if (threadIsSuspended) { | |
2046 // | |
2047 // The semaphore has been incremented, but while we were waiting | |
2048 // another thread suspended us. We don't want to continue running | |
2049 // while suspended because that would surprise the thread that | |
2050 // suspended us. | |
2051 // | |
2052 ret = ::ReleaseSemaphore(sig_sem, 1, NULL); | |
2053 assert(ret != 0, "ReleaseSemaphore() failed"); | |
2054 | |
2055 thread->java_suspend_self(); | |
2056 } | |
2057 } while (threadIsSuspended); | |
2058 } | |
2059 } | |
2060 | |
2061 int os::signal_lookup() { | |
2062 return check_pending_signals(false); | |
2063 } | |
2064 | |
2065 int os::signal_wait() { | |
2066 return check_pending_signals(true); | |
2067 } | |
2068 | |
2069 // Implicit OS exception handling | |
2070 | |
2071 LONG Handle_Exception(struct _EXCEPTION_POINTERS* exceptionInfo, address handler) { | |
2072 JavaThread* thread = JavaThread::current(); | |
2073 // Save pc in thread | |
2074 #ifdef _M_IA64 | |
7994 | 2075 // Do not blow up if no thread info available. |
2076 if (thread) { | |
2077 // Saving PRECISE pc (with slot information) in thread. | |
2078 uint64_t precise_pc = (uint64_t) exceptionInfo->ExceptionRecord->ExceptionAddress; | |
2079 // Convert precise PC into "Unix" format | |
2080 precise_pc = (precise_pc & 0xFFFFFFFFFFFFFFF0) | ((precise_pc & 0xF) >> 2); | |
2081 thread->set_saved_exception_pc((address)precise_pc); | |
2082 } | |
0 | 2083 // Set pc to handler |
2084 exceptionInfo->ContextRecord->StIIP = (DWORD64)handler; | |
7994 | 2085 // Clear out psr.ri (= Restart Instruction) in order to continue |
2086 // at the beginning of the target bundle. | |
2087 exceptionInfo->ContextRecord->StIPSR &= 0xFFFFF9FFFFFFFFFF; | |
2088 assert(((DWORD64)handler & 0xF) == 0, "Target address must point to the beginning of a bundle!"); | |
0 | 2089 #elif _M_AMD64 |
7994 | 2090 // Do not blow up if no thread info available. |
2091 if (thread) { | |
2092 thread->set_saved_exception_pc((address)(DWORD_PTR)exceptionInfo->ContextRecord->Rip); | |
2093 } | |
0 | 2094 // Set pc to handler |
2095 exceptionInfo->ContextRecord->Rip = (DWORD64)handler; | |
2096 #else | |
7994 | 2097 // Do not blow up if no thread info available. |
2098 if (thread) { | |
2099 thread->set_saved_exception_pc((address)(DWORD_PTR)exceptionInfo->ContextRecord->Eip); | |
2100 } | |
0 | 2101 // Set pc to handler |
7994 | 2102 exceptionInfo->ContextRecord->Eip = (DWORD)(DWORD_PTR)handler; |
0 | 2103 #endif |
2104 | |
2105 // Continue the execution | |
2106 return EXCEPTION_CONTINUE_EXECUTION; | |
2107 } | |
2108 | |
2109 | |
2110 // Used for PostMortemDump | |
2111 extern "C" void safepoints(); | |
2112 extern "C" void find(int x); | |
2113 extern "C" void events(); | |
2114 | |
2115 // According to Windows API documentation, an illegal instruction sequence should generate | |
2116 // the 0xC000001C exception code. However, real world experience shows that occasionnaly | |
2117 // the execution of an illegal instruction can generate the exception code 0xC000001E. This | |
2118 // seems to be an undocumented feature of Win NT 4.0 (and probably other Windows systems). | |
2119 | |
2120 #define EXCEPTION_ILLEGAL_INSTRUCTION_2 0xC000001E | |
2121 | |
2122 // From "Execution Protection in the Windows Operating System" draft 0.35 | |
2123 // Once a system header becomes available, the "real" define should be | |
2124 // included or copied here. | |
2125 #define EXCEPTION_INFO_EXEC_VIOLATION 0x08 | |
2126 | |
7994 | 2127 // Handle NAT Bit consumption on IA64. |
2128 #ifdef _M_IA64 | |
2129 #define EXCEPTION_REG_NAT_CONSUMPTION STATUS_REG_NAT_CONSUMPTION | |
2130 #endif | |
2131 | |
2132 // Windows Vista/2008 heap corruption check | |
2133 #define EXCEPTION_HEAP_CORRUPTION 0xC0000374 | |
2134 | |
0 | 2135 #define def_excpt(val) #val, val |
2136 | |
2137 struct siglabel { | |
2138 char *name; | |
2139 int number; | |
2140 }; | |
2141 | |
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2142 // All Visual C++ exceptions thrown from code generated by the Microsoft Visual |
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2143 // C++ compiler contain this error code. Because this is a compiler-generated |
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2144 // error, the code is not listed in the Win32 API header files. |
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2145 // The code is actually a cryptic mnemonic device, with the initial "E" |
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2146 // standing for "exception" and the final 3 bytes (0x6D7363) representing the |
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2147 // ASCII values of "msc". |
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2148 |
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2149 #define EXCEPTION_UNCAUGHT_CXX_EXCEPTION 0xE06D7363 |
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2150 |
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2151 |
0 | 2152 struct siglabel exceptlabels[] = { |
2153 def_excpt(EXCEPTION_ACCESS_VIOLATION), | |
2154 def_excpt(EXCEPTION_DATATYPE_MISALIGNMENT), | |
2155 def_excpt(EXCEPTION_BREAKPOINT), | |
2156 def_excpt(EXCEPTION_SINGLE_STEP), | |
2157 def_excpt(EXCEPTION_ARRAY_BOUNDS_EXCEEDED), | |
2158 def_excpt(EXCEPTION_FLT_DENORMAL_OPERAND), | |
2159 def_excpt(EXCEPTION_FLT_DIVIDE_BY_ZERO), | |
2160 def_excpt(EXCEPTION_FLT_INEXACT_RESULT), | |
2161 def_excpt(EXCEPTION_FLT_INVALID_OPERATION), | |
2162 def_excpt(EXCEPTION_FLT_OVERFLOW), | |
2163 def_excpt(EXCEPTION_FLT_STACK_CHECK), | |
2164 def_excpt(EXCEPTION_FLT_UNDERFLOW), | |
2165 def_excpt(EXCEPTION_INT_DIVIDE_BY_ZERO), | |
2166 def_excpt(EXCEPTION_INT_OVERFLOW), | |
2167 def_excpt(EXCEPTION_PRIV_INSTRUCTION), | |
2168 def_excpt(EXCEPTION_IN_PAGE_ERROR), | |
2169 def_excpt(EXCEPTION_ILLEGAL_INSTRUCTION), | |
2170 def_excpt(EXCEPTION_ILLEGAL_INSTRUCTION_2), | |
2171 def_excpt(EXCEPTION_NONCONTINUABLE_EXCEPTION), | |
2172 def_excpt(EXCEPTION_STACK_OVERFLOW), | |
2173 def_excpt(EXCEPTION_INVALID_DISPOSITION), | |
2174 def_excpt(EXCEPTION_GUARD_PAGE), | |
2175 def_excpt(EXCEPTION_INVALID_HANDLE), | |
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2176 def_excpt(EXCEPTION_UNCAUGHT_CXX_EXCEPTION), |
7994 | 2177 def_excpt(EXCEPTION_HEAP_CORRUPTION), |
2178 #ifdef _M_IA64 | |
2179 def_excpt(EXCEPTION_REG_NAT_CONSUMPTION), | |
2180 #endif | |
0 | 2181 NULL, 0 |
2182 }; | |
2183 | |
2184 const char* os::exception_name(int exception_code, char *buf, size_t size) { | |
2185 for (int i = 0; exceptlabels[i].name != NULL; i++) { | |
2186 if (exceptlabels[i].number == exception_code) { | |
2187 jio_snprintf(buf, size, "%s", exceptlabels[i].name); | |
2188 return buf; | |
2189 } | |
2190 } | |
2191 | |
2192 return NULL; | |
2193 } | |
2194 | |
2195 //----------------------------------------------------------------------------- | |
2196 LONG Handle_IDiv_Exception(struct _EXCEPTION_POINTERS* exceptionInfo) { | |
2197 // handle exception caused by idiv; should only happen for -MinInt/-1 | |
2198 // (division by zero is handled explicitly) | |
2199 #ifdef _M_IA64 | |
2200 assert(0, "Fix Handle_IDiv_Exception"); | |
2201 #elif _M_AMD64 | |
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2202 #ifdef GRAAL |
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2203 PCONTEXT ctx = exceptionInfo->ContextRecord; |
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2204 address pc = (address)ctx->Rip; |
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2205 assert(pc[0] >= Assembler::REX && pc[0] <= Assembler::REX_WRXB && pc[1] == 0xF7 || pc[0] == 0xF7, "not an idiv opcode"); |
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2206 if (pc[0] == 0xF7) { |
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2207 // set correct result values and continue after idiv instruction |
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2208 ctx->Rip = (DWORD64)pc + 2; // idiv reg, reg is 2 bytes |
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2209 } else { |
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2210 ctx->Rip = (DWORD64)pc + 3; // REX idiv reg, reg is 3 bytes |
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2211 } |
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2212 // do not set ctx->Rax as it already contains the correct value (either 32 or 64 bit, depending on the operation) |
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2213 // this is the case because the exception only happens for -MinValue/-1 and -MinValue is always in rax because of the |
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2214 // idiv opcode (0xF7) |
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2215 ctx->Rdx = (DWORD64)0; // remainder |
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2216 // Continue the execution |
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2217 #else |
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2218 PCONTEXT ctx = exceptionInfo->ContextRecord; |
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2219 address pc = (address)ctx->Rip; |
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2220 assert(pc[0] == 0xF7, "not an idiv opcode"); |
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2221 assert((pc[1] & ~0x7) == 0xF8, "cannot handle non-register operands"); |
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2222 assert(ctx->Rax == min_jint, "unexpected idiv exception"); |
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2223 // set correct result values and continue after idiv instruction |
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2224 ctx->Rip = (DWORD)pc + 2; // idiv reg, reg is 2 bytes |
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2225 ctx->Rax = (DWORD)min_jint; // result |
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2226 ctx->Rdx = (DWORD)0; // remainder |
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2227 // Continue the execution |
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2228 #endif // GRAAL |
0 | 2229 #else |
2230 PCONTEXT ctx = exceptionInfo->ContextRecord; | |
2231 address pc = (address)ctx->Eip; | |
2232 assert(pc[0] == 0xF7, "not an idiv opcode"); | |
2233 assert((pc[1] & ~0x7) == 0xF8, "cannot handle non-register operands"); | |
2234 assert(ctx->Eax == min_jint, "unexpected idiv exception"); | |
2235 // set correct result values and continue after idiv instruction | |
2236 ctx->Eip = (DWORD)pc + 2; // idiv reg, reg is 2 bytes | |
2237 ctx->Eax = (DWORD)min_jint; // result | |
2238 ctx->Edx = (DWORD)0; // remainder | |
2239 // Continue the execution | |
2240 #endif | |
2241 return EXCEPTION_CONTINUE_EXECUTION; | |
2242 } | |
2243 | |
2244 #ifndef _WIN64 | |
2245 //----------------------------------------------------------------------------- | |
2246 LONG WINAPI Handle_FLT_Exception(struct _EXCEPTION_POINTERS* exceptionInfo) { | |
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2247 // handle exception caused by native method modifying control word |
0 | 2248 PCONTEXT ctx = exceptionInfo->ContextRecord; |
2249 DWORD exception_code = exceptionInfo->ExceptionRecord->ExceptionCode; | |
2250 | |
2251 switch (exception_code) { | |
2252 case EXCEPTION_FLT_DENORMAL_OPERAND: | |
2253 case EXCEPTION_FLT_DIVIDE_BY_ZERO: | |
2254 case EXCEPTION_FLT_INEXACT_RESULT: | |
2255 case EXCEPTION_FLT_INVALID_OPERATION: | |
2256 case EXCEPTION_FLT_OVERFLOW: | |
2257 case EXCEPTION_FLT_STACK_CHECK: | |
2258 case EXCEPTION_FLT_UNDERFLOW: | |
2259 jint fp_control_word = (* (jint*) StubRoutines::addr_fpu_cntrl_wrd_std()); | |
2260 if (fp_control_word != ctx->FloatSave.ControlWord) { | |
2261 // Restore FPCW and mask out FLT exceptions | |
2262 ctx->FloatSave.ControlWord = fp_control_word | 0xffffffc0; | |
2263 // Mask out pending FLT exceptions | |
2264 ctx->FloatSave.StatusWord &= 0xffffff00; | |
2265 return EXCEPTION_CONTINUE_EXECUTION; | |
2266 } | |
2267 } | |
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2268 |
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2269 if (prev_uef_handler != NULL) { |
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2270 // We didn't handle this exception so pass it to the previous |
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2271 // UnhandledExceptionFilter. |
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2272 return (prev_uef_handler)(exceptionInfo); |
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2273 } |
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2274 |
0 | 2275 return EXCEPTION_CONTINUE_SEARCH; |
2276 } | |
2277 #else //_WIN64 | |
2278 /* | |
2279 On Windows, the mxcsr control bits are non-volatile across calls | |
2280 See also CR 6192333 | |
2281 If EXCEPTION_FLT_* happened after some native method modified | |
2282 mxcsr - it is not a jvm fault. | |
2283 However should we decide to restore of mxcsr after a faulty | |
2284 native method we can uncomment following code | |
2285 jint MxCsr = INITIAL_MXCSR; | |
2286 // we can't use StubRoutines::addr_mxcsr_std() | |
2287 // because in Win64 mxcsr is not saved there | |
2288 if (MxCsr != ctx->MxCsr) { | |
2289 ctx->MxCsr = MxCsr; | |
2290 return EXCEPTION_CONTINUE_EXECUTION; | |
2291 } | |
2292 | |
2293 */ | |
2294 #endif //_WIN64 | |
2295 | |
2296 | |
2297 // Fatal error reporting is single threaded so we can make this a | |
2298 // static and preallocated. If it's more than MAX_PATH silently ignore | |
2299 // it. | |
2300 static char saved_error_file[MAX_PATH] = {0}; | |
2301 | |
2302 void os::set_error_file(const char *logfile) { | |
2303 if (strlen(logfile) <= MAX_PATH) { | |
2304 strncpy(saved_error_file, logfile, MAX_PATH); | |
2305 } | |
2306 } | |
2307 | |
2308 static inline void report_error(Thread* t, DWORD exception_code, | |
2309 address addr, void* siginfo, void* context) { | |
2310 VMError err(t, exception_code, addr, siginfo, context); | |
2311 err.report_and_die(); | |
2312 | |
2313 // If UseOsErrorReporting, this will return here and save the error file | |
2314 // somewhere where we can find it in the minidump. | |
2315 } | |
2316 | |
2317 //----------------------------------------------------------------------------- | |
2318 LONG WINAPI topLevelExceptionFilter(struct _EXCEPTION_POINTERS* exceptionInfo) { | |
2319 if (InterceptOSException) return EXCEPTION_CONTINUE_SEARCH; | |
2320 DWORD exception_code = exceptionInfo->ExceptionRecord->ExceptionCode; | |
2321 #ifdef _M_IA64 | |
7994 | 2322 // On Itanium, we need the "precise pc", which has the slot number coded |
2323 // into the least 4 bits: 0000=slot0, 0100=slot1, 1000=slot2 (Windows format). | |
2324 address pc = (address) exceptionInfo->ExceptionRecord->ExceptionAddress; | |
2325 // Convert the pc to "Unix format", which has the slot number coded | |
2326 // into the least 2 bits: 0000=slot0, 0001=slot1, 0010=slot2 | |
2327 // This is needed for IA64 because "relocation" / "implicit null check" / "poll instruction" | |
2328 // information is saved in the Unix format. | |
2329 address pc_unix_format = (address) ((((uint64_t)pc) & 0xFFFFFFFFFFFFFFF0) | ((((uint64_t)pc) & 0xF) >> 2)); | |
0 | 2330 #elif _M_AMD64 |
2331 address pc = (address) exceptionInfo->ContextRecord->Rip; | |
2332 #else | |
2333 address pc = (address) exceptionInfo->ContextRecord->Eip; | |
2334 #endif | |
2335 Thread* t = ThreadLocalStorage::get_thread_slow(); // slow & steady | |
2336 | |
2337 #ifndef _WIN64 | |
2338 // Execution protection violation - win32 running on AMD64 only | |
2339 // Handled first to avoid misdiagnosis as a "normal" access violation; | |
2340 // This is safe to do because we have a new/unique ExceptionInformation | |
2341 // code for this condition. | |
2342 if (exception_code == EXCEPTION_ACCESS_VIOLATION) { | |
2343 PEXCEPTION_RECORD exceptionRecord = exceptionInfo->ExceptionRecord; | |
2344 int exception_subcode = (int) exceptionRecord->ExceptionInformation[0]; | |
2345 address addr = (address) exceptionRecord->ExceptionInformation[1]; | |
2346 | |
2347 if (exception_subcode == EXCEPTION_INFO_EXEC_VIOLATION) { | |
2348 int page_size = os::vm_page_size(); | |
2349 | |
2350 // Make sure the pc and the faulting address are sane. | |
2351 // | |
2352 // If an instruction spans a page boundary, and the page containing | |
2353 // the beginning of the instruction is executable but the following | |
2354 // page is not, the pc and the faulting address might be slightly | |
2355 // different - we still want to unguard the 2nd page in this case. | |
2356 // | |
2357 // 15 bytes seems to be a (very) safe value for max instruction size. | |
2358 bool pc_is_near_addr = | |
2359 (pointer_delta((void*) addr, (void*) pc, sizeof(char)) < 15); | |
2360 bool instr_spans_page_boundary = | |
2361 (align_size_down((intptr_t) pc ^ (intptr_t) addr, | |
2362 (intptr_t) page_size) > 0); | |
2363 | |
2364 if (pc == addr || (pc_is_near_addr && instr_spans_page_boundary)) { | |
2365 static volatile address last_addr = | |
2366 (address) os::non_memory_address_word(); | |
2367 | |
2368 // In conservative mode, don't unguard unless the address is in the VM | |
2369 if (UnguardOnExecutionViolation > 0 && addr != last_addr && | |
2370 (UnguardOnExecutionViolation > 1 || os::address_is_in_vm(addr))) { | |
2371 | |
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2372 // Set memory to RWX and retry |
0 | 2373 address page_start = |
2374 (address) align_size_down((intptr_t) addr, (intptr_t) page_size); | |
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2375 bool res = os::protect_memory((char*) page_start, page_size, |
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2376 os::MEM_PROT_RWX); |
0 | 2377 |
2378 if (PrintMiscellaneous && Verbose) { | |
2379 char buf[256]; | |
2380 jio_snprintf(buf, sizeof(buf), "Execution protection violation " | |
2381 "at " INTPTR_FORMAT | |
2382 ", unguarding " INTPTR_FORMAT ": %s", addr, | |
2383 page_start, (res ? "success" : strerror(errno))); | |
2384 tty->print_raw_cr(buf); | |
2385 } | |
2386 | |
2387 // Set last_addr so if we fault again at the same address, we don't | |
2388 // end up in an endless loop. | |
2389 // | |
2390 // There are two potential complications here. Two threads trapping | |
2391 // at the same address at the same time could cause one of the | |
2392 // threads to think it already unguarded, and abort the VM. Likely | |
2393 // very rare. | |
2394 // | |
2395 // The other race involves two threads alternately trapping at | |
2396 // different addresses and failing to unguard the page, resulting in | |
2397 // an endless loop. This condition is probably even more unlikely | |
2398 // than the first. | |
2399 // | |
2400 // Although both cases could be avoided by using locks or thread | |
2401 // local last_addr, these solutions are unnecessary complication: | |
2402 // this handler is a best-effort safety net, not a complete solution. | |
2403 // It is disabled by default and should only be used as a workaround | |
2404 // in case we missed any no-execute-unsafe VM code. | |
2405 | |
2406 last_addr = addr; | |
2407 | |
2408 return EXCEPTION_CONTINUE_EXECUTION; | |
2409 } | |
2410 } | |
2411 | |
2412 // Last unguard failed or not unguarding | |
2413 tty->print_raw_cr("Execution protection violation"); | |
2414 report_error(t, exception_code, addr, exceptionInfo->ExceptionRecord, | |
2415 exceptionInfo->ContextRecord); | |
2416 return EXCEPTION_CONTINUE_SEARCH; | |
2417 } | |
2418 } | |
2419 #endif // _WIN64 | |
2420 | |
2421 // Check to see if we caught the safepoint code in the | |
2422 // process of write protecting the memory serialization page. | |
2423 // It write enables the page immediately after protecting it | |
2424 // so just return. | |
2425 if ( exception_code == EXCEPTION_ACCESS_VIOLATION ) { | |
2426 JavaThread* thread = (JavaThread*) t; | |
2427 PEXCEPTION_RECORD exceptionRecord = exceptionInfo->ExceptionRecord; | |
2428 address addr = (address) exceptionRecord->ExceptionInformation[1]; | |
2429 if ( os::is_memory_serialize_page(thread, addr) ) { | |
2430 // Block current thread until the memory serialize page permission restored. | |
2431 os::block_on_serialize_page_trap(); | |
2432 return EXCEPTION_CONTINUE_EXECUTION; | |
2433 } | |
2434 } | |
2435 | |
2436 if (t != NULL && t->is_Java_thread()) { | |
2437 JavaThread* thread = (JavaThread*) t; | |
2438 bool in_java = thread->thread_state() == _thread_in_Java; | |
2439 | |
2440 // Handle potential stack overflows up front. | |
2441 if (exception_code == EXCEPTION_STACK_OVERFLOW) { | |
2442 if (os::uses_stack_guard_pages()) { | |
2443 #ifdef _M_IA64 | |
7994 | 2444 // Use guard page for register stack. |
0 | 2445 PEXCEPTION_RECORD exceptionRecord = exceptionInfo->ExceptionRecord; |
2446 address addr = (address) exceptionRecord->ExceptionInformation[1]; | |
7994 | 2447 // Check for a register stack overflow on Itanium |
2448 if (thread->addr_inside_register_stack_red_zone(addr)) { | |
2449 // Fatal red zone violation happens if the Java program | |
2450 // catches a StackOverflow error and does so much processing | |
2451 // that it runs beyond the unprotected yellow guard zone. As | |
2452 // a result, we are out of here. | |
2453 fatal("ERROR: Unrecoverable stack overflow happened. JVM will exit."); | |
2454 } else if(thread->addr_inside_register_stack(addr)) { | |
2455 // Disable the yellow zone which sets the state that | |
2456 // we've got a stack overflow problem. | |
2457 if (thread->stack_yellow_zone_enabled()) { | |
2458 thread->disable_stack_yellow_zone(); | |
2459 } | |
2460 // Give us some room to process the exception. | |
2461 thread->disable_register_stack_guard(); | |
2462 // Tracing with +Verbose. | |
2463 if (Verbose) { | |
2464 tty->print_cr("SOF Compiled Register Stack overflow at " INTPTR_FORMAT " (SIGSEGV)", pc); | |
2465 tty->print_cr("Register Stack access at " INTPTR_FORMAT, addr); | |
2466 tty->print_cr("Register Stack base " INTPTR_FORMAT, thread->register_stack_base()); | |
2467 tty->print_cr("Register Stack [" INTPTR_FORMAT "," INTPTR_FORMAT "]", | |
2468 thread->register_stack_base(), | |
2469 thread->register_stack_base() + thread->stack_size()); | |
2470 } | |
2471 | |
2472 // Reguard the permanent register stack red zone just to be sure. | |
2473 // We saw Windows silently disabling this without telling us. | |
2474 thread->enable_register_stack_red_zone(); | |
2475 | |
2476 return Handle_Exception(exceptionInfo, | |
2477 SharedRuntime::continuation_for_implicit_exception(thread, pc, SharedRuntime::STACK_OVERFLOW)); | |
0 | 2478 } |
2479 #endif | |
2480 if (thread->stack_yellow_zone_enabled()) { | |
2481 // Yellow zone violation. The o/s has unprotected the first yellow | |
2482 // zone page for us. Note: must call disable_stack_yellow_zone to | |
2483 // update the enabled status, even if the zone contains only one page. | |
2484 thread->disable_stack_yellow_zone(); | |
2485 // If not in java code, return and hope for the best. | |
2486 return in_java ? Handle_Exception(exceptionInfo, | |
2487 SharedRuntime::continuation_for_implicit_exception(thread, pc, SharedRuntime::STACK_OVERFLOW)) | |
2488 : EXCEPTION_CONTINUE_EXECUTION; | |
2489 } else { | |
2490 // Fatal red zone violation. | |
2491 thread->disable_stack_red_zone(); | |
2492 tty->print_raw_cr("An unrecoverable stack overflow has occurred."); | |
2493 report_error(t, exception_code, pc, exceptionInfo->ExceptionRecord, | |
2494 exceptionInfo->ContextRecord); | |
2495 return EXCEPTION_CONTINUE_SEARCH; | |
2496 } | |
2497 } else if (in_java) { | |
2498 // JVM-managed guard pages cannot be used on win95/98. The o/s provides | |
2499 // a one-time-only guard page, which it has released to us. The next | |
2500 // stack overflow on this thread will result in an ACCESS_VIOLATION. | |
2501 return Handle_Exception(exceptionInfo, | |
2502 SharedRuntime::continuation_for_implicit_exception(thread, pc, SharedRuntime::STACK_OVERFLOW)); | |
2503 } else { | |
2504 // Can only return and hope for the best. Further stack growth will | |
2505 // result in an ACCESS_VIOLATION. | |
2506 return EXCEPTION_CONTINUE_EXECUTION; | |
2507 } | |
2508 } else if (exception_code == EXCEPTION_ACCESS_VIOLATION) { | |
2509 // Either stack overflow or null pointer exception. | |
2510 if (in_java) { | |
2511 PEXCEPTION_RECORD exceptionRecord = exceptionInfo->ExceptionRecord; | |
2512 address addr = (address) exceptionRecord->ExceptionInformation[1]; | |
2513 address stack_end = thread->stack_base() - thread->stack_size(); | |
2514 if (addr < stack_end && addr >= stack_end - os::vm_page_size()) { | |
2515 // Stack overflow. | |
2516 assert(!os::uses_stack_guard_pages(), | |
2517 "should be caught by red zone code above."); | |
2518 return Handle_Exception(exceptionInfo, | |
2519 SharedRuntime::continuation_for_implicit_exception(thread, pc, SharedRuntime::STACK_OVERFLOW)); | |
2520 } | |
2521 // | |
2522 // Check for safepoint polling and implicit null | |
2523 // We only expect null pointers in the stubs (vtable) | |
2524 // the rest are checked explicitly now. | |
2525 // | |
2526 CodeBlob* cb = CodeCache::find_blob(pc); | |
2527 if (cb != NULL) { | |
2528 if (os::is_poll_address(addr)) { | |
2529 address stub = SharedRuntime::get_poll_stub(pc); | |
2530 return Handle_Exception(exceptionInfo, stub); | |
2531 } | |
2532 } | |
2533 { | |
2534 #ifdef _WIN64 | |
2535 // | |
2536 // If it's a legal stack address map the entire region in | |
2537 // | |
2538 PEXCEPTION_RECORD exceptionRecord = exceptionInfo->ExceptionRecord; | |
2539 address addr = (address) exceptionRecord->ExceptionInformation[1]; | |
2540 if (addr > thread->stack_yellow_zone_base() && addr < thread->stack_base() ) { | |
2541 addr = (address)((uintptr_t)addr & | |
2542 (~((uintptr_t)os::vm_page_size() - (uintptr_t)1))); | |
656 | 2543 os::commit_memory((char *)addr, thread->stack_base() - addr, |
2544 false ); | |
0 | 2545 return EXCEPTION_CONTINUE_EXECUTION; |
2546 } | |
2547 else | |
2548 #endif | |
2549 { | |
2550 // Null pointer exception. | |
2551 #ifdef _M_IA64 | |
7994 | 2552 // Process implicit null checks in compiled code. Note: Implicit null checks |
2553 // can happen even if "ImplicitNullChecks" is disabled, e.g. in vtable stubs. | |
