arguments.cpp revision 6136:37d146c88149
1/*
2 * Copyright (c) 1997, 2014, Oracle and/or its affiliates. All rights reserved.
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 *
19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
20 * or visit www.oracle.com if you need additional information or have any
21 * questions.
22 *
23 */
24
25#include "precompiled.hpp"
26#include "classfile/javaAssertions.hpp"
27#include "classfile/symbolTable.hpp"
28#include "compiler/compilerOracle.hpp"
29#include "memory/allocation.inline.hpp"
30#include "memory/cardTableRS.hpp"
31#include "memory/genCollectedHeap.hpp"
32#include "memory/referenceProcessor.hpp"
33#include "memory/universe.inline.hpp"
34#include "oops/oop.inline.hpp"
35#include "prims/jvmtiExport.hpp"
36#include "runtime/arguments.hpp"
37#include "runtime/globals_extension.hpp"
38#include "runtime/java.hpp"
39#include "services/management.hpp"
40#include "services/memTracker.hpp"
41#include "utilities/defaultStream.hpp"
42#include "utilities/macros.hpp"
43#include "utilities/taskqueue.hpp"
44#ifdef TARGET_OS_FAMILY_linux
45# include "os_linux.inline.hpp"
46#endif
47#ifdef TARGET_OS_FAMILY_solaris
48# include "os_solaris.inline.hpp"
49#endif
50#ifdef TARGET_OS_FAMILY_windows
51# include "os_windows.inline.hpp"
52#endif
53#ifdef TARGET_OS_FAMILY_aix
54# include "os_aix.inline.hpp"
55#endif
56#ifdef TARGET_OS_FAMILY_bsd
57# include "os_bsd.inline.hpp"
58#endif
59#if INCLUDE_ALL_GCS
60#include "gc_implementation/concurrentMarkSweep/compactibleFreeListSpace.hpp"
61#include "gc_implementation/g1/g1CollectedHeap.inline.hpp"
62#include "gc_implementation/parallelScavenge/parallelScavengeHeap.hpp"
63#endif // INCLUDE_ALL_GCS
64
65// Note: This is a special bug reporting site for the JVM
66#define DEFAULT_VENDOR_URL_BUG "http://bugreport.sun.com/bugreport/crash.jsp"
67#define DEFAULT_JAVA_LAUNCHER  "generic"
68
69// Disable options not supported in this release, with a warning if they
70// were explicitly requested on the command-line
71#define UNSUPPORTED_OPTION(opt, description)                    \
72do {                                                            \
73  if (opt) {                                                    \
74    if (FLAG_IS_CMDLINE(opt)) {                                 \
75      warning(description " is disabled in this release.");     \
76    }                                                           \
77    FLAG_SET_DEFAULT(opt, false);                               \
78  }                                                             \
79} while(0)
80
81#define UNSUPPORTED_GC_OPTION(gc)                                     \
82do {                                                                  \
83  if (gc) {                                                           \
84    if (FLAG_IS_CMDLINE(gc)) {                                        \
85      warning(#gc " is not supported in this VM.  Using Serial GC."); \
86    }                                                                 \
87    FLAG_SET_DEFAULT(gc, false);                                      \
88  }                                                                   \
89} while(0)
90
91char**  Arguments::_jvm_flags_array             = NULL;
92int     Arguments::_num_jvm_flags               = 0;
93char**  Arguments::_jvm_args_array              = NULL;
94int     Arguments::_num_jvm_args                = 0;
95char*  Arguments::_java_command                 = NULL;
96SystemProperty* Arguments::_system_properties   = NULL;
97const char*  Arguments::_gc_log_filename        = NULL;
98bool   Arguments::_has_profile                  = false;
99size_t Arguments::_conservative_max_heap_alignment = 0;
100uintx  Arguments::_min_heap_size                = 0;
101Arguments::Mode Arguments::_mode                = _mixed;
102bool   Arguments::_java_compiler                = false;
103bool   Arguments::_xdebug_mode                  = false;
104const char*  Arguments::_java_vendor_url_bug    = DEFAULT_VENDOR_URL_BUG;
105const char*  Arguments::_sun_java_launcher      = DEFAULT_JAVA_LAUNCHER;
106int    Arguments::_sun_java_launcher_pid        = -1;
107bool   Arguments::_sun_java_launcher_is_altjvm  = false;
108
109// These parameters are reset in method parse_vm_init_args(JavaVMInitArgs*)
110bool   Arguments::_AlwaysCompileLoopMethods     = AlwaysCompileLoopMethods;
111bool   Arguments::_UseOnStackReplacement        = UseOnStackReplacement;
112bool   Arguments::_BackgroundCompilation        = BackgroundCompilation;
113bool   Arguments::_ClipInlining                 = ClipInlining;
114
115char*  Arguments::SharedArchivePath             = NULL;
116
117AgentLibraryList Arguments::_libraryList;
118AgentLibraryList Arguments::_agentList;
119
120abort_hook_t     Arguments::_abort_hook         = NULL;
121exit_hook_t      Arguments::_exit_hook          = NULL;
122vfprintf_hook_t  Arguments::_vfprintf_hook      = NULL;
123
124
125SystemProperty *Arguments::_java_ext_dirs = NULL;
126SystemProperty *Arguments::_java_endorsed_dirs = NULL;
127SystemProperty *Arguments::_sun_boot_library_path = NULL;
128SystemProperty *Arguments::_java_library_path = NULL;
129SystemProperty *Arguments::_java_home = NULL;
130SystemProperty *Arguments::_java_class_path = NULL;
131SystemProperty *Arguments::_sun_boot_class_path = NULL;
132
133char* Arguments::_meta_index_path = NULL;
134char* Arguments::_meta_index_dir = NULL;
135
136// Check if head of 'option' matches 'name', and sets 'tail' remaining part of option string
137
138static bool match_option(const JavaVMOption *option, const char* name,
139                         const char** tail) {
140  int len = (int)strlen(name);
141  if (strncmp(option->optionString, name, len) == 0) {
142    *tail = option->optionString + len;
143    return true;
144  } else {
145    return false;
146  }
147}
148
149static void logOption(const char* opt) {
150  if (PrintVMOptions) {
151    jio_fprintf(defaultStream::output_stream(), "VM option '%s'\n", opt);
152  }
153}
154
155// Process java launcher properties.