2554 if (CodeCache::contains((void*) pc_unix_format) && !MacroAssembler::needs_explicit_null_check((intptr_t) addr)) { | |
2555 CodeBlob *cb = CodeCache::find_blob_unsafe(pc_unix_format); | |
2556 // Handle implicit null check in UEP method entry | |
2557 if (cb && (cb->is_frame_complete_at(pc) || | |
2558 (cb->is_nmethod() && ((nmethod *)cb)->inlinecache_check_contains(pc)))) { | |
2559 if (Verbose) { | |
2560 intptr_t *bundle_start = (intptr_t*) ((intptr_t) pc_unix_format & 0xFFFFFFFFFFFFFFF0); | |
2561 tty->print_cr("trap: null_check at " INTPTR_FORMAT " (SIGSEGV)", pc_unix_format); | |
2562 tty->print_cr(" to addr " INTPTR_FORMAT, addr); | |
2563 tty->print_cr(" bundle is " INTPTR_FORMAT " (high), " INTPTR_FORMAT " (low)", | |
2564 *(bundle_start + 1), *bundle_start); | |
0 | 2565 } |
2566 return Handle_Exception(exceptionInfo, | |
7994 | 2567 SharedRuntime::continuation_for_implicit_exception(thread, pc_unix_format, SharedRuntime::IMPLICIT_NULL)); |
0 | 2568 } |
7994 | 2569 } |
2570 | |
2571 // Implicit null checks were processed above. Hence, we should not reach | |
2572 // here in the usual case => die! | |
2573 if (Verbose) tty->print_raw_cr("Access violation, possible null pointer exception"); | |
0 | 2574 report_error(t, exception_code, pc, exceptionInfo->ExceptionRecord, |
2575 exceptionInfo->ContextRecord); | |
2576 return EXCEPTION_CONTINUE_SEARCH; | |
7994 | 2577 |
2578 #else // !IA64 | |
0 | 2579 |
2580 // Windows 98 reports faulting addresses incorrectly | |
2581 if (!MacroAssembler::needs_explicit_null_check((intptr_t)addr) || | |
2582 !os::win32::is_nt()) { | |
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2583 address stub = SharedRuntime::continuation_for_implicit_exception(thread, pc, SharedRuntime::IMPLICIT_NULL); |
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2584 if (stub != NULL) return Handle_Exception(exceptionInfo, stub); |
0 | 2585 } |
2586 report_error(t, exception_code, pc, exceptionInfo->ExceptionRecord, | |
2587 exceptionInfo->ContextRecord); | |
2588 return EXCEPTION_CONTINUE_SEARCH; | |
2589 #endif | |
2590 } | |
2591 } | |
2592 } | |
2593 | |
2594 #ifdef _WIN64 | |
2595 // Special care for fast JNI field accessors. | |
2596 // jni_fast_Get<Primitive>Field can trap at certain pc's if a GC kicks | |
2597 // in and the heap gets shrunk before the field access. | |
2598 if (exception_code == EXCEPTION_ACCESS_VIOLATION) { | |
2599 address addr = JNI_FastGetField::find_slowcase_pc(pc); | |
2600 if (addr != (address)-1) { | |
2601 return Handle_Exception(exceptionInfo, addr); | |
2602 } | |
2603 } | |
2604 #endif | |
2605 | |
2606 // Stack overflow or null pointer exception in native code. | |
2607 report_error(t, exception_code, pc, exceptionInfo->ExceptionRecord, | |
2608 exceptionInfo->ContextRecord); | |
2609 return EXCEPTION_CONTINUE_SEARCH; | |
7994 | 2610 } // /EXCEPTION_ACCESS_VIOLATION |
2611 // - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - | |
2612 #if defined _M_IA64 | |
2613 else if ((exception_code == EXCEPTION_ILLEGAL_INSTRUCTION || | |
2614 exception_code == EXCEPTION_ILLEGAL_INSTRUCTION_2)) { | |
2615 M37 handle_wrong_method_break(0, NativeJump::HANDLE_WRONG_METHOD, PR0); | |
2616 | |
2617 // Compiled method patched to be non entrant? Following conditions must apply: | |
2618 // 1. must be first instruction in bundle | |
2619 // 2. must be a break instruction with appropriate code | |
2620 if((((uint64_t) pc & 0x0F) == 0) && | |
2621 (((IPF_Bundle*) pc)->get_slot0() == handle_wrong_method_break.bits())) { | |
2622 return Handle_Exception(exceptionInfo, | |
2623 (address)SharedRuntime::get_handle_wrong_method_stub()); | |
2624 } | |
2625 } // /EXCEPTION_ILLEGAL_INSTRUCTION | |
2626 #endif | |
2627 | |
0 | 2628 |
2629 if (in_java) { | |
2630 switch (exception_code) { | |
2631 case EXCEPTION_INT_DIVIDE_BY_ZERO: | |
2632 return Handle_Exception(exceptionInfo, SharedRuntime::continuation_for_implicit_exception(thread, pc, SharedRuntime::IMPLICIT_DIVIDE_BY_ZERO)); | |
2633 | |
2634 case EXCEPTION_INT_OVERFLOW: | |
2635 return Handle_IDiv_Exception(exceptionInfo); | |
2636 | |
2637 } // switch | |
2638 } | |
2639 #ifndef _WIN64 | |
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2640 if (((thread->thread_state() == _thread_in_Java) || |
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2641 (thread->thread_state() == _thread_in_native)) && |
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2642 exception_code != EXCEPTION_UNCAUGHT_CXX_EXCEPTION) |
0 | 2643 { |
2644 LONG result=Handle_FLT_Exception(exceptionInfo); | |
2645 if (result==EXCEPTION_CONTINUE_EXECUTION) return result; | |
2646 } | |
2647 #endif //_WIN64 | |
2648 } | |
2649 | |
2650 if (exception_code != EXCEPTION_BREAKPOINT) { | |
2651 report_error(t, exception_code, pc, exceptionInfo->ExceptionRecord, | |
2652 exceptionInfo->ContextRecord); | |
2653 } | |
2654 return EXCEPTION_CONTINUE_SEARCH; | |
2655 } | |
2656 | |
2657 #ifndef _WIN64 | |
2658 // Special care for fast JNI accessors. | |
2659 // jni_fast_Get<Primitive>Field can trap at certain pc's if a GC kicks in and | |
2660 // the heap gets shrunk before the field access. | |
2661 // Need to install our own structured exception handler since native code may | |
2662 // install its own. | |
2663 LONG WINAPI fastJNIAccessorExceptionFilter(struct _EXCEPTION_POINTERS* exceptionInfo) { | |
2664 DWORD exception_code = exceptionInfo->ExceptionRecord->ExceptionCode; | |
2665 if (exception_code == EXCEPTION_ACCESS_VIOLATION) { | |
2666 address pc = (address) exceptionInfo->ContextRecord->Eip; | |
2667 address addr = JNI_FastGetField::find_slowcase_pc(pc); | |
2668 if (addr != (address)-1) { | |
2669 return Handle_Exception(exceptionInfo, addr); | |
2670 } | |
2671 } | |
2672 return EXCEPTION_CONTINUE_SEARCH; | |
2673 } | |
2674 | |
2675 #define DEFINE_FAST_GETFIELD(Return,Fieldname,Result) \ | |
2676 Return JNICALL jni_fast_Get##Result##Field_wrapper(JNIEnv *env, jobject obj, jfieldID fieldID) { \ | |
2677 __try { \ | |
2678 return (*JNI_FastGetField::jni_fast_Get##Result##Field_fp)(env, obj, fieldID); \ | |
2679 } __except(fastJNIAccessorExceptionFilter((_EXCEPTION_POINTERS*)_exception_info())) { \ | |
2680 } \ | |
2681 return 0; \ | |
2682 } | |
2683 | |
2684 DEFINE_FAST_GETFIELD(jboolean, bool, Boolean) | |
2685 DEFINE_FAST_GETFIELD(jbyte, byte, Byte) | |
2686 DEFINE_FAST_GETFIELD(jchar, char, Char) | |
2687 DEFINE_FAST_GETFIELD(jshort, short, Short) | |
2688 DEFINE_FAST_GETFIELD(jint, int, Int) | |
2689 DEFINE_FAST_GETFIELD(jlong, long, Long) | |
2690 DEFINE_FAST_GETFIELD(jfloat, float, Float) | |
2691 DEFINE_FAST_GETFIELD(jdouble, double, Double) | |
2692 | |
2693 address os::win32::fast_jni_accessor_wrapper(BasicType type) { | |
2694 switch (type) { | |
2695 case T_BOOLEAN: return (address)jni_fast_GetBooleanField_wrapper; | |
2696 case T_BYTE: return (address)jni_fast_GetByteField_wrapper; | |
2697 case T_CHAR: return (address)jni_fast_GetCharField_wrapper; | |
2698 case T_SHORT: return (address)jni_fast_GetShortField_wrapper; | |
2699 case T_INT: return (address)jni_fast_GetIntField_wrapper; | |
2700 case T_LONG: return (address)jni_fast_GetLongField_wrapper; | |
2701 case T_FLOAT: return (address)jni_fast_GetFloatField_wrapper; | |
2702 case T_DOUBLE: return (address)jni_fast_GetDoubleField_wrapper; | |
2703 default: ShouldNotReachHere(); | |
2704 } | |
2705 return (address)-1; | |
2706 } | |
2707 #endif | |
2708 | |
2709 // Virtual Memory | |
2710 | |
2711 int os::vm_page_size() { return os::win32::vm_page_size(); } | |
2712 int os::vm_allocation_granularity() { | |
2713 return os::win32::vm_allocation_granularity(); | |
2714 } | |
2715 | |
2716 // Windows large page support is available on Windows 2003. In order to use | |
2717 // large page memory, the administrator must first assign additional privilege | |
2718 // to the user: | |
2719 // + select Control Panel -> Administrative Tools -> Local Security Policy | |
2720 // + select Local Policies -> User Rights Assignment | |
2721 // + double click "Lock pages in memory", add users and/or groups | |
2722 // + reboot | |
2723 // Note the above steps are needed for administrator as well, as administrators | |
2724 // by default do not have the privilege to lock pages in memory. | |
2725 // | |
2726 // Note about Windows 2003: although the API supports committing large page | |
2727 // memory on a page-by-page basis and VirtualAlloc() returns success under this | |
2728 // scenario, I found through experiment it only uses large page if the entire | |
2729 // memory region is reserved and committed in a single VirtualAlloc() call. | |
2730 // This makes Windows large page support more or less like Solaris ISM, in | |
2731 // that the entire heap must be committed upfront. This probably will change | |
2732 // in the future, if so the code below needs to be revisited. | |
2733 | |
2734 #ifndef MEM_LARGE_PAGES | |
2735 #define MEM_LARGE_PAGES 0x20000000 | |
2736 #endif | |
2737 | |
2738 static HANDLE _hProcess; | |
2739 static HANDLE _hToken; | |
2740 | |
3885 | 2741 // Container for NUMA node list info |
2742 class NUMANodeListHolder { | |
2743 private: | |
2744 int *_numa_used_node_list; // allocated below | |
2745 int _numa_used_node_count; | |
2746 | |
2747 void free_node_list() { | |
2748 if (_numa_used_node_list != NULL) { | |
6197 | 2749 FREE_C_HEAP_ARRAY(int, _numa_used_node_list, mtInternal); |
3885 | 2750 } |
2751 } | |
2752 | |
2753 public: | |
2754 NUMANodeListHolder() { | |
2755 _numa_used_node_count = 0; | |
2756 _numa_used_node_list = NULL; | |
2757 // do rest of initialization in build routine (after function pointers are set up) | |
2758 } | |
2759 | |
2760 ~NUMANodeListHolder() { | |
2761 free_node_list(); | |
2762 } | |
2763 | |
2764 bool build() { | |
2765 DWORD_PTR proc_aff_mask; | |
2766 DWORD_PTR sys_aff_mask; | |
2767 if (!GetProcessAffinityMask(GetCurrentProcess(), &proc_aff_mask, &sys_aff_mask)) return false; | |
2768 ULONG highest_node_number; | |
2769 if (!os::Kernel32Dll::GetNumaHighestNodeNumber(&highest_node_number)) return false; | |
2770 free_node_list(); | |
6197 | 2771 _numa_used_node_list = NEW_C_HEAP_ARRAY(int, highest_node_number + 1, mtInternal); |
3885 | 2772 for (unsigned int i = 0; i <= highest_node_number; i++) { |
2773 ULONGLONG proc_mask_numa_node; | |
2774 if (!os::Kernel32Dll::GetNumaNodeProcessorMask(i, &proc_mask_numa_node)) return false; | |
2775 if ((proc_aff_mask & proc_mask_numa_node)!=0) { | |
2776 _numa_used_node_list[_numa_used_node_count++] = i; | |
2777 } | |
2778 } | |
2779 return (_numa_used_node_count > 1); | |
2780 } | |
2781 | |
2782 int get_count() {return _numa_used_node_count;} | |
2783 int get_node_list_entry(int n) { | |
2784 // for indexes out of range, returns -1 | |
2785 return (n < _numa_used_node_count ? _numa_used_node_list[n] : -1); | |
2786 } | |
2787 | |
2788 } numa_node_list_holder; | |
2789 | |
2790 | |
2791 | |
0 | 2792 static size_t _large_page_size = 0; |
2793 | |
2794 static bool resolve_functions_for_large_page_init() { | |
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2795 return os::Kernel32Dll::GetLargePageMinimumAvailable() && |
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2796 os::Advapi32Dll::AdvapiAvailable(); |
0 | 2797 } |
2798 | |
2799 static bool request_lock_memory_privilege() { | |
2800 _hProcess = OpenProcess(PROCESS_QUERY_INFORMATION, FALSE, | |
2801 os::current_process_id()); | |
2802 | |
2803 LUID luid; | |
2804 if (_hProcess != NULL && | |
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2805 os::Advapi32Dll::OpenProcessToken(_hProcess, TOKEN_ADJUST_PRIVILEGES, &_hToken) && |
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2806 os::Advapi32Dll::LookupPrivilegeValue(NULL, "SeLockMemoryPrivilege", &luid)) { |
0 | 2807 |
2808 TOKEN_PRIVILEGES tp; | |
2809 tp.PrivilegeCount = 1; | |
2810 tp.Privileges[0].Luid = luid; | |
2811 tp.Privileges[0].Attributes = SE_PRIVILEGE_ENABLED; | |
2812 | |
2813 // AdjustTokenPrivileges() may return TRUE even when it couldn't change the | |
2814 // privilege. Check GetLastError() too. See MSDN document. | |
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2815 if (os::Advapi32Dll::AdjustTokenPrivileges(_hToken, false, &tp, sizeof(tp), NULL, NULL) && |
0 | 2816 (GetLastError() == ERROR_SUCCESS)) { |
2817 return true; | |
2818 } | |
2819 } | |
2820 | |
2821 return false; | |
2822 } | |
2823 | |
2824 static void cleanup_after_large_page_init() { | |
2825 if (_hProcess) CloseHandle(_hProcess); | |
2826 _hProcess = NULL; | |
2827 if (_hToken) CloseHandle(_hToken); | |
2828 _hToken = NULL; | |
2829 } | |
2830 | |
3885 | 2831 static bool numa_interleaving_init() { |
2832 bool success = false; | |
2833 bool use_numa_interleaving_specified = !FLAG_IS_DEFAULT(UseNUMAInterleaving); | |
2834 | |
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2835 // print a warning if UseNUMAInterleaving flag is specified on command line |
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2836 bool warn_on_failure = use_numa_interleaving_specified; |
3885 | 2837 # define WARN(msg) if (warn_on_failure) { warning(msg); } |
2838 | |
2839 // NUMAInterleaveGranularity cannot be less than vm_allocation_granularity (or _large_page_size if using large pages) | |
2840 size_t min_interleave_granularity = UseLargePages ? _large_page_size : os::vm_allocation_granularity(); | |
2841 NUMAInterleaveGranularity = align_size_up(NUMAInterleaveGranularity, min_interleave_granularity); | |
2842 | |
2843 if (os::Kernel32Dll::NumaCallsAvailable()) { | |
2844 if (numa_node_list_holder.build()) { | |
2845 if (PrintMiscellaneous && Verbose) { | |
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2846 tty->print("NUMA UsedNodeCount=%d, namely ", numa_node_list_holder.get_count()); |
3885 | 2847 for (int i = 0; i < numa_node_list_holder.get_count(); i++) { |
2848 tty->print("%d ", numa_node_list_holder.get_node_list_entry(i)); | |
2849 } | |
2850 tty->print("\n"); | |
2851 } | |
2852 success = true; | |
2853 } else { | |
2854 WARN("Process does not cover multiple NUMA nodes."); | |
2855 } | |
2856 } else { | |
2857 WARN("NUMA Interleaving is not supported by the operating system."); | |
2858 } | |
2859 if (!success) { | |
2860 if (use_numa_interleaving_specified) WARN("...Ignoring UseNUMAInterleaving flag."); | |
2861 } | |
2862 return success; | |
2863 #undef WARN | |
2864 } | |
2865 | |
2866 // this routine is used whenever we need to reserve a contiguous VA range | |
2867 // but we need to make separate VirtualAlloc calls for each piece of the range | |
2868 // Reasons for doing this: | |
2869 // * UseLargePagesIndividualAllocation was set (normally only needed on WS2003 but possible to be set otherwise) | |
2870 // * UseNUMAInterleaving requires a separate node for each piece | |
2871 static char* allocate_pages_individually(size_t bytes, char* addr, DWORD flags, DWORD prot, | |
2872 bool should_inject_error=false) { | |
2873 char * p_buf; | |
2874 // note: at setup time we guaranteed that NUMAInterleaveGranularity was aligned up to a page size | |
2875 size_t page_size = UseLargePages ? _large_page_size : os::vm_allocation_granularity(); | |
2876 size_t chunk_size = UseNUMAInterleaving ? NUMAInterleaveGranularity : page_size; | |
2877 | |
2878 // first reserve enough address space in advance since we want to be | |
2879 // able to break a single contiguous virtual address range into multiple | |
2880 // large page commits but WS2003 does not allow reserving large page space | |
2881 // so we just use 4K pages for reserve, this gives us a legal contiguous | |
2882 // address space. then we will deallocate that reservation, and re alloc | |
2883 // using large pages | |
2884 const size_t size_of_reserve = bytes + chunk_size; | |
2885 if (bytes > size_of_reserve) { | |
2886 // Overflowed. | |
2887 return NULL; | |
2888 } | |
2889 p_buf = (char *) VirtualAlloc(addr, | |
2890 size_of_reserve, // size of Reserve | |
2891 MEM_RESERVE, | |
2892 PAGE_READWRITE); | |
2893 // If reservation failed, return NULL | |
2894 if (p_buf == NULL) return NULL; | |
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2895 MemTracker::record_virtual_memory_reserve((address)p_buf, size_of_reserve, CALLER_PC); |
3885 | 2896 os::release_memory(p_buf, bytes + chunk_size); |
2897 | |
2898 // we still need to round up to a page boundary (in case we are using large pages) | |
2899 // but not to a chunk boundary (in case InterleavingGranularity doesn't align with page size) | |
2900 // instead we handle this in the bytes_to_rq computation below | |
2901 p_buf = (char *) align_size_up((size_t)p_buf, page_size); | |
2902 | |
2903 // now go through and allocate one chunk at a time until all bytes are | |
2904 // allocated | |
2905 size_t bytes_remaining = bytes; | |
2906 // An overflow of align_size_up() would have been caught above | |
2907 // in the calculation of size_of_reserve. | |
2908 char * next_alloc_addr = p_buf; | |
2909 HANDLE hProc = GetCurrentProcess(); | |
2910 | |
2911 #ifdef ASSERT | |
2912 // Variable for the failure injection | |
2913 long ran_num = os::random(); | |
2914 size_t fail_after = ran_num % bytes; | |
2915 #endif | |
2916 | |
2917 int count=0; | |
2918 while (bytes_remaining) { | |
2919 // select bytes_to_rq to get to the next chunk_size boundary | |
2920 | |
2921 size_t bytes_to_rq = MIN2(bytes_remaining, chunk_size - ((size_t)next_alloc_addr % chunk_size)); | |
2922 // Note allocate and commit | |
2923 char * p_new; | |
2924 | |
2925 #ifdef ASSERT | |
2926 bool inject_error_now = should_inject_error && (bytes_remaining <= fail_after); | |
2927 #else | |
2928 const bool inject_error_now = false; | |
2929 #endif | |
2930 | |
2931 if (inject_error_now) { | |
2932 p_new = NULL; | |
2933 } else { | |
2934 if (!UseNUMAInterleaving) { | |
2935 p_new = (char *) VirtualAlloc(next_alloc_addr, | |
2936 bytes_to_rq, | |
2937 flags, | |
2938 prot); | |
2939 } else { | |
2940 // get the next node to use from the used_node_list | |
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2941 assert(numa_node_list_holder.get_count() > 0, "Multiple NUMA nodes expected"); |
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2942 DWORD node = numa_node_list_holder.get_node_list_entry(count % numa_node_list_holder.get_count()); |
3885 | 2943 p_new = (char *)os::Kernel32Dll::VirtualAllocExNuma(hProc, |
2944 next_alloc_addr, | |
2945 bytes_to_rq, | |
2946 flags, | |
2947 prot, | |
2948 node); | |
2949 } | |
2950 } | |
2951 | |
2952 if (p_new == NULL) { | |
2953 // Free any allocated pages | |
2954 if (next_alloc_addr > p_buf) { | |
2955 // Some memory was committed so release it. | |
2956 size_t bytes_to_release = bytes - bytes_remaining; | |
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2957 // NMT has yet to record any individual blocks, so it |
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2958 // need to create a dummy 'reserve' record to match |
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2959 // the release. |
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2960 MemTracker::record_virtual_memory_reserve((address)p_buf, |
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2961 bytes_to_release, CALLER_PC); |
3885 | 2962 os::release_memory(p_buf, bytes_to_release); |
2963 } | |
2964 #ifdef ASSERT | |
2965 if (should_inject_error) { | |
2966 if (TracePageSizes && Verbose) { | |
2967 tty->print_cr("Reserving pages individually failed."); | |
2968 } | |
2969 } | |
2970 #endif | |
2971 return NULL; | |
2972 } | |
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2973 |
3885 | 2974 bytes_remaining -= bytes_to_rq; |
2975 next_alloc_addr += bytes_to_rq; | |
2976 count++; | |
2977 } | |
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2978 // Although the memory is allocated individually, it is returned as one. |
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2979 // NMT records it as one block. |
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2980 address pc = CALLER_PC; |
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2981 MemTracker::record_virtual_memory_reserve((address)p_buf, bytes, pc); |
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2982 if ((flags & MEM_COMMIT) != 0) { |
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2983 MemTracker::record_virtual_memory_commit((address)p_buf, bytes, pc); |
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2984 } |
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2985 |
3885 | 2986 // made it this far, success |
2987 return p_buf; | |
2988 } | |
2989 | |
2990 | |
2991 | |
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2992 void os::large_page_init() { |
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2993 if (!UseLargePages) return; |
0 | 2994 |
2995 // print a warning if any large page related flag is specified on command line | |
2996 bool warn_on_failure = !FLAG_IS_DEFAULT(UseLargePages) || | |
2997 !FLAG_IS_DEFAULT(LargePageSizeInBytes); | |
2998 bool success = false; | |
2999 | |
3000 # define WARN(msg) if (warn_on_failure) { warning(msg); } | |
3001 if (resolve_functions_for_large_page_init()) { | |
3002 if (request_lock_memory_privilege()) { | |
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3003 size_t s = os::Kernel32Dll::GetLargePageMinimum(); |
0 | 3004 if (s) { |
3005 #if defined(IA32) || defined(AMD64) | |
3006 if (s > 4*M || LargePageSizeInBytes > 4*M) { | |
3007 WARN("JVM cannot use large pages bigger than 4mb."); | |
3008 } else { | |
3009 #endif | |
3010 if (LargePageSizeInBytes && LargePageSizeInBytes % s == 0) { | |
3011 _large_page_size = LargePageSizeInBytes; | |
3012 } else { | |
3013 _large_page_size = s; | |
3014 } | |
3015 success = true; | |
3016 #if defined(IA32) || defined(AMD64) | |
3017 } | |
3018 #endif | |
3019 } else { | |
3020 WARN("Large page is not supported by the processor."); | |
3021 } | |
3022 } else { | |
3023 WARN("JVM cannot use large page memory because it does not have enough privilege to lock pages in memory."); | |
3024 } | |
3025 } else { | |
3026 WARN("Large page is not supported by the operating system."); | |
3027 } | |
3028 #undef WARN | |
3029 | |
3030 const size_t default_page_size = (size_t) vm_page_size(); | |
3031 if (success && _large_page_size > default_page_size) { | |
3032 _page_sizes[0] = _large_page_size; | |
3033 _page_sizes[1] = default_page_size; | |
3034 _page_sizes[2] = 0; | |
3035 } | |
3036 | |
3037 cleanup_after_large_page_init(); | |
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3038 UseLargePages = success; |
0 | 3039 } |
3040 | |
3041 // On win32, one cannot release just a part of reserved memory, it's an | |
3042 // all or nothing deal. When we split a reservation, we must break the | |
3043 // reservation into two reservations. | |
6197 | 3044 void os::pd_split_reserved_memory(char *base, size_t size, size_t split, |
0 | 3045 bool realloc) { |
3046 if (size > 0) { | |
3047 release_memory(base, size); | |
3048 if (realloc) { | |
3049 reserve_memory(split, base); | |
3050 } | |
3051 if (size != split) { | |
3052 reserve_memory(size - split, base + split); | |
3053 } | |
3054 } | |
3055 } | |
3056 | |
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3057 // Multiple threads can race in this code but it's not possible to unmap small sections of |
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3058 // virtual space to get requested alignment, like posix-like os's. |
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3059 // Windows prevents multiple thread from remapping over each other so this loop is thread-safe. |
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3060 char* os::reserve_memory_aligned(size_t size, size_t alignment) { |
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3061 assert((alignment & (os::vm_allocation_granularity() - 1)) == 0, |
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3062 "Alignment must be a multiple of allocation granularity (page size)"); |
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3063 assert((size & (alignment -1)) == 0, "size must be 'alignment' aligned"); |
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3064 |
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3065 size_t extra_size = size + alignment; |
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3066 assert(extra_size >= size, "overflow, size is too large to allow alignment"); |
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3067 |
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3068 char* aligned_base = NULL; |
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3069 |
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3070 do { |
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3071 char* extra_base = os::reserve_memory(extra_size, NULL, alignment); |
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3072 if (extra_base == NULL) { |
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3073 return NULL; |
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3074 } |
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3075 // Do manual alignment |
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3076 aligned_base = (char*) align_size_up((uintptr_t) extra_base, alignment); |
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3077 |
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3078 os::release_memory(extra_base, extra_size); |
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3079 |
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3080 aligned_base = os::reserve_memory(size, aligned_base); |
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3081 |
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3082 } while (aligned_base == NULL); |
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3083 |
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3084 return aligned_base; |
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3085 } |
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3086 |
6197 | 3087 char* os::pd_reserve_memory(size_t bytes, char* addr, size_t alignment_hint) { |
0 | 3088 assert((size_t)addr % os::vm_allocation_granularity() == 0, |
3089 "reserve alignment"); | |
3090 assert(bytes % os::vm_allocation_granularity() == 0, "reserve block size"); | |
3885 | 3091 char* res; |
3092 // note that if UseLargePages is on, all the areas that require interleaving | |
3093 // will go thru reserve_memory_special rather than thru here. | |
3094 bool use_individual = (UseNUMAInterleaving && !UseLargePages); | |
3095 if (!use_individual) { | |
3096 res = (char*)VirtualAlloc(addr, bytes, MEM_RESERVE, PAGE_READWRITE); | |
3097 } else { | |
3098 elapsedTimer reserveTimer; | |
3099 if( Verbose && PrintMiscellaneous ) reserveTimer.start(); | |
3100 // in numa interleaving, we have to allocate pages individually | |
3101 // (well really chunks of NUMAInterleaveGranularity size) | |
3102 res = allocate_pages_individually(bytes, addr, MEM_RESERVE, PAGE_READWRITE); | |
3103 if (res == NULL) { | |
3104 warning("NUMA page allocation failed"); | |
3105 } | |
3106 if( Verbose && PrintMiscellaneous ) { | |
3107 reserveTimer.stop(); | |
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3108 tty->print_cr("reserve_memory of %Ix bytes took " JLONG_FORMAT " ms (" JLONG_FORMAT " ticks)", bytes, |
3885 | 3109 reserveTimer.milliseconds(), reserveTimer.ticks()); |
3110 } | |
3111 } | |
0 | 3112 assert(res == NULL || addr == NULL || addr == res, |
3113 "Unexpected address from reserve."); | |
3885 | 3114 |
0 | 3115 return res; |
3116 } | |
3117 | |
3118 // Reserve memory at an arbitrary address, only if that area is | |
3119 // available (and not reserved for something else). | |
6197 | 3120 char* os::pd_attempt_reserve_memory_at(size_t bytes, char* requested_addr) { |
0 | 3121 // Windows os::reserve_memory() fails of the requested address range is |
3122 // not avilable. | |
3123 return reserve_memory(bytes, requested_addr); | |
3124 } | |
3125 | |
3126 size_t os::large_page_size() { | |
3127 return _large_page_size; | |
3128 } | |
3129 | |
3130 bool os::can_commit_large_page_memory() { | |
3131 // Windows only uses large page memory when the entire region is reserved | |
3132 // and committed in a single VirtualAlloc() call. This may change in the | |
3133 // future, but with Windows 2003 it's not possible to commit on demand. | |
3134 return false; | |
3135 } | |
3136 | |
79
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3137 bool os::can_execute_large_page_memory() { |
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|
3138 return true; |
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|
3139 } |
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|
3140 |
656 | 3141 char* os::reserve_memory_special(size_t bytes, char* addr, bool exec) { |
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3142 |
717 | 3143 const DWORD prot = exec ? PAGE_EXECUTE_READWRITE : PAGE_READWRITE; |
3885 | 3144 const DWORD flags = MEM_RESERVE | MEM_COMMIT | MEM_LARGE_PAGES; |
3145 | |
3146 // with large pages, there are two cases where we need to use Individual Allocation | |
3147 // 1) the UseLargePagesIndividualAllocation flag is set (set by default on WS2003) | |
3148 // 2) NUMA Interleaving is enabled, in which case we use a different node for each page | |
3149 if (UseLargePagesIndividualAllocation || UseNUMAInterleaving) { | |
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3150 if (TracePageSizes && Verbose) { |
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3151 tty->print_cr("Reserving large pages individually."); |
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3152 } |
3885 | 3153 char * p_buf = allocate_pages_individually(bytes, addr, flags, prot, LargePagesIndividualAllocationInjectError); |
3154 if (p_buf == NULL) { | |
3155 // give an appropriate warning message | |
3156 if (UseNUMAInterleaving) { | |
3157 warning("NUMA large page allocation failed, UseLargePages flag ignored"); | |
3158 } | |
3159 if (UseLargePagesIndividualAllocation) { | |
3160 warning("Individually allocated large pages failed, " | |
3161 "use -XX:-UseLargePagesIndividualAllocation to turn off"); | |
3162 } | |
389
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3163 return NULL; |
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|
3164 } |
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|
3165 |
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3166 return p_buf; |
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|
3167 |
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|
3168 } else { |
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3169 // normal policy just allocate it all at once |
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3170 DWORD flag = MEM_RESERVE | MEM_COMMIT | MEM_LARGE_PAGES; |
717 | 3171 char * res = (char *)VirtualAlloc(NULL, bytes, flag, prot); |
8711
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3172 if (res != NULL) { |
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3173 address pc = CALLER_PC; |
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3174 MemTracker::record_virtual_memory_reserve((address)res, bytes, pc); |
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3175 MemTracker::record_virtual_memory_commit((address)res, bytes, pc); |
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3176 } |
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3177 |
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3178 return res; |
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3179 } |
0 | 3180 } |
3181 | |
3182 bool os::release_memory_special(char* base, size_t bytes) { | |
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3183 assert(base != NULL, "Sanity check"); |
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3184 // Memory allocated via reserve_memory_special() is committed |
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3185 MemTracker::record_virtual_memory_uncommit((address)base, bytes); |
0 | 3186 return release_memory(base, bytes); |
3187 } | |
3188 | |
3189 void os::print_statistics() { | |
3190 } | |
3191 | |
6197 | 3192 bool os::pd_commit_memory(char* addr, size_t bytes, bool exec) { |
0 | 3193 if (bytes == 0) { |
3194 // Don't bother the OS with noops. | |
3195 return true; | |
3196 } | |
3197 assert((size_t) addr % os::vm_page_size() == 0, "commit on page boundaries"); | |
3198 assert(bytes % os::vm_page_size() == 0, "commit in page-sized chunks"); | |
3199 // Don't attempt to print anything if the OS call fails. We're | |
3200 // probably low on resources, so the print itself may cause crashes. | |
3885 | 3201 |
3202 // unless we have NUMAInterleaving enabled, the range of a commit | |
3203 // is always within a reserve covered by a single VirtualAlloc | |
3204 // in that case we can just do a single commit for the requested size | |
3205 if (!UseNUMAInterleaving) { | |
3206 if (VirtualAlloc(addr, bytes, MEM_COMMIT, PAGE_READWRITE) == NULL) return false; | |
3207 if (exec) { | |
3208 DWORD oldprot; | |
3209 // Windows doc says to use VirtualProtect to get execute permissions | |
3210 if (!VirtualProtect(addr, bytes, PAGE_EXECUTE_READWRITE, &oldprot)) return false; | |
3211 } | |
3212 return true; | |
656 | 3213 } else { |
3885 | 3214 |
3215 // when NUMAInterleaving is enabled, the commit might cover a range that | |
3216 // came from multiple VirtualAlloc reserves (using allocate_pages_individually). | |
3217 // VirtualQuery can help us determine that. The RegionSize that VirtualQuery | |
3218 // returns represents the number of bytes that can be committed in one step. | |
3219 size_t bytes_remaining = bytes; | |
3220 char * next_alloc_addr = addr; | |
3221 while (bytes_remaining > 0) { | |
3222 MEMORY_BASIC_INFORMATION alloc_info; | |
3223 VirtualQuery(next_alloc_addr, &alloc_info, sizeof(alloc_info)); | |
3224 size_t bytes_to_rq = MIN2(bytes_remaining, (size_t)alloc_info.RegionSize); | |
3225 if (VirtualAlloc(next_alloc_addr, bytes_to_rq, MEM_COMMIT, PAGE_READWRITE) == NULL) | |
3226 return false; | |
3227 if (exec) { | |
3228 DWORD oldprot; | |
3229 if (!VirtualProtect(next_alloc_addr, bytes_to_rq, PAGE_EXECUTE_READWRITE, &oldprot)) | |
3230 return false; | |
3231 } | |
3232 bytes_remaining -= bytes_to_rq; | |
3233 next_alloc_addr += bytes_to_rq; | |
3234 } | |
3235 } | |
3236 // if we made it this far, return true | |
3237 return true; | |
0 | 3238 } |
3239 | |
6197 | 3240 bool os::pd_commit_memory(char* addr, size_t size, size_t alignment_hint, |
656 | 3241 bool exec) { |
3242 return commit_memory(addr, size, exec); | |
0 | 3243 } |
3244 | |
6197 | 3245 bool os::pd_uncommit_memory(char* addr, size_t bytes) { |
0 | 3246 if (bytes == 0) { |
3247 // Don't bother the OS with noops. | |
3248 return true; | |
3249 } | |
3250 assert((size_t) addr % os::vm_page_size() == 0, "uncommit on page boundaries"); | |
3251 assert(bytes % os::vm_page_size() == 0, "uncommit in page-sized chunks"); | |
6197 | 3252 return (VirtualFree(addr, bytes, MEM_DECOMMIT) != 0); |
3253 } | |
3254 | |
3255 bool os::pd_release_memory(char* addr, size_t bytes) { | |
0 | 3256 return VirtualFree(addr, 0, MEM_RELEASE) != 0; |
3257 } | |
3258 | |
6197 | 3259 bool os::pd_create_stack_guard_pages(char* addr, size_t size) { |
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3260 return os::commit_memory(addr, size); |
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|
3261 } |
3b3d12e645e7
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|
3262 |
3b3d12e645e7
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3263 bool os::remove_stack_guard_pages(char* addr, size_t size) { |
3b3d12e645e7
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3264 return os::uncommit_memory(addr, size); |
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6929067: Stack guard pages should be removed when thread is detached
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|
3265 } |
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3266 |
237
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3267 // Set protections specified |
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3268 bool os::protect_memory(char* addr, size_t bytes, ProtType prot, |
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3269 bool is_committed) { |
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|
3270 unsigned int p = 0; |
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3271 switch (prot) { |
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3272 case MEM_PROT_NONE: p = PAGE_NOACCESS; break; |
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3273 case MEM_PROT_READ: p = PAGE_READONLY; break; |
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3274 case MEM_PROT_RW: p = PAGE_READWRITE; break; |
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3275 case MEM_PROT_RWX: p = PAGE_EXECUTE_READWRITE; break; |
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3276 default: |
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|
3277 ShouldNotReachHere(); |
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|
3278 } |
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3279 |
0 | 3280 DWORD old_status; |
237
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3281 |
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3282 // Strange enough, but on Win32 one can change protection only for committed |
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3283 // memory, not a big deal anyway, as bytes less or equal than 64K |
656 | 3284 if (!is_committed && !commit_memory(addr, bytes, prot == MEM_PROT_RWX)) { |
237
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3285 fatal("cannot commit protection page"); |
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|
3286 } |
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3287 // One cannot use os::guard_memory() here, as on Win32 guard page |
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3288 // have different (one-shot) semantics, from MSDN on PAGE_GUARD: |
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3289 // |
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3290 // Pages in the region become guard pages. Any attempt to access a guard page |
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3291 // causes the system to raise a STATUS_GUARD_PAGE exception and turn off |
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3292 // the guard page status. Guard pages thus act as a one-time access alarm. |
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3293 return VirtualProtect(addr, bytes, p, &old_status) != 0; |
0 | 3294 } |
3295 | |
3296 bool os::guard_memory(char* addr, size_t bytes) { | |
3297 DWORD old_status; | |
477
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3298 return VirtualProtect(addr, bytes, PAGE_READWRITE | PAGE_GUARD, &old_status) != 0; |
0 | 3299 } |
3300 | |
3301 bool os::unguard_memory(char* addr, size_t bytes) { | |
3302 DWORD old_status; | |
477
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3303 return VirtualProtect(addr, bytes, PAGE_READWRITE, &old_status) != 0; |
0 | 3304 } |
3305 | |
6197 | 3306 void os::pd_realign_memory(char *addr, size_t bytes, size_t alignment_hint) { } |
3307 void os::pd_free_memory(char *addr, size_t bytes, size_t alignment_hint) { } | |
0 | 3308 void os::numa_make_global(char *addr, size_t bytes) { } |
141 | 3309 void os::numa_make_local(char *addr, size_t bytes, int lgrp_hint) { } |
0 | 3310 bool os::numa_topology_changed() { return false; } |
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3311 size_t os::numa_get_groups_num() { return MAX2(numa_node_list_holder.get_count(), 1); } |
0 | 3312 int os::numa_get_group_id() { return 0; } |
3313 size_t os::numa_get_leaf_groups(int *ids, size_t size) { | |
3918
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3314 if (numa_node_list_holder.get_count() == 0 && size > 0) { |
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|
3315 // Provide an answer for UMA systems |
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|
3316 ids[0] = 0; |
a6128a8ed624
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|
3317 return 1; |
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|
3318 } else { |
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|
3319 // check for size bigger than actual groups_num |
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|
3320 size = MIN2(size, numa_get_groups_num()); |
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3321 for (int i = 0; i < (int)size; i++) { |
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3322 ids[i] = numa_node_list_holder.get_node_list_entry(i); |
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|
3323 } |
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|
3324 return size; |
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|
3325 } |
0 | 3326 } |
3327 | |
3328 bool os::get_page_info(char *start, page_info* info) { | |
3329 return false; | |
3330 } | |
3331 | |
3332 char *os::scan_pages(char *start, char* end, page_info* page_expected, page_info* page_found) { | |
3333 return end; | |
3334 } | |
3335 | |
3336 char* os::non_memory_address_word() { | |
3337 // Must never look like an address returned by reserve_memory, | |
3338 // even in its subfields (as defined by the CPU immediate fields, | |
3339 // if the CPU splits constants across multiple instructions). | |
3340 return (char*)-1; | |
3341 } | |
3342 | |
3343 #define MAX_ERROR_COUNT 100 | |
3344 #define SYS_THREAD_ERROR 0xffffffffUL | |
3345 | |
3346 void os::pd_start_thread(Thread* thread) { | |
3347 DWORD ret = ResumeThread(thread->osthread()->thread_handle()); | |
3348 // Returns previous suspend state: | |
3349 // 0: Thread was not suspended | |
3350 // 1: Thread is running now | |
3351 // >1: Thread is still suspended. | |
3352 assert(ret != SYS_THREAD_ERROR, "StartThread failed"); // should propagate back | |
3353 } | |
3354 | |
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3355 class HighResolutionInterval : public CHeapObj<mtThread> { |
0 | 3356 // The default timer resolution seems to be 10 milliseconds. |
3357 // (Where is this written down?) | |
3358 // If someone wants to sleep for only a fraction of the default, | |
3359 // then we set the timer resolution down to 1 millisecond for | |
3360 // the duration of their interval. | |
3361 // We carefully set the resolution back, since otherwise we | |
3362 // seem to incur an overhead (3%?) that we don't need. | |
3363 // CONSIDER: if ms is small, say 3, then we should run with a high resolution time. | |
3364 // Buf if ms is large, say 500, or 503, we should avoid the call to timeBeginPeriod(). | |
3365 // Alternatively, we could compute the relative error (503/500 = .6%) and only use | |
3366 // timeBeginPeriod() if the relative error exceeded some threshold. | |
3367 // timeBeginPeriod() has been linked to problems with clock drift on win32 systems and | |
3368 // to decreased efficiency related to increased timer "tick" rates. We want to minimize | |
3369 // (a) calls to timeBeginPeriod() and timeEndPeriod() and (b) time spent with high | |
3370 // resolution timers running. | |
3371 private: | |
3372 jlong resolution; | |
3373 public: | |
3374 HighResolutionInterval(jlong ms) { | |
3375 resolution = ms % 10L; | |
3376 if (resolution != 0) { | |
3377 MMRESULT result = timeBeginPeriod(1L); | |
3378 } | |
3379 } | |
3380 ~HighResolutionInterval() { | |
3381 if (resolution != 0) { | |
3382 MMRESULT result = timeEndPeriod(1L); | |
3383 } | |
3384 resolution = 0L; | |
3385 } | |
3386 }; | |
3387 | |
3388 int os::sleep(Thread* thread, jlong ms, bool interruptable) { | |
3389 jlong limit = (jlong) MAXDWORD; | |
3390 | |
3391 while(ms > limit) { | |
3392 int res; | |
3393 if ((res = sleep(thread, limit, interruptable)) != OS_TIMEOUT) | |
3394 return res; | |
3395 ms -= limit; | |
3396 } | |
3397 | |
3398 assert(thread == Thread::current(), "thread consistency check"); | |
3399 OSThread* osthread = thread->osthread(); | |
3400 OSThreadWaitState osts(osthread, false /* not Object.wait() */); | |
3401 int result; | |
3402 if (interruptable) { | |
3403 assert(thread->is_Java_thread(), "must be java thread"); | |
3404 JavaThread *jt = (JavaThread *) thread; | |
3405 ThreadBlockInVM tbivm(jt); | |
3406 | |
3407 jt->set_suspend_equivalent(); | |
3408 // cleared by handle_special_suspend_equivalent_condition() or | |
3409 // java_suspend_self() via check_and_wait_while_suspended() | |
3410 | |
3411 HANDLE events[1]; | |
3412 events[0] = osthread->interrupt_event(); | |
3413 HighResolutionInterval *phri=NULL; | |
3414 if(!ForceTimeHighResolution) | |
3415 phri = new HighResolutionInterval( ms ); | |
3416 if (WaitForMultipleObjects(1, events, FALSE, (DWORD)ms) == WAIT_TIMEOUT) { | |
3417 result = OS_TIMEOUT; | |
3418 } else { | |
3419 ResetEvent(osthread->interrupt_event()); | |
3420 osthread->set_interrupted(false); | |
3421 result = OS_INTRPT; | |
3422 } | |
3423 delete phri; //if it is NULL, harmless | |
3424 | |
3425 // were we externally suspended while we were waiting? | |
3426 jt->check_and_wait_while_suspended(); | |
3427 } else { | |
3428 assert(!thread->is_Java_thread(), "must not be java thread"); | |
3429 Sleep((long) ms); | |
3430 result = OS_TIMEOUT; | |
3431 } | |
3432 return result; | |
3433 } | |
3434 | |
3435 // Sleep forever; naked call to OS-specific sleep; use with CAUTION | |
3436 void os::infinite_sleep() { | |
3437 while (true) { // sleep forever ... | |
3438 Sleep(100000); // ... 100 seconds at a time | |
3439 } | |
3440 } | |
3441 | |
3442 typedef BOOL (WINAPI * STTSignature)(void) ; | |
3443 | |
3444 os::YieldResult os::NakedYield() { | |
3445 // Use either SwitchToThread() or Sleep(0) | |
3446 // Consider passing back the return value from SwitchToThread(). | |
3833
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3447 if (os::Kernel32Dll::SwitchToThreadAvailable()) { |
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3448 return SwitchToThread() ? os::YIELD_SWITCHED : os::YIELD_NONEREADY ; |
0 | 3449 } else { |
3833
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3450 Sleep(0); |
0 | 3451 } |
3452 return os::YIELD_UNKNOWN ; | |
3453 } | |
3454 | |
3455 void os::yield() { os::NakedYield(); } | |
3456 | |
3457 void os::yield_all(int attempts) { | |
3458 // Yields to all threads, including threads with lower priorities | |
3459 Sleep(1); | |
3460 } | |
3461 | |
3462 // Win32 only gives you access to seven real priorities at a time, | |
3463 // so we compress Java's ten down to seven. It would be better | |
3464 // if we dynamically adjusted relative priorities. | |
3465 | |
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3466 int os::java_to_os_priority[CriticalPriority + 1] = { |
0 | 3467 THREAD_PRIORITY_IDLE, // 0 Entry should never be used |
3468 THREAD_PRIORITY_LOWEST, // 1 MinPriority | |
3469 THREAD_PRIORITY_LOWEST, // 2 | |
3470 THREAD_PRIORITY_BELOW_NORMAL, // 3 | |
3471 THREAD_PRIORITY_BELOW_NORMAL, // 4 | |
3472 THREAD_PRIORITY_NORMAL, // 5 NormPriority | |
3473 THREAD_PRIORITY_NORMAL, // 6 | |
3474 THREAD_PRIORITY_ABOVE_NORMAL, // 7 | |
3475 THREAD_PRIORITY_ABOVE_NORMAL, // 8 | |
3476 THREAD_PRIORITY_HIGHEST, // 9 NearMaxPriority | |
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3477 THREAD_PRIORITY_HIGHEST, // 10 MaxPriority |
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3478 THREAD_PRIORITY_HIGHEST // 11 CriticalPriority |
0 | 3479 }; |
3480 | |
4854
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3481 int prio_policy1[CriticalPriority + 1] = { |
0 | 3482 THREAD_PRIORITY_IDLE, // 0 Entry should never be used |
3483 THREAD_PRIORITY_LOWEST, // 1 MinPriority | |
3484 THREAD_PRIORITY_LOWEST, // 2 | |
3485 THREAD_PRIORITY_BELOW_NORMAL, // 3 | |
3486 THREAD_PRIORITY_BELOW_NORMAL, // 4 | |
3487 THREAD_PRIORITY_NORMAL, // 5 NormPriority | |
3488 THREAD_PRIORITY_ABOVE_NORMAL, // 6 | |
3489 THREAD_PRIORITY_ABOVE_NORMAL, // 7 | |
3490 THREAD_PRIORITY_HIGHEST, // 8 | |
3491 THREAD_PRIORITY_HIGHEST, // 9 NearMaxPriority | |
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3492 THREAD_PRIORITY_TIME_CRITICAL, // 10 MaxPriority |
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3493 THREAD_PRIORITY_TIME_CRITICAL // 11 CriticalPriority |
0 | 3494 }; |
3495 | |
3496 static int prio_init() { | |
3497 // If ThreadPriorityPolicy is 1, switch tables | |
3498 if (ThreadPriorityPolicy == 1) { | |
3499 int i; | |
4854
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3500 for (i = 0; i < CriticalPriority + 1; i++) { |
0 | 3501 os::java_to_os_priority[i] = prio_policy1[i]; |
3502 } | |
3503 } | |
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3504 if (UseCriticalJavaThreadPriority) { |
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3505 os::java_to_os_priority[MaxPriority] = os::java_to_os_priority[CriticalPriority] ; |
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3506 } |
0 | 3507 return 0; |
3508 } | |
3509 | |
3510 OSReturn os::set_native_priority(Thread* thread, int priority) { | |
3511 if (!UseThreadPriorities) return OS_OK; | |
3512 bool ret = SetThreadPriority(thread->osthread()->thread_handle(), priority) != 0; | |
3513 return ret ? OS_OK : OS_ERR; | |
3514 } | |
3515 | |
3516 OSReturn os::get_native_priority(const Thread* const thread, int* priority_ptr) { | |
3517 if ( !UseThreadPriorities ) { | |
3518 *priority_ptr = java_to_os_priority[NormPriority]; | |
3519 return OS_OK; | |
3520 } | |
3521 int os_prio = GetThreadPriority(thread->osthread()->thread_handle()); | |
3522 if (os_prio == THREAD_PRIORITY_ERROR_RETURN) { | |
3523 assert(false, "GetThreadPriority failed"); | |
3524 return OS_ERR; | |
3525 } | |
3526 *priority_ptr = os_prio; | |
3527 return OS_OK; | |
3528 } | |
3529 | |
3530 | |
3531 // Hint to the underlying OS that a task switch would not be good. | |
3532 // Void return because it's a hint and can fail. | |
3533 void os::hint_no_preempt() {} | |
3534 | |
3535 void os::interrupt(Thread* thread) { | |
3536 assert(!thread->is_Java_thread() || Thread::current() == thread || Threads_lock->owned_by_self(), | |
3537 "possibility of dangling Thread pointer"); | |
3538 | |
3539 OSThread* osthread = thread->osthread(); | |
3540 osthread->set_interrupted(true); | |
3541 // More than one thread can get here with the same value of osthread, | |
3542 // resulting in multiple notifications. We do, however, want the store | |
3543 // to interrupted() to be visible to other threads before we post | |
3544 // the interrupt event. | |
3545 OrderAccess::release(); | |
3546 SetEvent(osthread->interrupt_event()); | |
3547 // For JSR166: unpark after setting status | |
3548 if (thread->is_Java_thread()) | |
3549 ((JavaThread*)thread)->parker()->unpark(); | |
3550 | |
3551 ParkEvent * ev = thread->_ParkEvent ; | |
3552 if (ev != NULL) ev->unpark() ; | |
3553 | |
3554 } | |
3555 | |
3556 | |
3557 bool os::is_interrupted(Thread* thread, bool clear_interrupted) { | |
3558 assert(!thread->is_Java_thread() || Thread::current() == thread || Threads_lock->owned_by_self(), | |
3559 "possibility of dangling Thread pointer"); | |
3560 | |
3561 OSThread* osthread = thread->osthread(); | |
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3562 bool interrupted = osthread->interrupted(); |
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3563 // There is no synchronization between the setting of the interrupt |
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3564 // and it being cleared here. It is critical - see 6535709 - that |
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3565 // we only clear the interrupt state, and reset the interrupt event, |
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3566 // if we are going to report that we were indeed interrupted - else |
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3567 // an interrupt can be "lost", leading to spurious wakeups or lost wakeups |
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3568 // depending on the timing |
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3569 if (interrupted && clear_interrupted) { |
0 | 3570 osthread->set_interrupted(false); |
3571 ResetEvent(osthread->interrupt_event()); | |
3572 } // Otherwise leave the interrupted state alone | |