156void Arguments::process_sun_java_launcher_properties(JavaVMInitArgs* args) {
157  // See if sun.java.launcher, sun.java.launcher.is_altjvm or
158  // sun.java.launcher.pid is defined.
159  // Must do this before setting up other system properties,
160  // as some of them may depend on launcher type.
161  for (int index = 0; index < args->nOptions; index++) {
162    const JavaVMOption* option = args->options + index;
163    const char* tail;
164
165    if (match_option(option, "-Dsun.java.launcher=", &tail)) {
166      process_java_launcher_argument(tail, option->extraInfo);
167      continue;
168    }
169    if (match_option(option, "-Dsun.java.launcher.is_altjvm=", &tail)) {
170      if (strcmp(tail, "true") == 0) {
171        _sun_java_launcher_is_altjvm = true;
172      }
173      continue;
174    }
175    if (match_option(option, "-Dsun.java.launcher.pid=", &tail)) {
176      _sun_java_launcher_pid = atoi(tail);
177      continue;
178    }
179  }
180}
181
182// Initialize system properties key and value.
183void Arguments::init_system_properties() {
184
185  PropertyList_add(&_system_properties, new SystemProperty("java.vm.specification.name",
186                                                                 "Java Virtual Machine Specification",  false));
187  PropertyList_add(&_system_properties, new SystemProperty("java.vm.version", VM_Version::vm_release(),  false));
188  PropertyList_add(&_system_properties, new SystemProperty("java.vm.name", VM_Version::vm_name(),  false));
189  PropertyList_add(&_system_properties, new SystemProperty("java.vm.info", VM_Version::vm_info_string(),  true));
190
191  // Following are JVMTI agent writable properties.
192  // Properties values are set to NULL and they are
193  // os specific they are initialized in os::init_system_properties_values().
194  _java_ext_dirs = new SystemProperty("java.ext.dirs", NULL,  true);
195  _java_endorsed_dirs = new SystemProperty("java.endorsed.dirs", NULL,  true);
196  _sun_boot_library_path = new SystemProperty("sun.boot.library.path", NULL,  true);
197  _java_library_path = new SystemProperty("java.library.path", NULL,  true);
198  _java_home =  new SystemProperty("java.home", NULL,  true);
199  _sun_boot_class_path = new SystemProperty("sun.boot.class.path", NULL,  true);
200
201  _java_class_path = new SystemProperty("java.class.path", "",  true);
202
203  // Add to System Property list.
204  PropertyList_add(&_system_properties, _java_ext_dirs);
205  PropertyList_add(&_system_properties, _java_endorsed_dirs);
206  PropertyList_add(&_system_properties, _sun_boot_library_path);
207  PropertyList_add(&_system_properties, _java_library_path);
208  PropertyList_add(&_system_properties, _java_home);
209  PropertyList_add(&_system_properties, _java_class_path);
210  PropertyList_add(&_system_properties, _sun_boot_class_path);
211
212  // Set OS specific system properties values
213  os::init_system_properties_values();
214}
215
216
217  // Update/Initialize System properties after JDK version number is known
218void Arguments::init_version_specific_system_properties() {
219  enum { bufsz = 16 };
220  char buffer[bufsz];
221  const char* spec_vendor = "Sun Microsystems Inc.";
222  uint32_t spec_version = 0;
223
224  if (JDK_Version::is_gte_jdk17x_version()) {
225    spec_vendor = "Oracle Corporation";
226    spec_version = JDK_Version::current().major_version();
227  }
228  jio_snprintf(buffer, bufsz, "1." UINT32_FORMAT, spec_version);
229
230  PropertyList_add(&_system_properties,
231      new SystemProperty("java.vm.specification.vendor",  spec_vendor, false));
232  PropertyList_add(&_system_properties,
233      new SystemProperty("java.vm.specification.version", buffer, false));
234  PropertyList_add(&_system_properties,
235      new SystemProperty("java.vm.vendor", VM_Version::vm_vendor(),  false));
236}
237
238/**
239 * Provide a slightly more user-friendly way of eliminating -XX flags.
240 * When a flag is eliminated, it can be added to this list in order to
241 * continue accepting this flag on the command-line, while issuing a warning
242 * and ignoring the value.  Once the JDK version reaches the 'accept_until'
243 * limit, we flatly refuse to admit the existence of the flag.  This allows
244 * a flag to die correctly over JDK releases using HSX.