3573 | |
3574 return interrupted; | |
3575 } | |
3576 | |
3577 // Get's a pc (hint) for a running thread. Currently used only for profiling. | |
3578 ExtendedPC os::get_thread_pc(Thread* thread) { | |
3579 CONTEXT context; | |
3580 context.ContextFlags = CONTEXT_CONTROL; | |
3581 HANDLE handle = thread->osthread()->thread_handle(); | |
3582 #ifdef _M_IA64 | |
3583 assert(0, "Fix get_thread_pc"); | |
3584 return ExtendedPC(NULL); | |
3585 #else | |
3586 if (GetThreadContext(handle, &context)) { | |
3587 #ifdef _M_AMD64 | |
3588 return ExtendedPC((address) context.Rip); | |
3589 #else | |
3590 return ExtendedPC((address) context.Eip); | |
3591 #endif | |
3592 } else { | |
3593 return ExtendedPC(NULL); | |
3594 } | |
3595 #endif | |
3596 } | |
3597 | |
3598 // GetCurrentThreadId() returns DWORD | |
3599 intx os::current_thread_id() { return GetCurrentThreadId(); } | |
3600 | |
3601 static int _initial_pid = 0; | |
3602 | |
3603 int os::current_process_id() | |
3604 { | |
3605 return (_initial_pid ? _initial_pid : _getpid()); | |
3606 } | |
3607 | |
3608 int os::win32::_vm_page_size = 0; | |
3609 int os::win32::_vm_allocation_granularity = 0; | |
3610 int os::win32::_processor_type = 0; | |
3611 // Processor level is not available on non-NT systems, use vm_version instead | |
3612 int os::win32::_processor_level = 0; | |
3613 julong os::win32::_physical_memory = 0; | |
3614 size_t os::win32::_default_stack_size = 0; | |
3615 | |
3616 intx os::win32::_os_thread_limit = 0; | |
3617 volatile intx os::win32::_os_thread_count = 0; | |
3618 | |
3619 bool os::win32::_is_nt = false; | |
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3620 bool os::win32::_is_windows_2003 = false; |
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3621 bool os::win32::_is_windows_server = false; |
0 | 3622 |
3623 void os::win32::initialize_system_info() { | |
3624 SYSTEM_INFO si; | |
3625 GetSystemInfo(&si); | |
3626 _vm_page_size = si.dwPageSize; | |
3627 _vm_allocation_granularity = si.dwAllocationGranularity; | |
3628 _processor_type = si.dwProcessorType; | |
3629 _processor_level = si.wProcessorLevel; | |
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3630 set_processor_count(si.dwNumberOfProcessors); |
0 | 3631 |
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3632 MEMORYSTATUSEX ms; |
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3633 ms.dwLength = sizeof(ms); |
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3634 |
0 | 3635 // also returns dwAvailPhys (free physical memory bytes), dwTotalVirtual, dwAvailVirtual, |
3636 // dwMemoryLoad (% of memory in use) | |
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3637 GlobalMemoryStatusEx(&ms); |
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3638 _physical_memory = ms.ullTotalPhys; |
0 | 3639 |
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3640 OSVERSIONINFOEX oi; |
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3641 oi.dwOSVersionInfoSize = sizeof(OSVERSIONINFOEX); |
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3642 GetVersionEx((OSVERSIONINFO*)&oi); |
0 | 3643 switch(oi.dwPlatformId) { |
3644 case VER_PLATFORM_WIN32_WINDOWS: _is_nt = false; break; | |
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3645 case VER_PLATFORM_WIN32_NT: |
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3646 _is_nt = true; |
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3647 { |
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3648 int os_vers = oi.dwMajorVersion * 1000 + oi.dwMinorVersion; |
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3649 if (os_vers == 5002) { |
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3650 _is_windows_2003 = true; |
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3651 } |
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3652 if (oi.wProductType == VER_NT_DOMAIN_CONTROLLER || |
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3653 oi.wProductType == VER_NT_SERVER) { |
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3654 _is_windows_server = true; |
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3655 } |
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3656 } |
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3657 break; |
0 | 3658 default: fatal("Unknown platform"); |
3659 } | |
3660 | |
3661 _default_stack_size = os::current_stack_size(); | |
3662 assert(_default_stack_size > (size_t) _vm_page_size, "invalid stack size"); | |
3663 assert((_default_stack_size & (_vm_page_size - 1)) == 0, | |
3664 "stack size not a multiple of page size"); | |
3665 | |
3666 initialize_performance_counter(); | |
3667 | |
3668 // Win95/Win98 scheduler bug work-around. The Win95/98 scheduler is | |
3669 // known to deadlock the system, if the VM issues to thread operations with | |
3670 // a too high frequency, e.g., such as changing the priorities. | |
3671 // The 6000 seems to work well - no deadlocks has been notices on the test | |
3672 // programs that we have seen experience this problem. | |
3673 if (!os::win32::is_nt()) { | |
3674 StarvationMonitorInterval = 6000; | |
3675 } | |
3676 } | |
3677 | |
3678 | |
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3679 HINSTANCE os::win32::load_Windows_dll(const char* name, char *ebuf, int ebuflen) { |
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3680 char path[MAX_PATH]; |
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3681 DWORD size; |
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3682 DWORD pathLen = (DWORD)sizeof(path); |
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3683 HINSTANCE result = NULL; |
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3684 |
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3685 // only allow library name without path component |
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3686 assert(strchr(name, '\\') == NULL, "path not allowed"); |
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3687 assert(strchr(name, ':') == NULL, "path not allowed"); |
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3688 if (strchr(name, '\\') != NULL || strchr(name, ':') != NULL) { |
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3689 jio_snprintf(ebuf, ebuflen, |
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3690 "Invalid parameter while calling os::win32::load_windows_dll(): cannot take path: %s", name); |
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3691 return NULL; |
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3692 } |
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3693 |
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parents:
3800
diff
changeset
|
3694 // search system directory |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3695 if ((size = GetSystemDirectory(path, pathLen)) > 0) { |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3696 strcat(path, "\\"); |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3697 strcat(path, name); |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3698 if ((result = (HINSTANCE)os::dll_load(path, ebuf, ebuflen)) != NULL) { |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3699 return result; |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3700 } |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3701 } |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3702 |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3703 // try Windows directory |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3704 if ((size = GetWindowsDirectory(path, pathLen)) > 0) { |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3705 strcat(path, "\\"); |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3706 strcat(path, name); |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3707 if ((result = (HINSTANCE)os::dll_load(path, ebuf, ebuflen)) != NULL) { |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3708 return result; |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3709 } |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3710 } |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3711 |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3712 jio_snprintf(ebuf, ebuflen, |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3713 "os::win32::load_windows_dll() cannot load %s from system directories.", name); |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3714 return NULL; |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3715 } |
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
3716 |
0 | 3717 void os::win32::setmode_streams() { |
3718 _setmode(_fileno(stdin), _O_BINARY); | |
3719 _setmode(_fileno(stdout), _O_BINARY); | |
3720 _setmode(_fileno(stderr), _O_BINARY); | |
3721 } | |
3722 | |
3723 | |
2302
da091bb67459
7022037: Pause when exiting if debugger is attached on windows
sla
parents:
2205
diff
changeset
|
3724 bool os::is_debugger_attached() { |
da091bb67459
7022037: Pause when exiting if debugger is attached on windows
sla
parents:
2205
diff
changeset
|
3725 return IsDebuggerPresent() ? true : false; |
da091bb67459
7022037: Pause when exiting if debugger is attached on windows
sla
parents:
2205
diff
changeset
|
3726 } |
da091bb67459
7022037: Pause when exiting if debugger is attached on windows
sla
parents:
2205
diff
changeset
|
3727 |
da091bb67459
7022037: Pause when exiting if debugger is attached on windows
sla
parents:
2205
diff
changeset
|
3728 |
da091bb67459
7022037: Pause when exiting if debugger is attached on windows
sla
parents:
2205
diff
changeset
|
3729 void os::wait_for_keypress_at_exit(void) { |
da091bb67459
7022037: Pause when exiting if debugger is attached on windows
sla
parents:
2205
diff
changeset
|
3730 if (PauseAtExit) { |
da091bb67459
7022037: Pause when exiting if debugger is attached on windows
sla
parents:
2205
diff
changeset
|
3731 fprintf(stderr, "Press any key to continue...\n"); |
da091bb67459
7022037: Pause when exiting if debugger is attached on windows
sla
parents:
2205
diff
changeset
|
3732 fgetc(stdin); |
da091bb67459
7022037: Pause when exiting if debugger is attached on windows
sla
parents:
2205
diff
changeset
|
3733 } |
da091bb67459
7022037: Pause when exiting if debugger is attached on windows
sla
parents:
2205
diff
changeset
|
3734 } |
da091bb67459
7022037: Pause when exiting if debugger is attached on windows
sla
parents:
2205
diff
changeset
|
3735 |
da091bb67459
7022037: Pause when exiting if debugger is attached on windows
sla
parents:
2205
diff
changeset
|
3736 |
0 | 3737 int os::message_box(const char* title, const char* message) { |
3738 int result = MessageBox(NULL, message, title, | |
3739 MB_YESNO | MB_ICONERROR | MB_SYSTEMMODAL | MB_DEFAULT_DESKTOP_ONLY); | |
3740 return result == IDYES; | |
3741 } | |
3742 | |
3743 int os::allocate_thread_local_storage() { | |
3744 return TlsAlloc(); | |
3745 } | |
3746 | |
3747 | |
3748 void os::free_thread_local_storage(int index) { | |
3749 TlsFree(index); | |
3750 } | |
3751 | |
3752 | |
3753 void os::thread_local_storage_at_put(int index, void* value) { | |
3754 TlsSetValue(index, value); | |
3755 assert(thread_local_storage_at(index) == value, "Just checking"); | |
3756 } | |
3757 | |
3758 | |
3759 void* os::thread_local_storage_at(int index) { | |
3760 return TlsGetValue(index); | |
3761 } | |
3762 | |
3763 | |
3764 #ifndef PRODUCT | |
3765 #ifndef _WIN64 | |
3766 // Helpers to check whether NX protection is enabled | |
3767 int nx_exception_filter(_EXCEPTION_POINTERS *pex) { | |
3768 if (pex->ExceptionRecord->ExceptionCode == EXCEPTION_ACCESS_VIOLATION && | |
3769 pex->ExceptionRecord->NumberParameters > 0 && | |
3770 pex->ExceptionRecord->ExceptionInformation[0] == | |
3771 EXCEPTION_INFO_EXEC_VIOLATION) { | |
3772 return EXCEPTION_EXECUTE_HANDLER; | |
3773 } | |
3774 return EXCEPTION_CONTINUE_SEARCH; | |
3775 } | |
3776 | |
3777 void nx_check_protection() { | |
3778 // If NX is enabled we'll get an exception calling into code on the stack | |
3779 char code[] = { (char)0xC3 }; // ret | |
3780 void *code_ptr = (void *)code; | |
3781 __try { | |
3782 __asm call code_ptr | |
3783 } __except(nx_exception_filter((_EXCEPTION_POINTERS*)_exception_info())) { | |
3784 tty->print_raw_cr("NX protection detected."); | |
3785 } | |
3786 } | |
3787 #endif // _WIN64 | |
3788 #endif // PRODUCT | |
3789 | |
3790 // this is called _before_ the global arguments have been parsed | |
3791 void os::init(void) { | |
3792 _initial_pid = _getpid(); | |
3793 | |
3794 init_random(1234567); | |
3795 | |
3796 win32::initialize_system_info(); | |
3797 win32::setmode_streams(); | |
3798 init_page_sizes((size_t) win32::vm_page_size()); | |
3799 | |
3800 // For better scalability on MP systems (must be called after initialize_system_info) | |
3801 #ifndef PRODUCT | |
3802 if (is_MP()) { | |
3803 NoYieldsInMicrolock = true; | |
3804 } | |
3805 #endif | |
389
ee21eaa8ffe1
6660681: Incrementally reserve pages on win server 2003 for better large page affinity
jmasa
parents:
356
diff
changeset
|
3806 // This may be overridden later when argument processing is done. |
ee21eaa8ffe1
6660681: Incrementally reserve pages on win server 2003 for better large page affinity
jmasa
parents:
356
diff
changeset
|
3807 FLAG_SET_ERGO(bool, UseLargePagesIndividualAllocation, |
ee21eaa8ffe1
6660681: Incrementally reserve pages on win server 2003 for better large page affinity
jmasa
parents:
356
diff
changeset
|
3808 os::win32::is_windows_2003()); |
ee21eaa8ffe1
6660681: Incrementally reserve pages on win server 2003 for better large page affinity
jmasa
parents:
356
diff
changeset
|
3809 |
0 | 3810 // Initialize main_process and main_thread |
3811 main_process = GetCurrentProcess(); // Remember main_process is a pseudo handle | |
389
ee21eaa8ffe1
6660681: Incrementally reserve pages on win server 2003 for better large page affinity
jmasa
parents:
356
diff
changeset
|
3812 if (!DuplicateHandle(main_process, GetCurrentThread(), main_process, |
0 | 3813 &main_thread, THREAD_ALL_ACCESS, false, 0)) { |
3814 fatal("DuplicateHandle failed\n"); | |
3815 } | |
3816 main_thread_id = (int) GetCurrentThreadId(); | |
3817 } | |
3818 | |
3819 // To install functions for atexit processing | |
3820 extern "C" { | |
3821 static void perfMemory_exit_helper() { | |
3822 perfMemory_exit(); | |
3823 } | |
3824 } | |
3825 | |
8872 | 3826 static jint initSock(); |
3827 | |
0 | 3828 // this is called _after_ the global arguments have been parsed |
3829 jint os::init_2(void) { | |
3830 // Allocate a single page and mark it as readable for safepoint polling | |
3831 address polling_page = (address)VirtualAlloc(NULL, os::vm_page_size(), MEM_RESERVE, PAGE_READONLY); | |
3832 guarantee( polling_page != NULL, "Reserve Failed for polling page"); | |
3833 | |
3834 address return_page = (address)VirtualAlloc(polling_page, os::vm_page_size(), MEM_COMMIT, PAGE_READONLY); | |
3835 guarantee( return_page != NULL, "Commit Failed for polling page"); | |
3836 | |
3837 os::set_polling_page( polling_page ); | |
3838 | |
3839 #ifndef PRODUCT | |
3840 if( Verbose && PrintMiscellaneous ) | |
3841 tty->print("[SafePoint Polling address: " INTPTR_FORMAT "]\n", (intptr_t)polling_page); | |
3842 #endif | |
3843 | |
3844 if (!UseMembar) { | |
656 | 3845 address mem_serialize_page = (address)VirtualAlloc(NULL, os::vm_page_size(), MEM_RESERVE, PAGE_READWRITE); |
0 | 3846 guarantee( mem_serialize_page != NULL, "Reserve Failed for memory serialize page"); |
3847 | |
656 | 3848 return_page = (address)VirtualAlloc(mem_serialize_page, os::vm_page_size(), MEM_COMMIT, PAGE_READWRITE); |
0 | 3849 guarantee( return_page != NULL, "Commit Failed for memory serialize page"); |
3850 | |
3851 os::set_memory_serialize_page( mem_serialize_page ); | |
3852 | |
3853 #ifndef PRODUCT | |
3854 if(Verbose && PrintMiscellaneous) | |
3855 tty->print("[Memory Serialize Page address: " INTPTR_FORMAT "]\n", (intptr_t)mem_serialize_page); | |
3856 #endif | |
3885 | 3857 } |
0 | 3858 |
3318
188c9a5d6a6d
7040485: Use transparent huge page on linux by default
iveresov
parents:
3240
diff
changeset
|
3859 os::large_page_init(); |
0 | 3860 |
3861 // Setup Windows Exceptions | |
3862 | |
3863 // for debugging float code generation bugs | |
3864 if (ForceFloatExceptions) { | |
3865 #ifndef _WIN64 | |
3866 static long fp_control_word = 0; | |
3867 __asm { fstcw fp_control_word } | |
3868 // see Intel PPro Manual, Vol. 2, p 7-16 | |
3869 const long precision = 0x20; | |
3870 const long underflow = 0x10; | |
3871 const long overflow = 0x08; | |
3872 const long zero_div = 0x04; | |
3873 const long denorm = 0x02; | |
3874 const long invalid = 0x01; | |
3875 fp_control_word |= invalid; | |
3876 __asm { fldcw fp_control_word } | |
3877 #endif | |
3878 } | |
3879 | |
3880 // If stack_commit_size is 0, windows will reserve the default size, | |
3881 // but only commit a small portion of it. | |
3882 size_t stack_commit_size = round_to(ThreadStackSize*K, os::vm_page_size()); | |
3883 size_t default_reserve_size = os::win32::default_stack_size(); | |
3884 size_t actual_reserve_size = stack_commit_size; | |
3885 if (stack_commit_size < default_reserve_size) { | |
3886 // If stack_commit_size == 0, we want this too | |
3887 actual_reserve_size = default_reserve_size; | |
3888 } | |
3889 | |
1867
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3890 // Check minimum allowable stack size for thread creation and to initialize |
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3891 // the java system classes, including StackOverflowError - depends on page |
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3892 // size. Add a page for compiler2 recursion in main thread. |
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3893 // Add in 2*BytesPerWord times page size to account for VM stack during |
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3894 // class initialization depending on 32 or 64 bit VM. |
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3895 size_t min_stack_allowed = |
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3896 (size_t)(StackYellowPages+StackRedPages+StackShadowPages+ |
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3897 2*BytesPerWord COMPILER2_PRESENT(+1)) * os::vm_page_size(); |
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3898 if (actual_reserve_size < min_stack_allowed) { |
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3899 tty->print_cr("\nThe stack size specified is too small, " |
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3900 "Specify at least %dk", |
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3901 min_stack_allowed / K); |
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3902 return JNI_ERR; |
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3903 } |
b6aedd1acdc0
6983240: guarantee((Solaris::min_stack_allowed >= (StackYellowPages+StackRedPages...) wrong
coleenp
parents:
1865
diff
changeset
|
3904 |
0 | 3905 JavaThread::set_stack_size_at_create(stack_commit_size); |
3906 | |
3907 // Calculate theoretical max. size of Threads to guard gainst artifical | |
3908 // out-of-memory situations, where all available address-space has been | |
3909 // reserved by thread stacks. | |
3910 assert(actual_reserve_size != 0, "Must have a stack"); | |
3911 | |
3912 // Calculate the thread limit when we should start doing Virtual Memory | |
3913 // banging. Currently when the threads will have used all but 200Mb of space. | |
3914 // | |
3915 // TODO: consider performing a similar calculation for commit size instead | |
3916 // as reserve size, since on a 64-bit platform we'll run into that more | |
3917 // often than running out of virtual memory space. We can use the | |
3918 // lower value of the two calculations as the os_thread_limit. | |
113
ba764ed4b6f2
6420645: Create a vm that uses compressed oops for up to 32gb heapsizes
coleenp
parents:
79
diff
changeset
|
3919 size_t max_address_space = ((size_t)1 << (BitsPerWord - 1)) - (200 * K * K); |
0 | 3920 win32::_os_thread_limit = (intx)(max_address_space / actual_reserve_size); |
3921 | |
3922 // at exit methods are called in the reverse order of their registration. | |
3923 // there is no limit to the number of functions registered. atexit does | |
3924 // not set errno. | |
3925 | |
3926 if (PerfAllowAtExitRegistration) { | |
3927 // only register atexit functions if PerfAllowAtExitRegistration is set. | |
3928 // atexit functions can be delayed until process exit time, which | |
3929 // can be problematic for embedded VM situations. Embedded VMs should | |
3930 // call DestroyJavaVM() to assure that VM resources are released. | |
3931 | |
3932 // note: perfMemory_exit_helper atexit function may be removed in | |
3933 // the future if the appropriate cleanup code can be added to the | |
3934 // VM_Exit VMOperation's doit method. | |
3935 if (atexit(perfMemory_exit_helper) != 0) { | |
3936 warning("os::init_2 atexit(perfMemory_exit_helper) failed"); | |
3937 } | |
3938 } | |
3939 | |
3940 #ifndef _WIN64 | |
3941 // Print something if NX is enabled (win32 on AMD64) | |
3942 NOT_PRODUCT(if (PrintMiscellaneous && Verbose) nx_check_protection()); | |
3943 #endif | |
3944 | |
3945 // initialize thread priority policy | |
3946 prio_init(); | |
3947 | |
3918
a6128a8ed624
7086226: UseNUMA fails on old versions of windows
iveresov
parents:
3885
diff
changeset
|
3948 if (UseNUMA && !ForceNUMA) { |
a6128a8ed624
7086226: UseNUMA fails on old versions of windows
iveresov
parents:
3885
diff
changeset
|
3949 UseNUMA = false; // We don't fully support this yet |
a6128a8ed624
7086226: UseNUMA fails on old versions of windows
iveresov
parents:
3885
diff
changeset
|
3950 } |
a6128a8ed624
7086226: UseNUMA fails on old versions of windows
iveresov
parents:
3885
diff
changeset
|
3951 |
3885 | 3952 if (UseNUMAInterleaving) { |
3953 // first check whether this Windows OS supports VirtualAllocExNuma, if not ignore this flag | |
3954 bool success = numa_interleaving_init(); | |
3955 if (!success) UseNUMAInterleaving = false; | |
462
85f1b9537f70
6779436: NUMA allocator: libnuma expects certain size of the buffer in numa_node_to_cpus()
iveresov
parents:
389
diff
changeset
|
3956 } |
85f1b9537f70
6779436: NUMA allocator: libnuma expects certain size of the buffer in numa_node_to_cpus()
iveresov
parents:
389
diff
changeset
|
3957 |
8872 | 3958 if (initSock() != JNI_OK) { |
3959 return JNI_ERR; | |
3960 } | |
3961 | |
0 | 3962 return JNI_OK; |
3963 } | |
3964 | |
1681
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
parents:
1552
diff
changeset
|
3965 void os::init_3(void) { |
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
parents:
1552
diff
changeset
|
3966 return; |
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
parents:
1552
diff
changeset
|
3967 } |
0 | 3968 |
3969 // Mark the polling page as unreadable | |
3970 void os::make_polling_page_unreadable(void) { | |
3971 DWORD old_status; | |
3972 if( !VirtualProtect((char *)_polling_page, os::vm_page_size(), PAGE_NOACCESS, &old_status) ) | |
3973 fatal("Could not disable polling page"); | |
3974 }; | |
3975 | |
3976 // Mark the polling page as readable | |
3977 void os::make_polling_page_readable(void) { | |
3978 DWORD old_status; | |
3979 if( !VirtualProtect((char *)_polling_page, os::vm_page_size(), PAGE_READONLY, &old_status) ) | |
3980 fatal("Could not enable polling page"); | |
3981 }; | |
3982 | |
3983 | |
3984 int os::stat(const char *path, struct stat *sbuf) { | |
3985 char pathbuf[MAX_PATH]; | |
3986 if (strlen(path) > MAX_PATH - 1) { | |
3987 errno = ENAMETOOLONG; | |
3988 return -1; | |
3989 } | |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
3990 os::native_path(strcpy(pathbuf, path)); |
0 | 3991 int ret = ::stat(pathbuf, sbuf); |
3992 if (sbuf != NULL && UseUTCFileTimestamp) { | |
3993 // Fix for 6539723. st_mtime returned from stat() is dependent on | |
3994 // the system timezone and so can return different values for the | |
3995 // same file if/when daylight savings time changes. This adjustment | |
3996 // makes sure the same timestamp is returned regardless of the TZ. | |
3997 // | |
3998 // See: | |
3999 // http://msdn.microsoft.com/library/ | |
4000 // default.asp?url=/library/en-us/sysinfo/base/ | |
4001 // time_zone_information_str.asp | |
4002 // and | |
4003 // http://msdn.microsoft.com/library/default.asp?url= | |
4004 // /library/en-us/sysinfo/base/settimezoneinformation.asp | |
4005 // | |
4006 // NOTE: there is a insidious bug here: If the timezone is changed | |
4007 // after the call to stat() but before 'GetTimeZoneInformation()', then | |
4008 // the adjustment we do here will be wrong and we'll return the wrong | |
4009 // value (which will likely end up creating an invalid class data | |
4010 // archive). Absent a better API for this, or some time zone locking | |
4011 // mechanism, we'll have to live with this risk. | |
4012 TIME_ZONE_INFORMATION tz; | |
4013 DWORD tzid = GetTimeZoneInformation(&tz); | |
4014 int daylightBias = | |
4015 (tzid == TIME_ZONE_ID_DAYLIGHT) ? tz.DaylightBias : tz.StandardBias; | |
4016 sbuf->st_mtime += (tz.Bias + daylightBias) * 60; | |
4017 } | |
4018 return ret; | |
4019 } | |
4020 | |
4021 | |
4022 #define FT2INT64(ft) \ | |
4023 ((jlong)((jlong)(ft).dwHighDateTime << 32 | (julong)(ft).dwLowDateTime)) | |
4024 | |
4025 | |
4026 // current_thread_cpu_time(bool) and thread_cpu_time(Thread*, bool) | |
4027 // are used by JVM M&M and JVMTI to get user+sys or user CPU time | |
4028 // of a thread. | |
4029 // | |
4030 // current_thread_cpu_time() and thread_cpu_time(Thread*) returns | |
4031 // the fast estimate available on the platform. | |
4032 | |
4033 // current_thread_cpu_time() is not optimized for Windows yet | |
4034 jlong os::current_thread_cpu_time() { | |
4035 // return user + sys since the cost is the same | |
4036 return os::thread_cpu_time(Thread::current(), true /* user+sys */); | |
4037 } | |
4038 | |
4039 jlong os::thread_cpu_time(Thread* thread) { | |
4040 // consistent with what current_thread_cpu_time() returns. | |
4041 return os::thread_cpu_time(thread, true /* user+sys */); | |
4042 } | |
4043 | |
4044 jlong os::current_thread_cpu_time(bool user_sys_cpu_time) { | |
4045 return os::thread_cpu_time(Thread::current(), user_sys_cpu_time); | |
4046 } | |
4047 | |
4048 jlong os::thread_cpu_time(Thread* thread, bool user_sys_cpu_time) { | |
4049 // This code is copy from clasic VM -> hpi::sysThreadCPUTime | |
4050 // If this function changes, os::is_thread_cpu_time_supported() should too | |
4051 if (os::win32::is_nt()) { | |
4052 FILETIME CreationTime; | |
4053 FILETIME ExitTime; | |
4054 FILETIME KernelTime; | |
4055 FILETIME UserTime; | |
4056 | |
4057 if ( GetThreadTimes(thread->osthread()->thread_handle(), | |
4058 &CreationTime, &ExitTime, &KernelTime, &UserTime) == 0) | |
4059 return -1; | |
4060 else | |
4061 if (user_sys_cpu_time) { | |
4062 return (FT2INT64(UserTime) + FT2INT64(KernelTime)) * 100; | |
4063 } else { | |
4064 return FT2INT64(UserTime) * 100; | |
4065 } | |
4066 } else { | |
4067 return (jlong) timeGetTime() * 1000000; | |
4068 } | |
4069 } | |
4070 | |
4071 void os::current_thread_cpu_time_info(jvmtiTimerInfo *info_ptr) { | |
4072 info_ptr->max_value = ALL_64_BITS; // the max value -- all 64 bits | |
4073 info_ptr->may_skip_backward = false; // GetThreadTimes returns absolute time | |
4074 info_ptr->may_skip_forward = false; // GetThreadTimes returns absolute time | |
4075 info_ptr->kind = JVMTI_TIMER_TOTAL_CPU; // user+system time is returned | |
4076 } | |
4077 | |
4078 void os::thread_cpu_time_info(jvmtiTimerInfo *info_ptr) { | |
4079 info_ptr->max_value = ALL_64_BITS; // the max value -- all 64 bits | |
4080 info_ptr->may_skip_backward = false; // GetThreadTimes returns absolute time | |
4081 info_ptr->may_skip_forward = false; // GetThreadTimes returns absolute time | |
4082 info_ptr->kind = JVMTI_TIMER_TOTAL_CPU; // user+system time is returned | |
4083 } | |
4084 | |
4085 bool os::is_thread_cpu_time_supported() { | |
4086 // see os::thread_cpu_time | |
4087 if (os::win32::is_nt()) { | |
4088 FILETIME CreationTime; | |
4089 FILETIME ExitTime; | |
4090 FILETIME KernelTime; | |
4091 FILETIME UserTime; | |
4092 | |
4093 if ( GetThreadTimes(GetCurrentThread(), | |
4094 &CreationTime, &ExitTime, &KernelTime, &UserTime) == 0) | |
4095 return false; | |
4096 else | |
4097 return true; | |
4098 } else { | |
4099 return false; | |
4100 } | |
4101 } | |
4102 | |
4103 // Windows does't provide a loadavg primitive so this is stubbed out for now. | |
4104 // It does have primitives (PDH API) to get CPU usage and run queue length. | |
4105 // "\\Processor(_Total)\\% Processor Time", "\\System\\Processor Queue Length" | |
4106 // If we wanted to implement loadavg on Windows, we have a few options: | |
4107 // | |
4108 // a) Query CPU usage and run queue length and "fake" an answer by | |
4109 // returning the CPU usage if it's under 100%, and the run queue | |
4110 // length otherwise. It turns out that querying is pretty slow | |
4111 // on Windows, on the order of 200 microseconds on a fast machine. | |
4112 // Note that on the Windows the CPU usage value is the % usage | |
4113 // since the last time the API was called (and the first call | |
4114 // returns 100%), so we'd have to deal with that as well. | |
4115 // | |
4116 // b) Sample the "fake" answer using a sampling thread and store | |
4117 // the answer in a global variable. The call to loadavg would | |
4118 // just return the value of the global, avoiding the slow query. | |
4119 // | |
4120 // c) Sample a better answer using exponential decay to smooth the | |
4121 // value. This is basically the algorithm used by UNIX kernels. | |
4122 // | |
4123 // Note that sampling thread starvation could affect both (b) and (c). | |
4124 int os::loadavg(double loadavg[], int nelem) { | |
4125 return -1; | |
4126 } | |
4127 | |
4128 | |
4129 // DontYieldALot=false by default: dutifully perform all yields as requested by JVM_Yield() | |
4130 bool os::dont_yield() { | |
4131 return DontYieldALot; | |
4132 } | |
4133 | |
1980
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4134 // This method is a slightly reworked copy of JDK's sysOpen |
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4135 // from src/windows/hpi/src/sys_api_md.c |
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4136 |
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4137 int os::open(const char *path, int oflag, int mode) { |
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|
4138 char pathbuf[MAX_PATH]; |
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4139 |
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4140 if (strlen(path) > MAX_PATH - 1) { |
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|
4141 errno = ENAMETOOLONG; |
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4142 return -1; |
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|
4143 } |
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4144 os::native_path(strcpy(pathbuf, path)); |
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4145 return ::open(pathbuf, oflag | O_BINARY | O_NOINHERIT, mode); |
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|
4146 } |
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|
4147 |
10195
e12c9b3740db
8012260: ciReplay: Include PID into the name of replay data file
vlivanov
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9152
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|
4148 FILE* os::open(int fd, const char* mode) { |
e12c9b3740db
8012260: ciReplay: Include PID into the name of replay data file
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|
4149 return ::_fdopen(fd, mode); |
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8012260: ciReplay: Include PID into the name of replay data file
vlivanov
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|
4150 } |
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|
4151 |
0 | 4152 // Is a (classpath) directory empty? |
4153 bool os::dir_is_empty(const char* path) { | |
4154 WIN32_FIND_DATA fd; | |
4155 HANDLE f = FindFirstFile(path, &fd); | |
4156 if (f == INVALID_HANDLE_VALUE) { | |
4157 return true; | |
4158 } | |
4159 FindClose(f); | |
4160 return false; | |
4161 } | |
4162 | |
4163 // create binary file, rewriting existing file if required | |
4164 int os::create_binary_file(const char* path, bool rewrite_existing) { | |
4165 int oflags = _O_CREAT | _O_WRONLY | _O_BINARY; | |
4166 if (!rewrite_existing) { | |
4167 oflags |= _O_EXCL; | |
4168 } | |
4169 return ::open(path, oflags, _S_IREAD | _S_IWRITE); | |
4170 } | |
4171 | |
4172 // return current position of file pointer | |
4173 jlong os::current_file_offset(int fd) { | |
4174 return (jlong)::_lseeki64(fd, (__int64)0L, SEEK_CUR); | |
4175 } | |
4176 | |
4177 // move file pointer to the specified offset | |
4178 jlong os::seek_to_file_offset(int fd, jlong offset) { | |
4179 return (jlong)::_lseeki64(fd, (__int64)offset, SEEK_SET); | |
4180 } | |
4181 | |
4182 | |
1980
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4183 jlong os::lseek(int fd, jlong offset, int whence) { |
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4184 return (jlong) ::_lseeki64(fd, offset, whence); |
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4185 } |
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|
4186 |
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4187 // This method is a slightly reworked copy of JDK's sysNativePath |
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|
4188 // from src/windows/hpi/src/path_md.c |
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|
4189 |
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|
4190 /* Convert a pathname to native format. On win32, this involves forcing all |
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changeset
|
4191 separators to be '\\' rather than '/' (both are legal inputs, but Win95 |
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4192 sometimes rejects '/') and removing redundant separators. The input path is |
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diff
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|
4193 assumed to have been converted into the character encoding used by the local |
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|
4194 system. Because this might be a double-byte encoding, care is taken to |
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|
4195 treat double-byte lead characters correctly. |
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|
4196 |
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|
4197 This procedure modifies the given path in place, as the result is never |
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|
4198 longer than the original. There is no error return; this operation always |
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|
4199 succeeds. */ |
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|
4200 char * os::native_path(char *path) { |
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|
4201 char *src = path, *dst = path, *end = path; |
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4202 char *colon = NULL; /* If a drive specifier is found, this will |
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|
4203 point to the colon following the drive |
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|
4204 letter */ |
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|
4205 |
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|
4206 /* Assumption: '/', '\\', ':', and drive letters are never lead bytes */ |
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|
4207 assert(((!::IsDBCSLeadByte('/')) |
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|
4208 && (!::IsDBCSLeadByte('\\')) |
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|
4209 && (!::IsDBCSLeadByte(':'))), |
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|
4210 "Illegal lead byte"); |
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|
4211 |
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|
4212 /* Check for leading separators */ |
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|
4213 #define isfilesep(c) ((c) == '/' || (c) == '\\') |
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|
4214 while (isfilesep(*src)) { |
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|
4215 src++; |
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|
4216 } |
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|
4217 |
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|
4218 if (::isalpha(*src) && !::IsDBCSLeadByte(*src) && src[1] == ':') { |
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|
4219 /* Remove leading separators if followed by drive specifier. This |
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diff
changeset
|
4220 hack is necessary to support file URLs containing drive |
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diff
changeset
|
4221 specifiers (e.g., "file://c:/path"). As a side effect, |
828eafbd85cc
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ikrylov
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diff
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|
4222 "/c:/path" can be used as an alternative to "c:/path". */ |
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diff
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|
4223 *dst++ = *src++; |
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diff
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|
4224 colon = dst; |
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diff
changeset
|
4225 *dst++ = ':'; |
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|
4226 src++; |
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|
4227 } else { |
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|
4228 src = path; |
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|
4229 if (isfilesep(src[0]) && isfilesep(src[1])) { |
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diff
changeset
|
4230 /* UNC pathname: Retain first separator; leave src pointed at |
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diff
changeset
|
4231 second separator so that further separators will be collapsed |
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diff
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|
4232 into the second separator. The result will be a pathname |
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diff
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|
4233 beginning with "\\\\" followed (most likely) by a host name. */ |
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|
4234 src = dst = path + 1; |
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|
4235 path[0] = '\\'; /* Force first separator to '\\' */ |
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diff
changeset
|
4236 } |
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diff
changeset
|
4237 } |
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changeset
|
4238 |
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diff
changeset
|
4239 end = dst; |
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6348631: remove the use of the HPI library from Hotspot
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diff
changeset
|
4240 |
828eafbd85cc
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diff
changeset
|
4241 /* Remove redundant separators from remainder of path, forcing all |
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ikrylov
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diff
changeset
|
4242 separators to be '\\' rather than '/'. Also, single byte space |
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ikrylov
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diff
changeset
|
4243 characters are removed from the end of the path because those |
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ikrylov
parents:
1972
diff
changeset
|
4244 are not legal ending characters on this operating system. |
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diff
changeset
|
4245 */ |
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diff
changeset
|
4246 while (*src != '\0') { |
828eafbd85cc
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diff
changeset
|
4247 if (isfilesep(*src)) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
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diff
changeset
|
4248 *dst++ = '\\'; src++; |
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6348631: remove the use of the HPI library from Hotspot
ikrylov
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diff
changeset
|
4249 while (isfilesep(*src)) src++; |
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diff
changeset
|
4250 if (*src == '\0') { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4251 /* Check for trailing separator */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4252 end = dst; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4253 if (colon == dst - 2) break; /* "z:\\" */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4254 if (dst == path + 1) break; /* "\\" */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4255 if (dst == path + 2 && isfilesep(path[0])) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4256 /* "\\\\" is not collapsed to "\\" because "\\\\" marks the |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4257 beginning of a UNC pathname. Even though it is not, by |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4258 itself, a valid UNC pathname, we leave it as is in order |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4259 to be consistent with the path canonicalizer as well |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4260 as the win32 APIs, which treat this case as an invalid |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4261 UNC pathname rather than as an alias for the root |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4262 directory of the current drive. */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4263 break; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4264 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4265 end = --dst; /* Path does not denote a root directory, so |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4266 remove trailing separator */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4267 break; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4268 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4269 end = dst; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4270 } else { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4271 if (::IsDBCSLeadByte(*src)) { /* Copy a double-byte character */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4272 *dst++ = *src++; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4273 if (*src) *dst++ = *src++; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4274 end = dst; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4275 } else { /* Copy a single-byte character */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4276 char c = *src++; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4277 *dst++ = c; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4278 /* Space is not a legal ending character */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4279 if (c != ' ') end = dst; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4280 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4281 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4282 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4283 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4284 *end = '\0'; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4285 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4286 /* For "z:", add "." to work around a bug in the C runtime library */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4287 if (colon == dst - 1) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4288 path[2] = '.'; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4289 path[3] = '\0'; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4290 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4291 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4292 return path; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4293 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4294 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4295 // This code is a copy of JDK's sysSetLength |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4296 // from src/windows/hpi/src/sys_api_md.c |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4297 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4298 int os::ftruncate(int fd, jlong length) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4299 HANDLE h = (HANDLE)::_get_osfhandle(fd); |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4300 long high = (long)(length >> 32); |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4301 DWORD ret; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4302 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4303 if (h == (HANDLE)(-1)) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4304 return -1; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4305 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4306 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4307 ret = ::SetFilePointer(h, (long)(length), &high, FILE_BEGIN); |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4308 if ((ret == 0xFFFFFFFF) && (::GetLastError() != NO_ERROR)) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4309 return -1; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4310 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4311 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4312 if (::SetEndOfFile(h) == FALSE) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4313 return -1; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4314 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4315 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4316 return 0; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4317 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4318 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4319 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4320 // This code is a copy of JDK's sysSync |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4321 // from src/windows/hpi/src/sys_api_md.c |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4322 // except for the legacy workaround for a bug in Win 98 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4323 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4324 int os::fsync(int fd) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4325 HANDLE handle = (HANDLE)::_get_osfhandle(fd); |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4326 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4327 if ( (!::FlushFileBuffers(handle)) && |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4328 (GetLastError() != ERROR_ACCESS_DENIED) ) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4329 /* from winerror.h */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4330 return -1; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4331 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4332 return 0; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4333 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4334 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4335 static int nonSeekAvailable(int, long *); |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4336 static int stdinAvailable(int, long *); |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4337 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4338 #define S_ISCHR(mode) (((mode) & _S_IFCHR) == _S_IFCHR) |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4339 #define S_ISFIFO(mode) (((mode) & _S_IFIFO) == _S_IFIFO) |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4340 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4341 // This code is a copy of JDK's sysAvailable |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4342 // from src/windows/hpi/src/sys_api_md.c |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4343 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4344 int os::available(int fd, jlong *bytes) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4345 jlong cur, end; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4346 struct _stati64 stbuf64; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4347 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4348 if (::_fstati64(fd, &stbuf64) >= 0) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4349 int mode = stbuf64.st_mode; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4350 if (S_ISCHR(mode) || S_ISFIFO(mode)) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4351 int ret; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4352 long lpbytes; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4353 if (fd == 0) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4354 ret = stdinAvailable(fd, &lpbytes); |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4355 } else { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4356 ret = nonSeekAvailable(fd, &lpbytes); |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4357 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4358 (*bytes) = (jlong)(lpbytes); |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4359 return ret; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4360 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4361 if ((cur = ::_lseeki64(fd, 0L, SEEK_CUR)) == -1) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4362 return FALSE; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4363 } else if ((end = ::_lseeki64(fd, 0L, SEEK_END)) == -1) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4364 return FALSE; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4365 } else if (::_lseeki64(fd, cur, SEEK_SET) == -1) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4366 return FALSE; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4367 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4368 *bytes = end - cur; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4369 return TRUE; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4370 } else { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4371 return FALSE; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4372 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4373 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4374 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4375 // This code is a copy of JDK's nonSeekAvailable |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4376 // from src/windows/hpi/src/sys_api_md.c |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4377 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4378 static int nonSeekAvailable(int fd, long *pbytes) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4379 /* This is used for available on non-seekable devices |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4380 * (like both named and anonymous pipes, such as pipes |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4381 * connected to an exec'd process). |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4382 * Standard Input is a special case. |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4383 * |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4384 */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4385 HANDLE han; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4386 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4387 if ((han = (HANDLE) ::_get_osfhandle(fd)) == (HANDLE)(-1)) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4388 return FALSE; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4389 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4390 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4391 if (! ::PeekNamedPipe(han, NULL, 0, NULL, (LPDWORD)pbytes, NULL)) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4392 /* PeekNamedPipe fails when at EOF. In that case we |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4393 * simply make *pbytes = 0 which is consistent with the |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4394 * behavior we get on Solaris when an fd is at EOF. |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4395 * The only alternative is to raise an Exception, |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4396 * which isn't really warranted. |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4397 */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4398 if (::GetLastError() != ERROR_BROKEN_PIPE) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4399 return FALSE; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4400 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4401 *pbytes = 0; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4402 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4403 return TRUE; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4404 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4405 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4406 #define MAX_INPUT_EVENTS 2000 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4407 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4408 // This code is a copy of JDK's stdinAvailable |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4409 // from src/windows/hpi/src/sys_api_md.c |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4410 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4411 static int stdinAvailable(int fd, long *pbytes) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4412 HANDLE han; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4413 DWORD numEventsRead = 0; /* Number of events read from buffer */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4414 DWORD numEvents = 0; /* Number of events in buffer */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4415 DWORD i = 0; /* Loop index */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4416 DWORD curLength = 0; /* Position marker */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4417 DWORD actualLength = 0; /* Number of bytes readable */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4418 BOOL error = FALSE; /* Error holder */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4419 INPUT_RECORD *lpBuffer; /* Pointer to records of input events */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4420 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4421 if ((han = ::GetStdHandle(STD_INPUT_HANDLE)) == INVALID_HANDLE_VALUE) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4422 return FALSE; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4423 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4424 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4425 /* Construct an array of input records in the console buffer */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4426 error = ::GetNumberOfConsoleInputEvents(han, &numEvents); |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4427 if (error == 0) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4428 return nonSeekAvailable(fd, pbytes); |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4429 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4430 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4431 /* lpBuffer must fit into 64K or else PeekConsoleInput fails */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4432 if (numEvents > MAX_INPUT_EVENTS) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4433 numEvents = MAX_INPUT_EVENTS; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4434 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4435 |