245 */
246typedef struct {
247  const char* name;
248  JDK_Version obsoleted_in; // when the flag went away
249  JDK_Version accept_until; // which version to start denying the existence
250} ObsoleteFlag;
251
252static ObsoleteFlag obsolete_jvm_flags[] = {
253  { "UseTrainGC",                    JDK_Version::jdk(5), JDK_Version::jdk(7) },
254  { "UseSpecialLargeObjectHandling", JDK_Version::jdk(5), JDK_Version::jdk(7) },
255  { "UseOversizedCarHandling",       JDK_Version::jdk(5), JDK_Version::jdk(7) },
256  { "TraceCarAllocation",            JDK_Version::jdk(5), JDK_Version::jdk(7) },
257  { "PrintTrainGCProcessingStats",   JDK_Version::jdk(5), JDK_Version::jdk(7) },
258  { "LogOfCarSpaceSize",             JDK_Version::jdk(5), JDK_Version::jdk(7) },
259  { "OversizedCarThreshold",         JDK_Version::jdk(5), JDK_Version::jdk(7) },
260  { "MinTickInterval",               JDK_Version::jdk(5), JDK_Version::jdk(7) },
261  { "DefaultTickInterval",           JDK_Version::jdk(5), JDK_Version::jdk(7) },
262  { "MaxTickInterval",               JDK_Version::jdk(5), JDK_Version::jdk(7) },
263  { "DelayTickAdjustment",           JDK_Version::jdk(5), JDK_Version::jdk(7) },
264  { "ProcessingToTenuringRatio",     JDK_Version::jdk(5), JDK_Version::jdk(7) },
265  { "MinTrainLength",                JDK_Version::jdk(5), JDK_Version::jdk(7) },
266  { "AppendRatio",         JDK_Version::jdk_update(6,10), JDK_Version::jdk(7) },
267  { "DefaultMaxRAM",       JDK_Version::jdk_update(6,18), JDK_Version::jdk(7) },
268  { "DefaultInitialRAMFraction",
269                           JDK_Version::jdk_update(6,18), JDK_Version::jdk(7) },
270  { "UseDepthFirstScavengeOrder",
271                           JDK_Version::jdk_update(6,22), JDK_Version::jdk(7) },
272  { "HandlePromotionFailure",
273                           JDK_Version::jdk_update(6,24), JDK_Version::jdk(8) },
274  { "MaxLiveObjectEvacuationRatio",
275                           JDK_Version::jdk_update(6,24), JDK_Version::jdk(8) },
276  { "ForceSharedSpaces",   JDK_Version::jdk_update(6,25), JDK_Version::jdk(8) },
277  { "UseParallelOldGCCompacting",
278                           JDK_Version::jdk_update(6,27), JDK_Version::jdk(8) },
279  { "UseParallelDensePrefixUpdate",
280                           JDK_Version::jdk_update(6,27), JDK_Version::jdk(8) },
281  { "UseParallelOldGCDensePrefix",
282                           JDK_Version::jdk_update(6,27), JDK_Version::jdk(8) },
283  { "AllowTransitionalJSR292",       JDK_Version::jdk(7), JDK_Version::jdk(8) },
284  { "UseCompressedStrings",          JDK_Version::jdk(7), JDK_Version::jdk(8) },
285  { "CMSPermGenPrecleaningEnabled", JDK_Version::jdk(8),  JDK_Version::jdk(9) },
286  { "CMSTriggerPermRatio", JDK_Version::jdk(8),  JDK_Version::jdk(9) },
287  { "CMSInitiatingPermOccupancyFraction", JDK_Version::jdk(8),  JDK_Version::jdk(9) },
288  { "AdaptivePermSizeWeight", JDK_Version::jdk(8),  JDK_Version::jdk(9) },
289  { "PermGenPadding", JDK_Version::jdk(8),  JDK_Version::jdk(9) },
290  { "PermMarkSweepDeadRatio", JDK_Version::jdk(8),  JDK_Version::jdk(9) },
291  { "PermSize", JDK_Version::jdk(8),  JDK_Version::jdk(9) },
292  { "MaxPermSize", JDK_Version::jdk(8),  JDK_Version::jdk(9) },
293  { "MinPermHeapExpansion", JDK_Version::jdk(8),  JDK_Version::jdk(9) },
294  { "MaxPermHeapExpansion", JDK_Version::jdk(8),  JDK_Version::jdk(9) },
295  { "CMSRevisitStackSize",           JDK_Version::jdk(8), JDK_Version::jdk(9) },
296  { "PrintRevisitStats",             JDK_Version::jdk(8), JDK_Version::jdk(9) },
297  { "UseVectoredExceptions",         JDK_Version::jdk(8), JDK_Version::jdk(9) },
298  { "UseSplitVerifier",              JDK_Version::jdk(8), JDK_Version::jdk(9) },
299  { "UseISM",                        JDK_Version::jdk(8), JDK_Version::jdk(9) },
300  { "UsePermISM",                    JDK_Version::jdk(8), JDK_Version::jdk(9) },
301  { "UseMPSS",                       JDK_Version::jdk(8), JDK_Version::jdk(9) },
302  { "UseStringCache",                JDK_Version::jdk(8), JDK_Version::jdk(9) },
303  { "UseOldInlining",                JDK_Version::jdk(9), JDK_Version::jdk(10) },
304#ifdef PRODUCT
305  { "DesiredMethodLimit",
306                           JDK_Version::jdk_update(7, 2), JDK_Version::jdk(8) },
307#endif // PRODUCT
308  { "UseVMInterruptibleIO",          JDK_Version::jdk(8), JDK_Version::jdk(9) },
309  { NULL, JDK_Version(0), JDK_Version(0) }
310};
311
312// Returns true if the flag is obsolete and fits into the range specified
313// for being ignored.  In the case that the flag is ignored, the 'version'
314// value is filled in with the version number when the flag became
315// obsolete so that that value can be displayed to the user.
316bool Arguments::is_newly_obsolete(const char *s, JDK_Version* version) {
317  int i = 0;
318  assert(version != NULL, "Must provide a version buffer");
319  while (obsolete_jvm_flags[i].name != NULL) {
320    const ObsoleteFlag& flag_status = obsolete_jvm_flags[i];
321    // <flag>=xxx form
322    // [-|+]<flag> form
323    if ((strncmp(flag_status.name, s, strlen(flag_status.name)) == 0) ||
324        ((s[0] == '+' || s[0] == '-') &&
325        (strncmp(flag_status.name, &s[1], strlen(flag_status.name)) == 0))) {
326      if (JDK_Version::current().compare(flag_status.accept_until) == -1) {
327          *version = flag_status.obsoleted_in;
328          return true;
329      }
330    }
331    i++;
332  }
333  return false;
334}
335
336// Constructs the system class path (aka boot class path) from the following
337// components, in order:
338//
339//     prefix           // from -Xbootclasspath/p:...