6197 | 4436 lpBuffer = (INPUT_RECORD *)os::malloc(numEvents * sizeof(INPUT_RECORD), mtInternal); |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4437 if (lpBuffer == NULL) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4438 return FALSE; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4439 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4440 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4441 error = ::PeekConsoleInput(han, lpBuffer, numEvents, &numEventsRead); |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4442 if (error == 0) { |
6197 | 4443 os::free(lpBuffer, mtInternal); |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4444 return FALSE; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4445 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4446 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4447 /* Examine input records for the number of bytes available */ |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4448 for(i=0; i<numEvents; i++) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4449 if (lpBuffer[i].EventType == KEY_EVENT) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4450 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4451 KEY_EVENT_RECORD *keyRecord = (KEY_EVENT_RECORD *) |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4452 &(lpBuffer[i].Event); |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4453 if (keyRecord->bKeyDown == TRUE) { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4454 CHAR *keyPressed = (CHAR *) &(keyRecord->uChar); |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4455 curLength++; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4456 if (*keyPressed == '\r') { |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4457 actualLength = curLength; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4458 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4459 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4460 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4461 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4462 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4463 if(lpBuffer != NULL) { |
6197 | 4464 os::free(lpBuffer, mtInternal); |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4465 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4466 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4467 *pbytes = (long) actualLength; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4468 return TRUE; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4469 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4470 |
0 | 4471 // Map a block of memory. |
6197 | 4472 char* os::pd_map_memory(int fd, const char* file_name, size_t file_offset, |
0 | 4473 char *addr, size_t bytes, bool read_only, |
4474 bool allow_exec) { | |
4475 HANDLE hFile; | |
4476 char* base; | |
4477 | |
4478 hFile = CreateFile(file_name, GENERIC_READ, FILE_SHARE_READ, NULL, | |
4479 OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL, NULL); | |
4480 if (hFile == NULL) { | |
4481 if (PrintMiscellaneous && Verbose) { | |
4482 DWORD err = GetLastError(); | |
7623
203f64878aab
7102489: RFE: cleanup jlong typedef on __APPLE__and _LLP64 systems.
hseigel
parents:
7458
diff
changeset
|
4483 tty->print_cr("CreateFile() failed: GetLastError->%ld.", err); |
0 | 4484 } |
4485 return NULL; | |
4486 } | |
4487 | |
4488 if (allow_exec) { | |
4489 // CreateFileMapping/MapViewOfFileEx can't map executable memory | |
4490 // unless it comes from a PE image (which the shared archive is not.) | |
4491 // Even VirtualProtect refuses to give execute access to mapped memory | |
4492 // that was not previously executable. | |
4493 // | |
4494 // Instead, stick the executable region in anonymous memory. Yuck. | |
4495 // Penalty is that ~4 pages will not be shareable - in the future | |
4496 // we might consider DLLizing the shared archive with a proper PE | |
4497 // header so that mapping executable + sharing is possible. | |
4498 | |
4499 base = (char*) VirtualAlloc(addr, bytes, MEM_COMMIT | MEM_RESERVE, | |
4500 PAGE_READWRITE); | |
4501 if (base == NULL) { | |
4502 if (PrintMiscellaneous && Verbose) { | |
4503 DWORD err = GetLastError(); | |
4504 tty->print_cr("VirtualAlloc() failed: GetLastError->%ld.", err); | |
4505 } | |
4506 CloseHandle(hFile); | |
4507 return NULL; | |
4508 } | |
4509 | |
4510 DWORD bytes_read; | |
4511 OVERLAPPED overlapped; | |
4512 overlapped.Offset = (DWORD)file_offset; | |
4513 overlapped.OffsetHigh = 0; | |
4514 overlapped.hEvent = NULL; | |
4515 // ReadFile guarantees that if the return value is true, the requested | |
4516 // number of bytes were read before returning. | |
4517 bool res = ReadFile(hFile, base, (DWORD)bytes, &bytes_read, &overlapped) != 0; | |
4518 if (!res) { | |
4519 if (PrintMiscellaneous && Verbose) { | |
4520 DWORD err = GetLastError(); | |
4521 tty->print_cr("ReadFile() failed: GetLastError->%ld.", err); | |
4522 } | |
4523 release_memory(base, bytes); | |
4524 CloseHandle(hFile); | |
4525 return NULL; | |
4526 } | |
4527 } else { | |
4528 HANDLE hMap = CreateFileMapping(hFile, NULL, PAGE_WRITECOPY, 0, 0, | |
4529 NULL /*file_name*/); | |
4530 if (hMap == NULL) { | |
4531 if (PrintMiscellaneous && Verbose) { | |
4532 DWORD err = GetLastError(); | |
7623
203f64878aab
7102489: RFE: cleanup jlong typedef on __APPLE__and _LLP64 systems.
hseigel
parents:
7458
diff
changeset
|
4533 tty->print_cr("CreateFileMapping() failed: GetLastError->%ld.", err); |
0 | 4534 } |
4535 CloseHandle(hFile); | |
4536 return NULL; | |
4537 } | |
4538 | |
4539 DWORD access = read_only ? FILE_MAP_READ : FILE_MAP_COPY; | |
4540 base = (char*)MapViewOfFileEx(hMap, access, 0, (DWORD)file_offset, | |
4541 (DWORD)bytes, addr); | |
4542 if (base == NULL) { | |
4543 if (PrintMiscellaneous && Verbose) { | |
4544 DWORD err = GetLastError(); | |
4545 tty->print_cr("MapViewOfFileEx() failed: GetLastError->%ld.", err); | |
4546 } | |
4547 CloseHandle(hMap); | |
4548 CloseHandle(hFile); | |
4549 return NULL; | |
4550 } | |
4551 | |
4552 if (CloseHandle(hMap) == 0) { | |
4553 if (PrintMiscellaneous && Verbose) { | |
4554 DWORD err = GetLastError(); | |
4555 tty->print_cr("CloseHandle(hMap) failed: GetLastError->%ld.", err); | |
4556 } | |
4557 CloseHandle(hFile); | |
4558 return base; | |
4559 } | |
4560 } | |
4561 | |
4562 if (allow_exec) { | |
4563 DWORD old_protect; | |
4564 DWORD exec_access = read_only ? PAGE_EXECUTE_READ : PAGE_EXECUTE_READWRITE; | |
4565 bool res = VirtualProtect(base, bytes, exec_access, &old_protect) != 0; | |
4566 | |
4567 if (!res) { | |
4568 if (PrintMiscellaneous && Verbose) { | |
4569 DWORD err = GetLastError(); | |
4570 tty->print_cr("VirtualProtect() failed: GetLastError->%ld.", err); | |
4571 } | |
4572 // Don't consider this a hard error, on IA32 even if the | |
4573 // VirtualProtect fails, we should still be able to execute | |
4574 CloseHandle(hFile); | |
4575 return base; | |
4576 } | |
4577 } | |
4578 | |
4579 if (CloseHandle(hFile) == 0) { | |
4580 if (PrintMiscellaneous && Verbose) { | |
4581 DWORD err = GetLastError(); | |
4582 tty->print_cr("CloseHandle(hFile) failed: GetLastError->%ld.", err); | |
4583 } | |
4584 return base; | |
4585 } | |
4586 | |
4587 return base; | |
4588 } | |
4589 | |
4590 | |
4591 // Remap a block of memory. | |
6197 | 4592 char* os::pd_remap_memory(int fd, const char* file_name, size_t file_offset, |
0 | 4593 char *addr, size_t bytes, bool read_only, |
4594 bool allow_exec) { | |
4595 // This OS does not allow existing memory maps to be remapped so we | |
4596 // have to unmap the memory before we remap it. | |
4597 if (!os::unmap_memory(addr, bytes)) { | |
4598 return NULL; | |
4599 } | |
4600 | |
4601 // There is a very small theoretical window between the unmap_memory() | |
4602 // call above and the map_memory() call below where a thread in native | |
4603 // code may be able to access an address that is no longer mapped. | |
4604 | |
6197 | 4605 return os::map_memory(fd, file_name, file_offset, addr, bytes, |
4606 read_only, allow_exec); | |
0 | 4607 } |
4608 | |
4609 | |
4610 // Unmap a block of memory. | |
4611 // Returns true=success, otherwise false. | |
4612 | |
6197 | 4613 bool os::pd_unmap_memory(char* addr, size_t bytes) { |
0 | 4614 BOOL result = UnmapViewOfFile(addr); |
4615 if (result == 0) { | |
4616 if (PrintMiscellaneous && Verbose) { | |
4617 DWORD err = GetLastError(); | |
4618 tty->print_cr("UnmapViewOfFile() failed: GetLastError->%ld.", err); | |
4619 } | |
4620 return false; | |
4621 } | |
4622 return true; | |
4623 } | |
4624 | |
4625 void os::pause() { | |
4626 char filename[MAX_PATH]; | |
4627 if (PauseAtStartupFile && PauseAtStartupFile[0]) { | |
4628 jio_snprintf(filename, MAX_PATH, PauseAtStartupFile); | |
4629 } else { | |
4630 jio_snprintf(filename, MAX_PATH, "./vm.paused.%d", current_process_id()); | |
4631 } | |
4632 | |
4633 int fd = ::open(filename, O_WRONLY | O_CREAT | O_TRUNC, 0666); | |
4634 if (fd != -1) { | |
4635 struct stat buf; | |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4636 ::close(fd); |
0 | 4637 while (::stat(filename, &buf) == 0) { |
4638 Sleep(100); | |
4639 } | |
4640 } else { | |
4641 jio_fprintf(stderr, | |
4642 "Could not open pause file '%s', continuing immediately.\n", filename); | |
4643 } | |
4644 } | |
4645 | |
4646 // An Event wraps a win32 "CreateEvent" kernel handle. | |
4647 // | |
4648 // We have a number of choices regarding "CreateEvent" win32 handle leakage: | |
4649 // | |
4650 // 1: When a thread dies return the Event to the EventFreeList, clear the ParkHandle | |
4651 // field, and call CloseHandle() on the win32 event handle. Unpark() would | |
4652 // need to be modified to tolerate finding a NULL (invalid) win32 event handle. | |
4653 // In addition, an unpark() operation might fetch the handle field, but the | |
4654 // event could recycle between the fetch and the SetEvent() operation. | |
4655 // SetEvent() would either fail because the handle was invalid, or inadvertently work, | |
4656 // as the win32 handle value had been recycled. In an ideal world calling SetEvent() | |
4657 // on an stale but recycled handle would be harmless, but in practice this might | |
4658 // confuse other non-Sun code, so it's not a viable approach. | |
4659 // | |
4660 // 2: Once a win32 event handle is associated with an Event, it remains associated | |
4661 // with the Event. The event handle is never closed. This could be construed | |
4662 // as handle leakage, but only up to the maximum # of threads that have been extant | |
4663 // at any one time. This shouldn't be an issue, as windows platforms typically | |
4664 // permit a process to have hundreds of thousands of open handles. | |
4665 // | |
4666 // 3: Same as (1), but periodically, at stop-the-world time, rundown the EventFreeList | |
4667 // and release unused handles. | |
4668 // | |
4669 // 4: Add a CRITICAL_SECTION to the Event to protect LD+SetEvent from LD;ST(null);CloseHandle. | |
4670 // It's not clear, however, that we wouldn't be trading one type of leak for another. | |
4671 // | |
4672 // 5. Use an RCU-like mechanism (Read-Copy Update). | |
4673 // Or perhaps something similar to Maged Michael's "Hazard pointers". | |
4674 // | |
4675 // We use (2). | |
4676 // | |
4677 // TODO-FIXME: | |
4678 // 1. Reconcile Doug's JSR166 j.u.c park-unpark with the objectmonitor implementation. | |
4679 // 2. Consider wrapping the WaitForSingleObject(Ex) calls in SEH try/finally blocks | |
4680 // to recover from (or at least detect) the dreaded Windows 841176 bug. | |
4681 // 3. Collapse the interrupt_event, the JSR166 parker event, and the objectmonitor ParkEvent | |
4682 // into a single win32 CreateEvent() handle. | |
4683 // | |
4684 // _Event transitions in park() | |
4685 // -1 => -1 : illegal | |
4686 // 1 => 0 : pass - return immediately | |
4687 // 0 => -1 : block | |
4688 // | |
4689 // _Event serves as a restricted-range semaphore : | |
4690 // -1 : thread is blocked | |
4691 // 0 : neutral - thread is running or ready | |
4692 // 1 : signaled - thread is running or ready | |
4693 // | |
4694 // Another possible encoding of _Event would be | |
4695 // with explicit "PARKED" and "SIGNALED" bits. | |
4696 | |
4697 int os::PlatformEvent::park (jlong Millis) { | |
4698 guarantee (_ParkHandle != NULL , "Invariant") ; | |
4699 guarantee (Millis > 0 , "Invariant") ; | |
4700 int v ; | |
4701 | |
4702 // CONSIDER: defer assigning a CreateEvent() handle to the Event until | |
4703 // the initial park() operation. | |
4704 | |
4705 for (;;) { | |
4706 v = _Event ; | |
4707 if (Atomic::cmpxchg (v-1, &_Event, v) == v) break ; | |
4708 } | |
4709 guarantee ((v == 0) || (v == 1), "invariant") ; | |
4710 if (v != 0) return OS_OK ; | |
4711 | |
4712 // Do this the hard way by blocking ... | |
4713 // TODO: consider a brief spin here, gated on the success of recent | |
4714 // spin attempts by this thread. | |
4715 // | |
4716 // We decompose long timeouts into series of shorter timed waits. | |
4717 // Evidently large timo values passed in WaitForSingleObject() are problematic on some | |
4718 // versions of Windows. See EventWait() for details. This may be superstition. Or not. | |
4719 // We trust the WAIT_TIMEOUT indication and don't track the elapsed wait time | |
4720 // with os::javaTimeNanos(). Furthermore, we assume that spurious returns from | |
4721 // ::WaitForSingleObject() caused by latent ::setEvent() operations will tend | |
4722 // to happen early in the wait interval. Specifically, after a spurious wakeup (rv == | |
4723 // WAIT_OBJECT_0 but _Event is still < 0) we don't bother to recompute Millis to compensate | |
4724 // for the already waited time. This policy does not admit any new outcomes. | |
4725 // In the future, however, we might want to track the accumulated wait time and | |
4726 // adjust Millis accordingly if we encounter a spurious wakeup. | |
4727 | |
4728 const int MAXTIMEOUT = 0x10000000 ; | |
4729 DWORD rv = WAIT_TIMEOUT ; | |
4730 while (_Event < 0 && Millis > 0) { | |
4731 DWORD prd = Millis ; // set prd = MAX (Millis, MAXTIMEOUT) | |
4732 if (Millis > MAXTIMEOUT) { | |
4733 prd = MAXTIMEOUT ; | |
4734 } | |
4735 rv = ::WaitForSingleObject (_ParkHandle, prd) ; | |
4736 assert (rv == WAIT_OBJECT_0 || rv == WAIT_TIMEOUT, "WaitForSingleObject failed") ; | |
4737 if (rv == WAIT_TIMEOUT) { | |
4738 Millis -= prd ; | |
4739 } | |
4740 } | |
4741 v = _Event ; | |
4742 _Event = 0 ; | |
7629
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|
4743 // see comment at end of os::PlatformEvent::park() below: |
0 | 4744 OrderAccess::fence() ; |
4745 // If we encounter a nearly simultanous timeout expiry and unpark() | |
4746 // we return OS_OK indicating we awoke via unpark(). | |
4747 // Implementor's license -- returning OS_TIMEOUT would be equally valid, however. | |
4748 return (v >= 0) ? OS_OK : OS_TIMEOUT ; | |
4749 } | |
4750 | |
4751 void os::PlatformEvent::park () { | |
4752 guarantee (_ParkHandle != NULL, "Invariant") ; | |
4753 // Invariant: Only the thread associated with the Event/PlatformEvent | |
4754 // may call park(). | |
4755 int v ; | |
4756 for (;;) { | |
4757 v = _Event ; | |
4758 if (Atomic::cmpxchg (v-1, &_Event, v) == v) break ; | |
4759 } | |
4760 guarantee ((v == 0) || (v == 1), "invariant") ; | |
4761 if (v != 0) return ; | |
4762 | |
4763 // Do this the hard way by blocking ... | |
4764 // TODO: consider a brief spin here, gated on the success of recent | |
4765 // spin attempts by this thread. | |
4766 while (_Event < 0) { | |
4767 DWORD rv = ::WaitForSingleObject (_ParkHandle, INFINITE) ; | |
4768 assert (rv == WAIT_OBJECT_0, "WaitForSingleObject failed") ; | |
4769 } | |
4770 | |
4771 // Usually we'll find _Event == 0 at this point, but as | |
4772 // an optional optimization we clear it, just in case can | |
4773 // multiple unpark() operations drove _Event up to 1. | |
4774 _Event = 0 ; | |
4775 OrderAccess::fence() ; | |
4776 guarantee (_Event >= 0, "invariant") ; | |
4777 } | |
4778 | |
4779 void os::PlatformEvent::unpark() { | |
4780 guarantee (_ParkHandle != NULL, "Invariant") ; | |
7629
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|
4781 |
22ba8c8ce6a6
8004902: correctness fixes motivated by contended locking work (6607129)
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diff
changeset
|
4782 // Transitions for _Event: |
22ba8c8ce6a6
8004902: correctness fixes motivated by contended locking work (6607129)
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changeset
|
4783 // 0 :=> 1 |
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changeset
|
4784 // 1 :=> 1 |
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changeset
|
4785 // -1 :=> either 0 or 1; must signal target thread |
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|
4786 // That is, we can safely transition _Event from -1 to either |
22ba8c8ce6a6
8004902: correctness fixes motivated by contended locking work (6607129)
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changeset
|
4787 // 0 or 1. Forcing 1 is slightly more efficient for back-to-back |
22ba8c8ce6a6
8004902: correctness fixes motivated by contended locking work (6607129)
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changeset
|
4788 // unpark() calls. |
22ba8c8ce6a6
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changeset
|
4789 // See also: "Semaphores in Plan 9" by Mullender & Cox |
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8004902: correctness fixes motivated by contended locking work (6607129)
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changeset
|
4790 // |
22ba8c8ce6a6
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|
4791 // Note: Forcing a transition from "-1" to "1" on an unpark() means |
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changeset
|
4792 // that it will take two back-to-back park() calls for the owning |
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changeset
|
4793 // thread to block. This has the benefit of forcing a spurious return |
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changeset
|
4794 // from the first park() call after an unpark() call which will help |
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8004902: correctness fixes motivated by contended locking work (6607129)
dcubed
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diff
changeset
|
4795 // shake out uses of park() and unpark() without condition variables. |
22ba8c8ce6a6
8004902: correctness fixes motivated by contended locking work (6607129)
dcubed
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diff
changeset
|
4796 |
22ba8c8ce6a6
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changeset
|
4797 if (Atomic::xchg(1, &_Event) >= 0) return; |
22ba8c8ce6a6
8004902: correctness fixes motivated by contended locking work (6607129)
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changeset
|
4798 |
22ba8c8ce6a6
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|
4799 ::SetEvent(_ParkHandle); |
0 | 4800 } |
4801 | |
4802 | |
4803 // JSR166 | |
4804 // ------------------------------------------------------- | |
4805 | |
4806 /* | |
4807 * The Windows implementation of Park is very straightforward: Basic | |
4808 * operations on Win32 Events turn out to have the right semantics to | |
4809 * use them directly. We opportunistically resuse the event inherited | |
4810 * from Monitor. | |
4811 */ | |
4812 | |
4813 | |
4814 void Parker::park(bool isAbsolute, jlong time) { | |
4815 guarantee (_ParkEvent != NULL, "invariant") ; | |
4816 // First, demultiplex/decode time arguments | |
4817 if (time < 0) { // don't wait | |
4818 return; | |
4819 } | |
1865
1c352af0135d
6763959: java.util.concurrent.locks.LockSupport.parkUntil(0) blocks forever
acorn
parents:
1681
diff
changeset
|
4820 else if (time == 0 && !isAbsolute) { |
0 | 4821 time = INFINITE; |
4822 } | |
4823 else if (isAbsolute) { | |
4824 time -= os::javaTimeMillis(); // convert to relative time | |
4825 if (time <= 0) // already elapsed | |
4826 return; | |
4827 } | |
4828 else { // relative | |
4829 time /= 1000000; // Must coarsen from nanos to millis | |
4830 if (time == 0) // Wait for the minimal time unit if zero | |
4831 time = 1; | |
4832 } | |
4833 | |
4834 JavaThread* thread = (JavaThread*)(Thread::current()); | |
4835 assert(thread->is_Java_thread(), "Must be JavaThread"); | |
4836 JavaThread *jt = (JavaThread *)thread; | |
4837 | |
4838 // Don't wait if interrupted or already triggered | |
4839 if (Thread::is_interrupted(thread, false) || | |
4840 WaitForSingleObject(_ParkEvent, 0) == WAIT_OBJECT_0) { | |
4841 ResetEvent(_ParkEvent); | |
4842 return; | |
4843 } | |
4844 else { | |
4845 ThreadBlockInVM tbivm(jt); | |
4846 OSThreadWaitState osts(thread->osthread(), false /* not Object.wait() */); | |
4847 jt->set_suspend_equivalent(); | |
4848 | |
4849 WaitForSingleObject(_ParkEvent, time); | |
4850 ResetEvent(_ParkEvent); | |
4851 | |
4852 // If externally suspended while waiting, re-suspend | |
4853 if (jt->handle_special_suspend_equivalent_condition()) { | |
4854 jt->java_suspend_self(); | |
4855 } | |
4856 } | |
4857 } | |
4858 | |
4859 void Parker::unpark() { | |
4860 guarantee (_ParkEvent != NULL, "invariant") ; | |
4861 SetEvent(_ParkEvent); | |
4862 } | |
4863 | |
4864 // Run the specified command in a separate process. Return its exit value, | |
4865 // or -1 on failure (e.g. can't create a new process). | |
4866 int os::fork_and_exec(char* cmd) { | |
4867 STARTUPINFO si; | |
4868 PROCESS_INFORMATION pi; | |
4869 | |
4870 memset(&si, 0, sizeof(si)); | |
4871 si.cb = sizeof(si); | |
4872 memset(&pi, 0, sizeof(pi)); | |
4873 BOOL rslt = CreateProcess(NULL, // executable name - use command line | |
4874 cmd, // command line | |
4875 NULL, // process security attribute | |
4876 NULL, // thread security attribute | |
4877 TRUE, // inherits system handles | |
4878 0, // no creation flags | |
4879 NULL, // use parent's environment block | |
4880 NULL, // use parent's starting directory | |
4881 &si, // (in) startup information | |
4882 &pi); // (out) process information | |
4883 | |
4884 if (rslt) { | |
4885 // Wait until child process exits. | |
4886 WaitForSingleObject(pi.hProcess, INFINITE); | |
4887 | |
4888 DWORD exit_code; | |
4889 GetExitCodeProcess(pi.hProcess, &exit_code); | |
4890 | |
4891 // Close process and thread handles. | |
4892 CloseHandle(pi.hProcess); | |
4893 CloseHandle(pi.hThread); | |
4894 | |
4895 return (int)exit_code; | |
4896 } else { | |
4897 return -1; | |
4898 } | |
4899 } | |
4900 | |