340//     endorsed         // the expansion of -Djava.endorsed.dirs=...
341//     base             // from os::get_system_properties() or -Xbootclasspath=
342//     suffix           // from -Xbootclasspath/a:...
343//
344// java.endorsed.dirs is a list of directories; any jar or zip files in the
345// directories are added to the sysclasspath just before the base.
346//
347// This could be AllStatic, but it isn't needed after argument processing is
348// complete.
349class SysClassPath: public StackObj {
350public:
351  SysClassPath(const char* base);
352  ~SysClassPath();
353
354  inline void set_base(const char* base);
355  inline void add_prefix(const char* prefix);
356  inline void add_suffix_to_prefix(const char* suffix);
357  inline void add_suffix(const char* suffix);
358  inline void reset_path(const char* base);
359
360  // Expand the jar/zip files in each directory listed by the java.endorsed.dirs
361  // property.  Must be called after all command-line arguments have been
362  // processed (in particular, -Djava.endorsed.dirs=...) and before calling
363  // combined_path().
364  void expand_endorsed();
365
366  inline const char* get_base()     const { return _items[_scp_base]; }
367  inline const char* get_prefix()   const { return _items[_scp_prefix]; }
368  inline const char* get_suffix()   const { return _items[_scp_suffix]; }
369  inline const char* get_endorsed() const { return _items[_scp_endorsed]; }
370
371  // Combine all the components into a single c-heap-allocated string; caller
372  // must free the string if/when no longer needed.
373  char* combined_path();
374
375private:
376  // Utility routines.
377  static char* add_to_path(const char* path, const char* str, bool prepend);
378  static char* add_jars_to_path(char* path, const char* directory);
379
380  inline void reset_item_at(int index);
381
382  // Array indices for the items that make up the sysclasspath.  All except the
383  // base are allocated in the C heap and freed by this class.
384  enum {
385    _scp_prefix,        // from -Xbootclasspath/p:...
386    _scp_endorsed,      // the expansion of -Djava.endorsed.dirs=...
387    _scp_base,          // the default sysclasspath
388    _scp_suffix,        // from -Xbootclasspath/a:...
389    _scp_nitems         // the number of items, must be last.
390  };
391
392  const char* _items[_scp_nitems];
393  DEBUG_ONLY(bool _expansion_done;)
394};
395
396SysClassPath::SysClassPath(const char* base) {
397  memset(_items, 0, sizeof(_items));
398  _items[_scp_base] = base;
399  DEBUG_ONLY(_expansion_done = false;)
400}
401
402SysClassPath::~SysClassPath() {
403  // Free everything except the base.
404  for (int i = 0; i < _scp_nitems; ++i) {
405    if (i != _scp_base) reset_item_at(i);
406  }
407  DEBUG_ONLY(_expansion_done = false;)
408}
409
410inline void SysClassPath::set_base(const char* base) {
411  _items[_scp_base] = base;
412}
413
414inline void SysClassPath::add_prefix(const char* prefix) {
415  _items[_scp_prefix] = add_to_path(_items[_scp_prefix], prefix, true);
416}
417
418inline void SysClassPath::add_suffix_to_prefix(const char* suffix) {
419  _items[_scp_prefix] = add_to_path(_items[_scp_prefix], suffix, false);
420}
421
422inline void SysClassPath::add_suffix(const char* suffix) {
423  _items[_scp_suffix] = add_to_path(_items[_scp_suffix], suffix, false);
424}
425
426inline void SysClassPath::reset_item_at(int index) {
427  assert(index < _scp_nitems && index != _scp_base, "just checking");
428  if (_items[index] != NULL) {
429    FREE_C_HEAP_ARRAY(char, _items[index], mtInternal);
430    _items[index] = NULL;
431  }
432}
433
434inline void SysClassPath::reset_path(const char* base) {
435  // Clear the prefix and suffix.
436  reset_item_at(_scp_prefix);
437  reset_item_at(_scp_suffix);
438  set_base(base);
439}
440
441//------------------------------------------------------------------------------
442
443void SysClassPath::expand_endorsed() {
444  assert(_items[_scp_endorsed] == NULL, "can only be called once.");
445
446  const char* path = Arguments::get_property("java.endorsed.dirs");
447  if (path == NULL) {
448    path = Arguments::get_endorsed_dir();
449    assert(path != NULL, "no default for java.endorsed.dirs");
450  }
451
452  char* expanded_path = NULL;
453  const char separator = *os::path_separator();
454  const char* const end = path + strlen(path);
455  while (path < end) {
456    const char* tmp_end = strchr(path, separator);
457    if (tmp_end == NULL) {
458      expanded_path = add_jars_to_path(expanded_path, path);
459      path = end;
460    } else {
461      char* dirpath = NEW_C_HEAP_ARRAY(char, tmp_end - path + 1, mtInternal);
462      memcpy(dirpath, path, tmp_end - path);
463      dirpath[tmp_end - path] = '\0';
464      expanded_path = add_jars_to_path(expanded_path, dirpath);
465      FREE_C_HEAP_ARRAY(char, dirpath, mtInternal);
466      path = tmp_end + 1;
467    }
468  }
469  _items[_scp_endorsed] = expanded_path;
470  DEBUG_ONLY(_expansion_done = true;)
471}
472
473// Combine the bootclasspath elements, some of which may be null, into a single
474// c-heap-allocated string.
475char* SysClassPath::combined_path() {
476  assert(_items[_scp_base] != NULL, "empty default sysclasspath");
477  assert(_expansion_done, "must call expand_endorsed() first.");
478
479  size_t lengths[_scp_nitems];
480  size_t total_len = 0;
481
482  const char separator = *os::path_separator();
483
484  // Get the lengths.
485  int i;
486  for (i = 0; i < _scp_nitems; ++i) {
487    if (_items[i] != NULL) {
488      lengths[i] = strlen(_items[i]);
489      // Include space for the separator char (or a NULL for the last item).