4901 //-------------------------------------------------------------------------------------------------- | |
4902 // Non-product code | |
4903 | |
4904 static int mallocDebugIntervalCounter = 0; | |
4905 static int mallocDebugCounter = 0; | |
4906 bool os::check_heap(bool force) { | |
4907 if (++mallocDebugCounter < MallocVerifyStart && !force) return true; | |
4908 if (++mallocDebugIntervalCounter >= MallocVerifyInterval || force) { | |
4909 // Note: HeapValidate executes two hardware breakpoints when it finds something | |
4910 // wrong; at these points, eax contains the address of the offending block (I think). | |
4911 // To get to the exlicit error message(s) below, just continue twice. | |
4912 HANDLE heap = GetProcessHeap(); | |
4913 { HeapLock(heap); | |
4914 PROCESS_HEAP_ENTRY phe; | |
4915 phe.lpData = NULL; | |
4916 while (HeapWalk(heap, &phe) != 0) { | |
4917 if ((phe.wFlags & PROCESS_HEAP_ENTRY_BUSY) && | |
4918 !HeapValidate(heap, 0, phe.lpData)) { | |
4919 tty->print_cr("C heap has been corrupted (time: %d allocations)", mallocDebugCounter); | |
4920 tty->print_cr("corrupted block near address %#x, length %d", phe.lpData, phe.cbData); | |
4921 fatal("corrupted C heap"); | |
4922 } | |
4923 } | |
4750
b16494a69d3d
7126185: Clean up lasterror handling, add os::get_last_error()
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parents:
4720
diff
changeset
|
4924 DWORD err = GetLastError(); |
0 | 4925 if (err != ERROR_NO_MORE_ITEMS && err != ERROR_CALL_NOT_IMPLEMENTED) { |
1490
f03d0a26bf83
6888954: argument formatting for assert() and friends
jcoomes
parents:
1353
diff
changeset
|
4926 fatal(err_msg("heap walk aborted with error %d", err)); |
0 | 4927 } |
4928 HeapUnlock(heap); | |
4929 } | |
4930 mallocDebugIntervalCounter = 0; | |
4931 } | |
4932 return true; | |
4933 } | |
4934 | |
4935 | |
1681
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
parents:
1552
diff
changeset
|
4936 bool os::find(address addr, outputStream* st) { |
0 | 4937 // Nothing yet |
4938 return false; | |
4939 } | |
4940 | |
4941 LONG WINAPI os::win32::serialize_fault_filter(struct _EXCEPTION_POINTERS* e) { | |
4942 DWORD exception_code = e->ExceptionRecord->ExceptionCode; | |
4943 | |
4944 if ( exception_code == EXCEPTION_ACCESS_VIOLATION ) { | |
4945 JavaThread* thread = (JavaThread*)ThreadLocalStorage::get_thread_slow(); | |
4946 PEXCEPTION_RECORD exceptionRecord = e->ExceptionRecord; | |
4947 address addr = (address) exceptionRecord->ExceptionInformation[1]; | |
4948 | |
4949 if (os::is_memory_serialize_page(thread, addr)) | |
4950 return EXCEPTION_CONTINUE_EXECUTION; | |
4951 } | |
4952 | |
4953 return EXCEPTION_CONTINUE_SEARCH; | |
4954 } | |
4955 | |
1681
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
parents:
1552
diff
changeset
|
4956 // We don't build a headless jre for Windows |
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
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diff
changeset
|
4957 bool os::is_headless_jre() { return false; } |
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
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changeset
|
4958 |
8872 | 4959 static jint initSock() { |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
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1972
diff
changeset
|
4960 WSADATA wsadata; |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
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1972
diff
changeset
|
4961 |
3833
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
4962 if (!os::WinSock2Dll::WinSock2Available()) { |
8872 | 4963 jio_fprintf(stderr, "Could not load Winsock (error: %d)\n", |
3833
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
4964 ::GetLastError()); |
8872 | 4965 return JNI_ERR; |
4966 } | |
4967 | |
4968 if (os::WinSock2Dll::WSAStartup(MAKEWORD(2,2), &wsadata) != 0) { | |
4969 jio_fprintf(stderr, "Could not initialize Winsock (error: %d)\n", | |
4970 ::GetLastError()); | |
4971 return JNI_ERR; | |
4972 } | |
4973 return JNI_OK; | |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4974 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
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diff
changeset
|
4975 |
4717
11c26bfcf8c7
7091417: recvfrom's 6th input should be of type socklen_t
phh
parents:
4006
diff
changeset
|
4976 struct hostent* os::get_host_by_name(char* name) { |
3833
b1cbb0907b36
7016797: Hotspot: securely/restrictive load dlls and new API for loading system dlls
zgu
parents:
3800
diff
changeset
|
4977 return (struct hostent*)os::WinSock2Dll::gethostbyname(name); |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4978 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4979 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4980 int os::socket_close(int fd) { |
6044
ec15e8f6e4f1
7157695: Add windows implementation of socket interface
twisti
parents:
5903
diff
changeset
|
4981 return ::closesocket(fd); |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4982 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
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diff
changeset
|
4983 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4984 int os::socket_available(int fd, jint *pbytes) { |
6044
ec15e8f6e4f1
7157695: Add windows implementation of socket interface
twisti
parents:
5903
diff
changeset
|
4985 int ret = ::ioctlsocket(fd, FIONREAD, (u_long*)pbytes); |
ec15e8f6e4f1
7157695: Add windows implementation of socket interface
twisti
parents:
5903
diff
changeset
|
4986 return (ret < 0) ? 0 : 1; |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4987 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4988 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4989 int os::socket(int domain, int type, int protocol) { |
6044
ec15e8f6e4f1
7157695: Add windows implementation of socket interface
twisti
parents:
5903
diff
changeset
|
4990 return ::socket(domain, type, protocol); |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4991 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4992 |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4993 int os::listen(int fd, int count) { |
6044
ec15e8f6e4f1
7157695: Add windows implementation of socket interface
twisti
parents:
5903
diff
changeset
|
4994 return ::listen(fd, count); |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4995 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4996 |
4717
11c26bfcf8c7
7091417: recvfrom's 6th input should be of type socklen_t
phh
parents:
4006
diff
changeset
|
4997 int os::connect(int fd, struct sockaddr* him, socklen_t len) { |
6044
ec15e8f6e4f1
7157695: Add windows implementation of socket interface
twisti
parents:
5903
diff
changeset
|
4998 return ::connect(fd, him, len); |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
4999 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
5000 |
4717
11c26bfcf8c7
7091417: recvfrom's 6th input should be of type socklen_t
phh
parents:
4006
diff
changeset
|
5001 int os::accept(int fd, struct sockaddr* him, socklen_t* len) { |
6044
ec15e8f6e4f1
7157695: Add windows implementation of socket interface
twisti
parents:
5903
diff
changeset
|
5002 return ::accept(fd, him, len); |
1980
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
5003 } |
828eafbd85cc
6348631: remove the use of the HPI library from Hotspot
ikrylov
parents:
1972
diff
changeset
|
5004 |
4717
11c26bfcf8c7
7091417: recvfrom's 6th input should be of type socklen_t
phh
parents:
4006
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|
5005 int os::sendto(int fd, char* buf, size_t len, uint flags, |
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|
5006 struct sockaddr* to, socklen_t tolen) { |
6044
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|
5007 |
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|
5008 return ::sendto(fd, buf, (int)len, flags, to, tolen); |
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|
5009 } |
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|
5010 |
4717
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phh
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|
5011 int os::recvfrom(int fd, char *buf, size_t nBytes, uint flags, |
11c26bfcf8c7
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phh
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|
5012 sockaddr* from, socklen_t* fromlen) { |
6044
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|
5013 |
ec15e8f6e4f1
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|
5014 return ::recvfrom(fd, buf, (int)nBytes, flags, from, fromlen); |
1980
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|
5015 } |
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|
5016 |
4717
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phh
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|
5017 int os::recv(int fd, char* buf, size_t nBytes, uint flags) { |
6044
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5018 return ::recv(fd, buf, (int)nBytes, flags); |
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|
5019 } |
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|
5020 |
4717
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phh
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|
5021 int os::send(int fd, char* buf, size_t nBytes, uint flags) { |
6044
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|
5022 return ::send(fd, buf, (int)nBytes, flags); |
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|
5023 } |
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|
5024 |
4717
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phh
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|
5025 int os::raw_send(int fd, char* buf, size_t nBytes, uint flags) { |
6044
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|
5026 return ::send(fd, buf, (int)nBytes, flags); |
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|
5027 } |
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|
5028 |
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diff
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|
5029 int os::timeout(int fd, long timeout) { |
6044
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twisti
parents:
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diff
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|
5030 fd_set tbl; |
ec15e8f6e4f1
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twisti
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|
5031 struct timeval t; |
ec15e8f6e4f1
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diff
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|
5032 |
ec15e8f6e4f1
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|
5033 t.tv_sec = timeout / 1000; |
ec15e8f6e4f1
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|
5034 t.tv_usec = (timeout % 1000) * 1000; |
ec15e8f6e4f1
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|
5035 |
ec15e8f6e4f1
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|
5036 tbl.fd_count = 1; |
ec15e8f6e4f1
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|
5037 tbl.fd_array[0] = fd; |
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|
5038 |
ec15e8f6e4f1
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|
5039 return ::select(1, &tbl, 0, 0, &t); |
1980
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|
5040 } |
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|
5041 |
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|
5042 int os::get_host_name(char* name, int namelen) { |
6044
ec15e8f6e4f1
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twisti
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|
5043 return ::gethostname(name, namelen); |
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|
5044 } |
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|
5045 |
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|
5046 int os::socket_shutdown(int fd, int howto) { |
6044
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|
5047 return ::shutdown(fd, howto); |
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|
5048 } |
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|
5049 |
4717
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|
5050 int os::bind(int fd, struct sockaddr* him, socklen_t len) { |
6044
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|
5051 return ::bind(fd, him, len); |
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|
5052 } |
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|
5053 |
4717
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diff
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|
5054 int os::get_sock_name(int fd, struct sockaddr* him, socklen_t* len) { |
6044
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|
5055 return ::getsockname(fd, him, len); |
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|
5056 } |
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|
5057 |
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|
5058 int os::get_sock_opt(int fd, int level, int optname, |
4717
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|
5059 char* optval, socklen_t* optlen) { |
6044
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|
5060 return ::getsockopt(fd, level, optname, optval, optlen); |
1980
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|
5061 } |
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diff
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|
5062 |
828eafbd85cc
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diff
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|
5063 int os::set_sock_opt(int fd, int level, int optname, |
4717
11c26bfcf8c7
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phh
parents:
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diff
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|
5064 const char* optval, socklen_t optlen) { |
6044
ec15e8f6e4f1
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twisti
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|
5065 return ::setsockopt(fd, level, optname, optval, optlen); |
1980
828eafbd85cc
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|
5066 } |
3833
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|
5067 |
10405 | 5068 // WINDOWS CONTEXT Flags for THREAD_SAMPLING |
5069 #if defined(IA32) | |
5070 # define sampling_context_flags (CONTEXT_FULL | CONTEXT_FLOATING_POINT | CONTEXT_EXTENDED_REGISTERS) | |
5071 #elif defined (AMD64) | |
5072 # define sampling_context_flags (CONTEXT_FULL | CONTEXT_FLOATING_POINT) | |
5073 #endif | |
5074 | |
5075 // returns true if thread could be suspended, | |
5076 // false otherwise | |
5077 static bool do_suspend(HANDLE* h) { | |
5078 if (h != NULL) { | |
5079 if (SuspendThread(*h) != ~0) { | |
5080 return true; | |
5081 } | |
5082 } | |
5083 return false; | |
5084 } | |
5085 | |
5086 // resume the thread | |
5087 // calling resume on an active thread is a no-op | |
5088 static void do_resume(HANDLE* h) { | |
5089 if (h != NULL) { | |
5090 ResumeThread(*h); | |
5091 } | |
5092 } | |
5093 | |
5094 // retrieve a suspend/resume context capable handle | |
5095 // from the tid. Caller validates handle return value. | |
5096 void get_thread_handle_for_extended_context(HANDLE* h, OSThread::thread_id_t tid) { | |
5097 if (h != NULL) { | |
5098 *h = OpenThread(THREAD_SUSPEND_RESUME | THREAD_GET_CONTEXT | THREAD_QUERY_INFORMATION, FALSE, tid); | |
5099 } | |
5100 } | |
5101 | |
5102 // | |
5103 // Thread sampling implementation | |
5104 // | |
5105 void os::SuspendedThreadTask::internal_do_task() { | |
5106 CONTEXT ctxt; | |
5107 HANDLE h = NULL; | |
5108 | |
5109 // get context capable handle for thread | |
5110 get_thread_handle_for_extended_context(&h, _thread->osthread()->thread_id()); | |
5111 | |
5112 // sanity | |
5113 if (h == NULL || h == INVALID_HANDLE_VALUE) { | |
5114 return; | |
5115 } | |
5116 | |
5117 // suspend the thread | |
5118 if (do_suspend(&h)) { | |
5119 ctxt.ContextFlags = sampling_context_flags; | |
5120 // get thread context | |
5121 GetThreadContext(h, &ctxt); | |
5122 SuspendedThreadTaskContext context(_thread, &ctxt); | |
5123 // pass context to Thread Sampling impl | |
5124 do_task(context); | |
5125 // resume thread | |
5126 do_resume(&h); | |
5127 } | |
5128 | |
5129 // close handle | |
5130 CloseHandle(h); | |
5131 } | |
5132 | |
3833
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|
5133 |
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|
5134 // Kernel32 API |
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|
5135 typedef SIZE_T (WINAPI* GetLargePageMinimum_Fn)(void); |
3885 | 5136 typedef LPVOID (WINAPI *VirtualAllocExNuma_Fn) (HANDLE, LPVOID, SIZE_T, DWORD, DWORD, DWORD); |
5137 typedef BOOL (WINAPI *GetNumaHighestNodeNumber_Fn) (PULONG); | |
5138 typedef BOOL (WINAPI *GetNumaNodeProcessorMask_Fn) (UCHAR, PULONGLONG); | |
6197 | 5139 typedef USHORT (WINAPI* RtlCaptureStackBackTrace_Fn)(ULONG, ULONG, PVOID*, PULONG); |
3885 | 5140 |
3833
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|
5141 GetLargePageMinimum_Fn os::Kernel32Dll::_GetLargePageMinimum = NULL; |
3885 | 5142 VirtualAllocExNuma_Fn os::Kernel32Dll::_VirtualAllocExNuma = NULL; |
5143 GetNumaHighestNodeNumber_Fn os::Kernel32Dll::_GetNumaHighestNodeNumber = NULL; | |
5144 GetNumaNodeProcessorMask_Fn os::Kernel32Dll::_GetNumaNodeProcessorMask = NULL; | |
6197 | 5145 RtlCaptureStackBackTrace_Fn os::Kernel32Dll::_RtlCaptureStackBackTrace = NULL; |
5146 | |
5147 | |
3833
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|
5148 BOOL os::Kernel32Dll::initialized = FALSE; |
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|
5149 SIZE_T os::Kernel32Dll::GetLargePageMinimum() { |
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|
5150 assert(initialized && _GetLargePageMinimum != NULL, |
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|
5151 "GetLargePageMinimumAvailable() not yet called"); |
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|
5152 return _GetLargePageMinimum(); |
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|
5153 } |
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|
5154 |
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|
5155 BOOL os::Kernel32Dll::GetLargePageMinimumAvailable() { |
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|
5156 if (!initialized) { |
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|
5157 initialize(); |
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|
5158 } |
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|
5159 return _GetLargePageMinimum != NULL; |
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|
5160 } |
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|
5161 |
3885 | 5162 BOOL os::Kernel32Dll::NumaCallsAvailable() { |
5163 if (!initialized) { | |
5164 initialize(); | |
5165 } | |
5166 return _VirtualAllocExNuma != NULL; | |
5167 } | |
5168 | |
5169 LPVOID os::Kernel32Dll::VirtualAllocExNuma(HANDLE hProc, LPVOID addr, SIZE_T bytes, DWORD flags, DWORD prot, DWORD node) { | |
5170 assert(initialized && _VirtualAllocExNuma != NULL, | |
5171 "NUMACallsAvailable() not yet called"); | |
5172 | |
5173 return _VirtualAllocExNuma(hProc, addr, bytes, flags, prot, node); | |
5174 } | |
5175 | |
5176 BOOL os::Kernel32Dll::GetNumaHighestNodeNumber(PULONG ptr_highest_node_number) { | |
5177 assert(initialized && _GetNumaHighestNodeNumber != NULL, | |
5178 "NUMACallsAvailable() not yet called"); | |
5179 | |
5180 return _GetNumaHighestNodeNumber(ptr_highest_node_number); | |
5181 } | |
5182 | |
5183 BOOL os::Kernel32Dll::GetNumaNodeProcessorMask(UCHAR node, PULONGLONG proc_mask) { | |
5184 assert(initialized && _GetNumaNodeProcessorMask != NULL, | |
5185 "NUMACallsAvailable() not yet called"); | |
5186 | |
5187 return _GetNumaNodeProcessorMask(node, proc_mask); | |
5188 } | |
5189 | |
6197 | 5190 USHORT os::Kernel32Dll::RtlCaptureStackBackTrace(ULONG FrameToSkip, |
5191 ULONG FrameToCapture, PVOID* BackTrace, PULONG BackTraceHash) { | |
5192 if (!initialized) { | |
5193 initialize(); | |
5194 } | |
5195 | |
5196 if (_RtlCaptureStackBackTrace != NULL) { | |
5197 return _RtlCaptureStackBackTrace(FrameToSkip, FrameToCapture, | |
5198 BackTrace, BackTraceHash); | |
5199 } else { | |
5200 return 0; | |
5201 } | |
5202 } | |
3885 | 5203 |
5204 void os::Kernel32Dll::initializeCommon() { | |
5205 if (!initialized) { | |
5206 HMODULE handle = ::GetModuleHandle("Kernel32.dll"); | |
5207 assert(handle != NULL, "Just check"); | |
5208 _GetLargePageMinimum = (GetLargePageMinimum_Fn)::GetProcAddress(handle, "GetLargePageMinimum"); | |
5209 _VirtualAllocExNuma = (VirtualAllocExNuma_Fn)::GetProcAddress(handle, "VirtualAllocExNuma"); | |
5210 _GetNumaHighestNodeNumber = (GetNumaHighestNodeNumber_Fn)::GetProcAddress(handle, "GetNumaHighestNodeNumber"); | |
5211 _GetNumaNodeProcessorMask = (GetNumaNodeProcessorMask_Fn)::GetProcAddress(handle, "GetNumaNodeProcessorMask"); | |
6197 | 5212 _RtlCaptureStackBackTrace = (RtlCaptureStackBackTrace_Fn)::GetProcAddress(handle, "RtlCaptureStackBackTrace"); |
3885 | 5213 initialized = TRUE; |
5214 } | |
5215 } | |
5216 | |
5217 | |
3833
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5218 |
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5219 #ifndef JDK6_OR_EARLIER |
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5220 |
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|
5221 void os::Kernel32Dll::initialize() { |
3885 | 5222 initializeCommon(); |
3833
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5223 } |
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5224 |
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|
5225 |
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5226 // Kernel32 API |
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5227 inline BOOL os::Kernel32Dll::SwitchToThread() { |
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5228 return ::SwitchToThread(); |
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5229 } |
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5230 |
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5231 inline BOOL os::Kernel32Dll::SwitchToThreadAvailable() { |
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5232 return true; |
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5233 } |
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5234 |
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5235 // Help tools |
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5236 inline BOOL os::Kernel32Dll::HelpToolsAvailable() { |
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5237 return true; |
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5238 } |
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5239 |
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5240 inline HANDLE os::Kernel32Dll::CreateToolhelp32Snapshot(DWORD dwFlags,DWORD th32ProcessId) { |
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5241 return ::CreateToolhelp32Snapshot(dwFlags, th32ProcessId); |
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5242 } |
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5243 |
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5244 inline BOOL os::Kernel32Dll::Module32First(HANDLE hSnapshot,LPMODULEENTRY32 lpme) { |
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5245 return ::Module32First(hSnapshot, lpme); |
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5246 } |
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5247 |
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5248 inline BOOL os::Kernel32Dll::Module32Next(HANDLE hSnapshot,LPMODULEENTRY32 lpme) { |
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5249 return ::Module32Next(hSnapshot, lpme); |
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5250 } |
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5251 |
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5252 |
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5253 inline BOOL os::Kernel32Dll::GetNativeSystemInfoAvailable() { |
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5254 return true; |
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5255 } |
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5256 |
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5257 inline void os::Kernel32Dll::GetNativeSystemInfo(LPSYSTEM_INFO lpSystemInfo) { |
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5258 ::GetNativeSystemInfo(lpSystemInfo); |
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5259 } |
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5260 |
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5261 // PSAPI API |
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5262 inline BOOL os::PSApiDll::EnumProcessModules(HANDLE hProcess, HMODULE *lpModule, DWORD cb, LPDWORD lpcbNeeded) { |
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5263 return ::EnumProcessModules(hProcess, lpModule, cb, lpcbNeeded); |
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5264 } |
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|
5265 |
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5266 inline DWORD os::PSApiDll::GetModuleFileNameEx(HANDLE hProcess, HMODULE hModule, LPTSTR lpFilename, DWORD nSize) { |
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5267 return ::GetModuleFileNameEx(hProcess, hModule, lpFilename, nSize); |
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5268 } |
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|
5269 |
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5270 inline BOOL os::PSApiDll::GetModuleInformation(HANDLE hProcess, HMODULE hModule, LPMODULEINFO lpmodinfo, DWORD cb) { |
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5271 return ::GetModuleInformation(hProcess, hModule, lpmodinfo, cb); |
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5272 } |
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|
5273 |
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5274 inline BOOL os::PSApiDll::PSApiAvailable() { |
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5275 return true; |
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5276 } |