490      total_len += lengths[i] + 1;
491    }
492  }
493  assert(total_len > 0, "empty sysclasspath not allowed");
494
495  // Copy the _items to a single string.
496  char* cp = NEW_C_HEAP_ARRAY(char, total_len, mtInternal);
497  char* cp_tmp = cp;
498  for (i = 0; i < _scp_nitems; ++i) {
499    if (_items[i] != NULL) {
500      memcpy(cp_tmp, _items[i], lengths[i]);
501      cp_tmp += lengths[i];
502      *cp_tmp++ = separator;
503    }
504  }
505  *--cp_tmp = '\0';     // Replace the extra separator.
506  return cp;
507}
508
509// Note:  path must be c-heap-allocated (or NULL); it is freed if non-null.
510char*
511SysClassPath::add_to_path(const char* path, const char* str, bool prepend) {
512  char *cp;
513
514  assert(str != NULL, "just checking");
515  if (path == NULL) {
516    size_t len = strlen(str) + 1;
517    cp = NEW_C_HEAP_ARRAY(char, len, mtInternal);
518    memcpy(cp, str, len);                       // copy the trailing null
519  } else {
520    const char separator = *os::path_separator();
521    size_t old_len = strlen(path);
522    size_t str_len = strlen(str);
523    size_t len = old_len + str_len + 2;
524
525    if (prepend) {
526      cp = NEW_C_HEAP_ARRAY(char, len, mtInternal);
527      char* cp_tmp = cp;
528      memcpy(cp_tmp, str, str_len);
529      cp_tmp += str_len;
530      *cp_tmp = separator;
531      memcpy(++cp_tmp, path, old_len + 1);      // copy the trailing null
532      FREE_C_HEAP_ARRAY(char, path, mtInternal);
533    } else {
534      cp = REALLOC_C_HEAP_ARRAY(char, path, len, mtInternal);
535      char* cp_tmp = cp + old_len;
536      *cp_tmp = separator;
537      memcpy(++cp_tmp, str, str_len + 1);       // copy the trailing null
538    }
539  }
540  return cp;
541}
542
543// Scan the directory and append any jar or zip files found to path.
544// Note:  path must be c-heap-allocated (or NULL); it is freed if non-null.
545char* SysClassPath::add_jars_to_path(char* path, const char* directory) {
546  DIR* dir = os::opendir(directory);
547  if (dir == NULL) return path;
548
549  char dir_sep[2] = { '\0', '\0' };
550  size_t directory_len = strlen(directory);
551  const char fileSep = *os::file_separator();
552  if (directory[directory_len - 1] != fileSep) dir_sep[0] = fileSep;
553
554  /* Scan the directory for jars/zips, appending them to path. */
555  struct dirent *entry;
556  char *dbuf = NEW_C_HEAP_ARRAY(char, os::readdir_buf_size(directory), mtInternal);
557  while ((entry = os::readdir(dir, (dirent *) dbuf)) != NULL) {
558    const char* name = entry->d_name;
559    const char* ext = name + strlen(name) - 4;
560    bool isJarOrZip = ext > name &&
561      (os::file_name_strcmp(ext, ".jar") == 0 ||
562       os::file_name_strcmp(ext, ".zip") == 0);
563    if (isJarOrZip) {
564      char* jarpath = NEW_C_HEAP_ARRAY(char, directory_len + 2 + strlen(name), mtInternal);
565      sprintf(jarpath, "%s%s%s", directory, dir_sep, name);
566      path = add_to_path(path, jarpath, false);
567      FREE_C_HEAP_ARRAY(char, jarpath, mtInternal);
568    }
569  }
570  FREE_C_HEAP_ARRAY(char, dbuf, mtInternal);
571  os::closedir(dir);
572  return path;
573}
574
575// Parses a memory size specification string.
576static bool atomull(const char *s, julong* result) {
577  julong n = 0;
578  int args_read = sscanf(s, JULONG_FORMAT, &n);
579  if (args_read != 1) {
580    return false;
581  }
582  while (*s != '\0' && isdigit(*s)) {
583    s++;
584  }
585  // 4705540: illegal if more characters are found after the first non-digit
586  if (strlen(s) > 1) {
587    return false;
588  }
589  switch (*s) {
590    case 'T': case 't':
591      *result = n * G * K;
592      // Check for overflow.
593      if (*result/((julong)G * K) != n) return false;
594      return true;
595    case 'G': case 'g':
596      *result = n * G;
597      if (*result/G != n) return false;
598      return true;
599    case 'M': case 'm':
600      *result = n * M;
601      if (*result/M != n) return false;
602      return true;
603    case 'K': case 'k':
604      *result = n * K;
605      if (*result/K != n) return false;
606      return true;
607    case '\0':
608      *result = n;
609      return true;
610    default:
611      return false;
612  }
613}
614
615Arguments::ArgsRange Arguments::check_memory_size(julong size, julong min_size) {
616  if (size < min_size) return arg_too_small;
617  // Check that size will fit in a size_t (only relevant on 32-bit)
618  if (size > max_uintx) return arg_too_big;
619  return arg_in_range;
620}
621
622// Describe an argument out of range error
623void Arguments::describe_range_error(ArgsRange errcode) {
624  switch(errcode) {
625  case arg_too_big:
626    jio_fprintf(defaultStream::error_stream(),
627                "The specified size exceeds the maximum "
628                "representable size.\n");
629    break;
630  case arg_too_small:
631  case arg_unreadable:
632  case arg_in_range:
633    // do nothing for now
634    break;
635  default:
636    ShouldNotReachHere();
637  }
638}
639
640static bool set_bool_flag(char* name, bool value, Flag::Flags origin) {
641  return CommandLineFlags::boolAtPut(name, &value, origin);
642}
643
644static bool set_fp_numeric_flag(char* name, char* value, Flag::Flags origin) {
645  double v;
646  if (sscanf(value, "%lf", &v) != 1) {
647    return false;
648  }
649
650  if (CommandLineFlags::doubleAtPut(name, &v, origin)) {
651    return true;
652  }
653  return false;
654}
655
656static bool set_numeric_flag(char* name, char* value, Flag::Flags origin) {
657  julong v;
658  intx intx_v;
659  bool is_neg = false;
660  // Check the sign first since atomull() parses only unsigned values.
661  if (*value == '-') {
662    if (!CommandLineFlags::intxAt(name, &intx_v)) {
663      return false;
664    }
665    value++;
666    is_neg = true;
667  }
668  if (!atomull(value, &v)) {
669    return false;
670  }
671  intx_v = (intx) v;
672  if (is_neg) {
673    intx_v = -intx_v;
674  }
675  if (CommandLineFlags::intxAtPut(name, &intx_v, origin)) {
676    return true;
677  }
678  uintx uintx_v = (uintx) v;
679  if (!is_neg && CommandLineFlags::uintxAtPut(name, &uintx_v, origin)) {
680    return true;
681  }
682  uint64_t uint64_t_v = (uint64_t) v;
683  if (!is_neg && CommandLineFlags::uint64_tAtPut(name, &uint64_t_v, origin)) {
684    return true;
685  }
686  return false;
687}
688
689static bool set_string_flag(char* name, const char* value, Flag::Flags origin) {
690  if (!CommandLineFlags::ccstrAtPut(name, &value, origin))  return false;
691  // Contract:  CommandLineFlags always returns a pointer that needs freeing.
692  FREE_C_HEAP_ARRAY(char, value, mtInternal);
693  return true;
694}
695
696static bool append_to_string_flag(char* name, const char* new_value, Flag::Flags origin) {
697  const char* old_value = "";
698  if (!CommandLineFlags::ccstrAt(name, &old_value))  return false;
699  size_t old_len = old_value != NULL ? strlen(old_value) : 0;
700  size_t new_len = strlen(new_value);
701  const char* value;
702  char* free_this_too = NULL;
703  if (old_len == 0) {
704    value = new_value;
705  } else if (new_len == 0) {
706    value = old_value;
707  } else {
708    char* buf = NEW_C_HEAP_ARRAY(char, old_len + 1 + new_len + 1, mtInternal);
709    // each new setting adds another LINE to the switch:
710    sprintf(buf, "%s\n%s", old_value, new_value);
711    value = buf;
712    free_this_too = buf;
713  }
714  (void) CommandLineFlags::ccstrAtPut(name, &value, origin);
715  // CommandLineFlags always returns a pointer that needs freeing.
716  FREE_C_HEAP_ARRAY(char, value, mtInternal);
717  if (free_this_too != NULL) {
718    // CommandLineFlags made its own copy, so I must delete my own temp. buffer.
719    FREE_C_HEAP_ARRAY(char, free_this_too, mtInternal);
720  }
721  return true;
722}
723
724bool Arguments::parse_argument(const char* arg, Flag::Flags origin) {
725
726  // range of acceptable characters spelled out for portability reasons
727#define NAME_RANGE  "[abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789_]"
728#define BUFLEN 255
729  char name[BUFLEN+1];
730  char dummy;
731
732  if (sscanf(arg, "-%" XSTR(BUFLEN) NAME_RANGE "%c", name, &dummy) == 1) {
733    return set_bool_flag(name, false, origin);
734  }
735  if (sscanf(arg, "+%" XSTR(BUFLEN) NAME_RANGE "%c", name, &dummy) == 1) {
736    return set_bool_flag(name, true, origin);
737  }
738
739  char punct;
740  if (sscanf(arg, "%" XSTR(BUFLEN) NAME_RANGE "%c", name, &punct) == 2 && punct == '=') {
741    const char* value = strchr(arg, '=') + 1;
742    Flag* flag = Flag::find_flag(name, strlen(name));
743    if (flag != NULL && flag->is_ccstr()) {
744      if (flag->ccstr_accumulates()) {
745        return append_to_string_flag(name, value, origin);
746      } else {
747        if (value[0] == '\0') {
748          value = NULL;
749        }
750        return set_string_flag(name, value, origin);
751      }
752    }
753  }
754
755  if (sscanf(arg, "%" XSTR(BUFLEN) NAME_RANGE ":%c", name, &punct) == 2 && punct == '=') {
756    const char* value = strchr(arg, '=') + 1;
757    // -XX:Foo:=xxx will reset the string flag to the given value.
758    if (value[0] == '\0') {
759      value = NULL;
760    }
761    return set_string_flag(name, value, origin);
762  }
763
764#define SIGNED_FP_NUMBER_RANGE "[-0123456789.]"