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|
5277 |
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|
5278 |
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5279 // WinSock2 API |
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5280 inline BOOL os::WinSock2Dll::WSAStartup(WORD wVersionRequested, LPWSADATA lpWSAData) { |
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5281 return ::WSAStartup(wVersionRequested, lpWSAData); |
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5282 } |
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|
5283 |
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5284 inline struct hostent* os::WinSock2Dll::gethostbyname(const char *name) { |
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5285 return ::gethostbyname(name); |
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5286 } |
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|
5287 |
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5288 inline BOOL os::WinSock2Dll::WinSock2Available() { |
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5289 return true; |
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5290 } |
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|
5291 |
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|
5292 // Advapi API |
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5293 inline BOOL os::Advapi32Dll::AdjustTokenPrivileges(HANDLE TokenHandle, |
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5294 BOOL DisableAllPrivileges, PTOKEN_PRIVILEGES NewState, DWORD BufferLength, |
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5295 PTOKEN_PRIVILEGES PreviousState, PDWORD ReturnLength) { |
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5296 return ::AdjustTokenPrivileges(TokenHandle, DisableAllPrivileges, NewState, |
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5297 BufferLength, PreviousState, ReturnLength); |
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5298 } |
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|
5299 |
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5300 inline BOOL os::Advapi32Dll::OpenProcessToken(HANDLE ProcessHandle, DWORD DesiredAccess, |
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5301 PHANDLE TokenHandle) { |
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5302 return ::OpenProcessToken(ProcessHandle, DesiredAccess, TokenHandle); |
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5303 } |
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|
5304 |
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|
5305 inline BOOL os::Advapi32Dll::LookupPrivilegeValue(LPCTSTR lpSystemName, LPCTSTR lpName, PLUID lpLuid) { |
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5306 return ::LookupPrivilegeValue(lpSystemName, lpName, lpLuid); |
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5307 } |
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|
5308 |
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|
5309 inline BOOL os::Advapi32Dll::AdvapiAvailable() { |
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5310 return true; |
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|
5311 } |
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|
5312 |
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|
5313 #else |
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5314 // Kernel32 API |
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5315 typedef BOOL (WINAPI* SwitchToThread_Fn)(void); |
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5316 typedef HANDLE (WINAPI* CreateToolhelp32Snapshot_Fn)(DWORD,DWORD); |
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5317 typedef BOOL (WINAPI* Module32First_Fn)(HANDLE,LPMODULEENTRY32); |
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5318 typedef BOOL (WINAPI* Module32Next_Fn)(HANDLE,LPMODULEENTRY32); |
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5319 typedef void (WINAPI* GetNativeSystemInfo_Fn)(LPSYSTEM_INFO); |
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|
5320 |
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5321 SwitchToThread_Fn os::Kernel32Dll::_SwitchToThread = NULL; |
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5322 CreateToolhelp32Snapshot_Fn os::Kernel32Dll::_CreateToolhelp32Snapshot = NULL; |
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5323 Module32First_Fn os::Kernel32Dll::_Module32First = NULL; |
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5324 Module32Next_Fn os::Kernel32Dll::_Module32Next = NULL; |
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5325 GetNativeSystemInfo_Fn os::Kernel32Dll::_GetNativeSystemInfo = NULL; |
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|
5326 |
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5327 void os::Kernel32Dll::initialize() { |
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5328 if (!initialized) { |
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5329 HMODULE handle = ::GetModuleHandle("Kernel32.dll"); |
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5330 assert(handle != NULL, "Just check"); |
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|
5331 |
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5332 _SwitchToThread = (SwitchToThread_Fn)::GetProcAddress(handle, "SwitchToThread"); |
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5333 _CreateToolhelp32Snapshot = (CreateToolhelp32Snapshot_Fn) |
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5334 ::GetProcAddress(handle, "CreateToolhelp32Snapshot"); |
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5335 _Module32First = (Module32First_Fn)::GetProcAddress(handle, "Module32First"); |
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5336 _Module32Next = (Module32Next_Fn)::GetProcAddress(handle, "Module32Next"); |
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5337 _GetNativeSystemInfo = (GetNativeSystemInfo_Fn)::GetProcAddress(handle, "GetNativeSystemInfo"); |
3885 | 5338 initializeCommon(); // resolve the functions that always need resolving |
3833
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5339 |
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5340 initialized = TRUE; |
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|
5341 } |
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5342 } |
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|
5343 |
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|
5344 BOOL os::Kernel32Dll::SwitchToThread() { |
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|
5345 assert(initialized && _SwitchToThread != NULL, |
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5346 "SwitchToThreadAvailable() not yet called"); |
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|
5347 return _SwitchToThread(); |
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|
5348 } |
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|
5349 |
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|
5350 |
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|
5351 BOOL os::Kernel32Dll::SwitchToThreadAvailable() { |
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5352 if (!initialized) { |
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|
5353 initialize(); |
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|
5354 } |
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|
5355 return _SwitchToThread != NULL; |
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5356 } |
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|
5357 |
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|
5358 // Help tools |
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|
5359 BOOL os::Kernel32Dll::HelpToolsAvailable() { |
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5360 if (!initialized) { |
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|
5361 initialize(); |
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|
5362 } |
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|
5363 return _CreateToolhelp32Snapshot != NULL && |
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|
5364 _Module32First != NULL && |
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|
5365 _Module32Next != NULL; |
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|
5366 } |
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|
5367 |
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|
5368 HANDLE os::Kernel32Dll::CreateToolhelp32Snapshot(DWORD dwFlags,DWORD th32ProcessId) { |
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|
5369 assert(initialized && _CreateToolhelp32Snapshot != NULL, |
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|
5370 "HelpToolsAvailable() not yet called"); |
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|
5371 |
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|
5372 return _CreateToolhelp32Snapshot(dwFlags, th32ProcessId); |
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|
5373 } |
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|
5374 |
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|
5375 BOOL os::Kernel32Dll::Module32First(HANDLE hSnapshot,LPMODULEENTRY32 lpme) { |
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|
5376 assert(initialized && _Module32First != NULL, |
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|
5377 "HelpToolsAvailable() not yet called"); |
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|
5378 |
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|
5379 return _Module32First(hSnapshot, lpme); |
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|
5380 } |
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|
5381 |
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|
5382 inline BOOL os::Kernel32Dll::Module32Next(HANDLE hSnapshot,LPMODULEENTRY32 lpme) { |
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|
5383 assert(initialized && _Module32Next != NULL, |
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|
5384 "HelpToolsAvailable() not yet called"); |
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|
5385 |
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|
5386 return _Module32Next(hSnapshot, lpme); |
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|
5387 } |
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|
5388 |
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|
5389 |
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|
5390 BOOL os::Kernel32Dll::GetNativeSystemInfoAvailable() { |
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|
5391 if (!initialized) { |
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|
5392 initialize(); |
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|
5393 } |
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|
5394 return _GetNativeSystemInfo != NULL; |
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|
5395 } |
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|
5396 |
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|
5397 void os::Kernel32Dll::GetNativeSystemInfo(LPSYSTEM_INFO lpSystemInfo) { |
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|
5398 assert(initialized && _GetNativeSystemInfo != NULL, |
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|
5399 "GetNativeSystemInfoAvailable() not yet called"); |
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|
5400 |
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|
5401 _GetNativeSystemInfo(lpSystemInfo); |
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|
5402 } |
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|
5403 |
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|
5404 // PSAPI API |
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|
5405 |
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|
5406 |
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|
5407 typedef BOOL (WINAPI *EnumProcessModules_Fn)(HANDLE, HMODULE *, DWORD, LPDWORD); |
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|
5408 typedef BOOL (WINAPI *GetModuleFileNameEx_Fn)(HANDLE, HMODULE, LPTSTR, DWORD);; |
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|
5409 typedef BOOL (WINAPI *GetModuleInformation_Fn)(HANDLE, HMODULE, LPMODULEINFO, DWORD); |
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|
5410 |
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|
5411 EnumProcessModules_Fn os::PSApiDll::_EnumProcessModules = NULL; |
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|
5412 GetModuleFileNameEx_Fn os::PSApiDll::_GetModuleFileNameEx = NULL; |
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|
5413 GetModuleInformation_Fn os::PSApiDll::_GetModuleInformation = NULL; |
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|
5414 BOOL os::PSApiDll::initialized = FALSE; |
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|
5415 |
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|
5416 void os::PSApiDll::initialize() { |
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|
5417 if (!initialized) { |
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|
5418 HMODULE handle = os::win32::load_Windows_dll("PSAPI.DLL", NULL, 0); |
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|
5419 if (handle != NULL) { |
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|
5420 _EnumProcessModules = (EnumProcessModules_Fn)::GetProcAddress(handle, |
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|
5421 "EnumProcessModules"); |
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|
5422 _GetModuleFileNameEx = (GetModuleFileNameEx_Fn)::GetProcAddress(handle, |
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|
5423 "GetModuleFileNameExA"); |
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|
5424 _GetModuleInformation = (GetModuleInformation_Fn)::GetProcAddress(handle, |
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|
5425 "GetModuleInformation"); |
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|
5426 } |
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|
5427 initialized = TRUE; |
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|
5428 } |
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|
5429 } |
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|
5430 |
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|
5431 |
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|
5432 |
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|
5433 BOOL os::PSApiDll::EnumProcessModules(HANDLE hProcess, HMODULE *lpModule, DWORD cb, LPDWORD lpcbNeeded) { |
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|
5434 assert(initialized && _EnumProcessModules != NULL, |
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|
5435 "PSApiAvailable() not yet called"); |
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|
5436 return _EnumProcessModules(hProcess, lpModule, cb, lpcbNeeded); |
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|
5437 } |
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|
5438 |
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|
5439 DWORD os::PSApiDll::GetModuleFileNameEx(HANDLE hProcess, HMODULE hModule, LPTSTR lpFilename, DWORD nSize) { |
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|
5440 assert(initialized && _GetModuleFileNameEx != NULL, |
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|
5441 "PSApiAvailable() not yet called"); |
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|
5442 return _GetModuleFileNameEx(hProcess, hModule, lpFilename, nSize); |
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|
5443 } |
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|
5444 |
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|
5445 BOOL os::PSApiDll::GetModuleInformation(HANDLE hProcess, HMODULE hModule, LPMODULEINFO lpmodinfo, DWORD cb) { |
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|
5446 assert(initialized && _GetModuleInformation != NULL, |
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|
5447 "PSApiAvailable() not yet called"); |
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|
5448 return _GetModuleInformation(hProcess, hModule, lpmodinfo, cb); |
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|
5449 } |
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|
5450 |
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|
5451 BOOL os::PSApiDll::PSApiAvailable() { |
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|
5452 if (!initialized) { |
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|
5453 initialize(); |
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|
5454 } |
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5455 return _EnumProcessModules != NULL && |
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|
5456 _GetModuleFileNameEx != NULL && |
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|
5457 _GetModuleInformation != NULL; |
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|
5458 } |
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|
5459 |
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|
5460 |
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|
5461 // WinSock2 API |
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5462 typedef int (PASCAL FAR* WSAStartup_Fn)(WORD, LPWSADATA); |
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5463 typedef struct hostent *(PASCAL FAR *gethostbyname_Fn)(...); |
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|
5464 |
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|
5465 WSAStartup_Fn os::WinSock2Dll::_WSAStartup = NULL; |
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5466 gethostbyname_Fn os::WinSock2Dll::_gethostbyname = NULL; |
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5467 BOOL os::WinSock2Dll::initialized = FALSE; |
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|
5468 |
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|
5469 void os::WinSock2Dll::initialize() { |
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5470 if (!initialized) { |
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5471 HMODULE handle = os::win32::load_Windows_dll("ws2_32.dll", NULL, 0); |
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5472 if (handle != NULL) { |
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5473 _WSAStartup = (WSAStartup_Fn)::GetProcAddress(handle, "WSAStartup"); |
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5474 _gethostbyname = (gethostbyname_Fn)::GetProcAddress(handle, "gethostbyname"); |
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|
5475 } |
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|
5476 initialized = TRUE; |
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|
5477 } |
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|
5478 } |
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|
5479 |
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|
5480 |
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|
5481 BOOL os::WinSock2Dll::WSAStartup(WORD wVersionRequested, LPWSADATA lpWSAData) { |
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|
5482 assert(initialized && _WSAStartup != NULL, |
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|
5483 "WinSock2Available() not yet called"); |
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5484 return _WSAStartup(wVersionRequested, lpWSAData); |
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|
5485 } |
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|
5486 |
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|
5487 struct hostent* os::WinSock2Dll::gethostbyname(const char *name) { |
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|
5488 assert(initialized && _gethostbyname != NULL, |
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|
5489 "WinSock2Available() not yet called"); |
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|
5490 return _gethostbyname(name); |
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|
5491 } |
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|
5492 |
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|
5493 BOOL os::WinSock2Dll::WinSock2Available() { |
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|
5494 if (!initialized) { |
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|
5495 initialize(); |
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|
5496 } |
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5497 return _WSAStartup != NULL && |
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|
5498 _gethostbyname != NULL; |
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|
5499 } |
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|
5500 |
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|
5501 typedef BOOL (WINAPI *AdjustTokenPrivileges_Fn)(HANDLE, BOOL, PTOKEN_PRIVILEGES, DWORD, PTOKEN_PRIVILEGES, PDWORD); |
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|
5502 typedef BOOL (WINAPI *OpenProcessToken_Fn)(HANDLE, DWORD, PHANDLE); |
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|
5503 typedef BOOL (WINAPI *LookupPrivilegeValue_Fn)(LPCTSTR, LPCTSTR, PLUID); |
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|
5504 |
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|
5505 AdjustTokenPrivileges_Fn os::Advapi32Dll::_AdjustTokenPrivileges = NULL; |
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|
5506 OpenProcessToken_Fn os::Advapi32Dll::_OpenProcessToken = NULL; |
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|
5507 LookupPrivilegeValue_Fn os::Advapi32Dll::_LookupPrivilegeValue = NULL; |
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|
5508 BOOL os::Advapi32Dll::initialized = FALSE; |
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|
5509 |
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|
5510 void os::Advapi32Dll::initialize() { |
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|
5511 if (!initialized) { |
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|
5512 HMODULE handle = os::win32::load_Windows_dll("advapi32.dll", NULL, 0); |
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5513 if (handle != NULL) { |
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|
5514 _AdjustTokenPrivileges = (AdjustTokenPrivileges_Fn)::GetProcAddress(handle, |
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|
5515 "AdjustTokenPrivileges"); |
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5516 _OpenProcessToken = (OpenProcessToken_Fn)::GetProcAddress(handle, |
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|
5517 "OpenProcessToken"); |
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|
5518 _LookupPrivilegeValue = (LookupPrivilegeValue_Fn)::GetProcAddress(handle, |
3834
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|
5519 "LookupPrivilegeValueA"); |
3833
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|
5520 } |
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|
5521 initialized = TRUE; |
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|
5522 } |
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|
5523 } |
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|
5524 |
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|
5525 BOOL os::Advapi32Dll::AdjustTokenPrivileges(HANDLE TokenHandle, |
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|
5526 BOOL DisableAllPrivileges, PTOKEN_PRIVILEGES NewState, DWORD BufferLength, |
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5527 PTOKEN_PRIVILEGES PreviousState, PDWORD ReturnLength) { |
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|
5528 assert(initialized && _AdjustTokenPrivileges != NULL, |
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|
5529 "AdvapiAvailable() not yet called"); |
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5530 return _AdjustTokenPrivileges(TokenHandle, DisableAllPrivileges, NewState, |
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|
5531 BufferLength, PreviousState, ReturnLength); |
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|
5532 } |
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|
5533 |
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|
5534 BOOL os::Advapi32Dll::OpenProcessToken(HANDLE ProcessHandle, DWORD DesiredAccess, |
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5535 PHANDLE TokenHandle) { |
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|
5536 assert(initialized && _OpenProcessToken != NULL, |
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5537 "AdvapiAvailable() not yet called"); |
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5538 return _OpenProcessToken(ProcessHandle, DesiredAccess, TokenHandle); |
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5539 } |
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|
5540 |
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|
5541 BOOL os::Advapi32Dll::LookupPrivilegeValue(LPCTSTR lpSystemName, LPCTSTR lpName, PLUID lpLuid) { |
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5542 assert(initialized && _LookupPrivilegeValue != NULL, |
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5543 "AdvapiAvailable() not yet called"); |
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5544 return _LookupPrivilegeValue(lpSystemName, lpName, lpLuid); |
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5545 } |
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|
5546 |
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|
5547 BOOL os::Advapi32Dll::AdvapiAvailable() { |
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5548 if (!initialized) { |
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|
5549 initialize(); |
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5550 } |
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5551 return _AdjustTokenPrivileges != NULL && |
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|
5552 _OpenProcessToken != NULL && |
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5553 _LookupPrivilegeValue != NULL; |
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5554 } |
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|
5555 |
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|
5556 #endif |