765#define SIGNED_NUMBER_RANGE    "[-0123456789]"
766#define        NUMBER_RANGE    "[0123456789]"
767  char value[BUFLEN + 1];
768  char value2[BUFLEN + 1];
769  if (sscanf(arg, "%" XSTR(BUFLEN) NAME_RANGE "=" "%" XSTR(BUFLEN) SIGNED_NUMBER_RANGE "." "%" XSTR(BUFLEN) NUMBER_RANGE "%c", name, value, value2, &dummy) == 3) {
770    // Looks like a floating-point number -- try again with more lenient format string
771    if (sscanf(arg, "%" XSTR(BUFLEN) NAME_RANGE "=" "%" XSTR(BUFLEN) SIGNED_FP_NUMBER_RANGE "%c", name, value, &dummy) == 2) {
772      return set_fp_numeric_flag(name, value, origin);
773    }
774  }
775
776#define VALUE_RANGE "[-kmgtKMGT0123456789]"
777  if (sscanf(arg, "%" XSTR(BUFLEN) NAME_RANGE "=" "%" XSTR(BUFLEN) VALUE_RANGE "%c", name, value, &dummy) == 2) {
778    return set_numeric_flag(name, value, origin);
779  }
780
781  return false;
782}
783
784void Arguments::add_string(char*** bldarray, int* count, const char* arg) {
785  assert(bldarray != NULL, "illegal argument");
786
787  if (arg == NULL) {
788    return;
789  }
790
791  int new_count = *count + 1;
792
793  // expand the array and add arg to the last element
794  if (*bldarray == NULL) {
795    *bldarray = NEW_C_HEAP_ARRAY(char*, new_count, mtInternal);
796  } else {
797    *bldarray = REALLOC_C_HEAP_ARRAY(char*, *bldarray, new_count, mtInternal);
798  }
799  (*bldarray)[*count] = strdup(arg);
800  *count = new_count;
801}
802
803void Arguments::build_jvm_args(const char* arg) {
804  add_string(&_jvm_args_array, &_num_jvm_args, arg);
805}
806
807void Arguments::build_jvm_flags(const char* arg) {
808  add_string(&_jvm_flags_array, &_num_jvm_flags, arg);
809}
810
811// utility function to return a string that concatenates all
812// strings in a given char** array
813const char* Arguments::build_resource_string(char** args, int count) {
814  if (args == NULL || count == 0) {
815    return NULL;
816  }
817  size_t length = strlen(args[0]) + 1; // add 1 for the null terminator
818  for (int i = 1; i < count; i++) {
819    length += strlen(args[i]) + 1; // add 1 for a space
820  }
821  char* s = NEW_RESOURCE_ARRAY(char, length);
822  strcpy(s, args[0]);
823  for (int j = 1; j < count; j++) {
824    strcat(s, " ");
825    strcat(s, args[j]);
826  }
827  return (const char*) s;
828}
829
830void Arguments::print_on(outputStream* st) {
831  st->print_cr("VM Arguments:");
832  if (num_jvm_flags() > 0) {
833    st->print("jvm_flags: "); print_jvm_flags_on(st);
834  }
835  if (num_jvm_args() > 0) {
836    st->print("jvm_args: "); print_jvm_args_on(st);
837  }
838  st->print_cr("java_command: %s", java_command() ? java_command() : "<unknown>");
839  if (_java_class_path != NULL) {
840    char* path = _java_class_path->value();
841    st->print_cr("java_class_path (initial): %s", strlen(path) == 0 ? "<not set>" : path );
842  }
843  st->print_cr("Launcher Type: %s", _sun_java_launcher);
844}
845
846void Arguments::print_jvm_flags_on(outputStream* st) {
847  if (_num_jvm_flags > 0) {
848    for (int i=0; i < _num_jvm_flags; i++) {
849      st->print("%s ", _jvm_flags_array[i]);
850    }
851    st->print_cr("");
852  }
853}
854
855void Arguments::print_jvm_args_on(outputStream* st) {
856  if (_num_jvm_args > 0) {
857    for (int i=0; i < _num_jvm_args; i++) {
858      st->print("%s ", _jvm_args_array[i]);
859    }
860    st->print_cr("");
861  }
862}
863
864bool Arguments::process_argument(const char* arg,
865    jboolean ignore_unrecognized, Flag::Flags origin) {
866
867  JDK_Version since = JDK_Version();
868
869  if (parse_argument(arg, origin) || ignore_unrecognized) {
870    return true;
871  }
872
873  bool has_plus_minus = (*arg == '+' || *arg == '-');
874  const char* const argname = has_plus_minus ? arg + 1 : arg;
875  if (is_newly_obsolete(arg, &since)) {
876    char version[256];
877    since.to_string(version, sizeof(version));
878    warning("ignoring option %s; support was removed in %s", argname, version);
879    return true;
880  }
881
882  // For locked flags, report a custom error message if available.
883  // Otherwise, report the standard unrecognized VM option.
884
885  size_t arg_len;
886  const char* equal_sign = strchr(argname, '=');
887  if (equal_sign == NULL) {
888    arg_len = strlen(argname);
889  } else {
890    arg_len = equal_sign - argname;
891  }
892
893  Flag* found_flag = Flag::find_flag((const char*)argname, arg_len, true, true);
894  if (found_flag != NULL) {
895    char locked_message_buf[BUFLEN];
896    found_flag->get_locked_message(locked_message_buf, BUFLEN);
897    if (strlen(locked_message_buf) == 0) {
898      if (found_flag->is_bool() && !has_plus_minus) {
899        jio_fprintf(defaultStream::error_stream(),
900          "Missing +/- setting for VM option '%s'\n", argname);
901      } else if (!found_flag->is_bool() && has_plus_minus) {
902        jio_fprintf(defaultStream::error_stream(),
903          "Unexpected +/- setting in VM option '%s'\n", argname);
904      } else {
905        jio_fprintf(defaultStream::error_stream(),
906          "Improperly specified VM option '%s'\n", argname);
907      }
908    } else {
909      jio_fprintf(defaultStream::error_stream(), "%s", locked_message_buf);
910    }
911  } else {
912    jio_fprintf(defaultStream::error_stream(),
913                "Unrecognized VM option '%s'\n", argname);
914    Flag* fuzzy_matched = Flag::fuzzy_match((const char*)argname, arg_len, true);
915    if (fuzzy_matched != NULL) {
916      jio_fprintf(defaultStream::error_stream(),
917                  "Did you mean '%s%s%s'?\n",
918                  (fuzzy_matched->is_bool()) ? "(+/-)" : "",
919                  fuzzy_matched->_name,
920                  (fuzzy_matched->is_bool()) ? "" : "=<value>");
921    }
922  }
923
924  // allow for commandline "commenting out" options like -XX:#+Verbose
925  return arg[0] == '#';
926}
927
928bool Arguments::process_settings_file(const char* file_name, bool should_exist, jboolean ignore_unrecognized) {
929  FILE* stream = fopen(file_name, "rb");
930  if (stream == NULL) {
931    if (should_exist) {
932      jio_fprintf(defaultStream::error_stream(),
933                  "Could not open settings file %s\n", file_name);
934      return false;
935    } else {
936      return true;
937    }
938  }
939
940  char token[1024];
941  int  pos = 0;
942
943  bool in_white_space = true;
944  bool in_comment     = false;
945  bool in_quote       = false;
946  char quote_c        = 0;
947  bool result         = true;
948
949  int c = getc(stream);
950  while(c != EOF && pos < (int)(sizeof(token)-1)) {
951    if (in_white_space) {
952      if (in_comment) {
953        if (c == '\n') in_comment = false;
954      } else {
955        if (c == '#') in_comment = true;
956        else if (!isspace(c)) {
957          in_white_space = false;
958          token[pos++] = c;
959        }
960      }
961    } else {
962      if (c == '\n' || (!in_quote && isspace(c))) {
963        // token ends at newline, or at unquoted whitespace
964        // this allows a way to include spaces in string-valued options
965        token[pos] = '\0';
966        logOption(token);
967        result &= process_argument(token, ignore_unrecognized, Flag::CONFIG_FILE);
968        build_jvm_flags(token);
969        pos = 0;
970        in_white_space = true;
971        in_quote = false;
972      } else if (!in_quote && (c == '\'' || c == '"')) {
973        in_quote = true;
974        quote_c = c;
975      } else if (in_quote && (c == quote_c)) {
976        in_quote = false;
977      } else {
978        token[pos++] = c;
979      }
980    }
981    c = getc(stream);
982  }
983  if (pos > 0) {
984    token[pos] = '\0';
985    result &= process_argument(token, ignore_unrecognized, Flag::CONFIG_FILE);
986    build_jvm_flags(token);
987  }
988  fclose(stream);
989  return result;
990}
991
992//=============================================================================================================
993// Parsing of properties (-D)
994
995const char* Arguments::get_property(const char* key) {
996  return PropertyList_get_value(system_properties(), key);
997}
998
999bool Arguments::add_property(const char* prop) {
1000  const char* eq = strchr(prop, '=');
1001  char* key;
1002  // ns must be static--its address may be stored in a SystemProperty object.
1003  const static char ns[1] = {0};
1004  char* value = (char *)ns;
1005
1006  size_t key_len = (eq == NULL) ? strlen(prop) : (eq - prop);
1007  key = AllocateHeap(key_len + 1, mtInternal);
1008  strncpy(key, prop, key_len);
1009  key[key_len] = '\0';
1010
1011  if (eq != NULL) {
1012    size_t value_len = strlen(prop) - key_len - 1;
1013    value = AllocateHeap(value_len + 1, mtInternal);
1014    strncpy(value, &prop[key_len + 1], value_len + 1);
1015  }
1016
1017  if (strcmp(key, "java.compiler") == 0) {
1018    process_java_compiler_argument(value);
1019    FreeHeap(key);
1020    if (eq != NULL) {
1021      FreeHeap(value);
1022    }
1023    return true;
1024  } else if (strcmp(key, "sun.java.command") == 0) {
1025    _java_command = value;
1026
1027    // Record value in Arguments, but let it get passed to Java.
1028  } else if (strcmp(key, "sun.java.launcher.is_altjvm") == 0 ||
1029             strcmp(key, "sun.java.launcher.pid") == 0) {
1030    // sun.java.launcher.is_altjvm and sun.java.launcher.pid property are
1031    // private and are processed in process_sun_java_launcher_properties();
1032    // the sun.java.launcher property is passed on to the java application
1033    FreeHeap(key);
1034    if (eq != NULL) {
1035      FreeHeap(value);
1036    }
1037    return true;
1038  } else if (strcmp(key, "java.vendor.url.bug") == 0) {
1039    // save it in _java_vendor_url_bug, so JVM fatal error handler can access
1040    // its value without going through the property list or making a Java call.
1041    _java_vendor_url_bug = value;
1042  } else if (strcmp(key, "sun.boot.library.path") == 0) {
1043    PropertyList_unique_add(&_system_properties, key, value, true);
1044    return true;
1045  }
1046  // Create new property and add at the end of the list
1047  PropertyList_unique_add(&_system_properties, key, value);
1048  return true;
1049}
1050
1051//===========================================================================================================
1052// Setting int/mixed/comp mode flags
1053
1054void Arguments::set_mode_flags(Mode mode) {
1055  // Set up default values for all flags.
1056  // If you add a flag to any of the branches below,
1057  // add a default value for it here.
1058  set_java_compiler(false);
1059  _mode                      = mode;
1060
1061  // Ensure Agent_OnLoad has the correct initial values.
1062  // This may not be the final mode; mode may change later in onload phase.
1063  PropertyList_unique_add(&_system_properties, "java.vm.info",
1064                          (char*)VM_Version::vm_info_string(), false);
1065
1066  UseInterpreter             = true;
1067  UseCompiler                = true;
1068  UseLoopCounter             = true;
1069
1070#ifndef ZERO
1071  // Turn these off for mixed and comp.  Leave them on for Zero.
1072  if (FLAG_IS_DEFAULT(UseFastAccessorMethods)) {
1073    UseFastAccessorMethods = (mode == _int);
1074  }
1075  if (FLAG_IS_DEFAULT(UseFastEmptyMethods)) {
1076    UseFastEmptyMethods = (mode == _int);
1077  }
1078#endif
1079
1080  // Default values may be platform/compiler dependent -
1081  // use the saved values
1082  ClipInlining               = Arguments::_ClipInlining;
1083  AlwaysCompileLoopMethods   = Arguments::_AlwaysCompileLoopMethods;
1084  UseOnStackReplacement      = Arguments::_UseOnStackReplacement;
1085  BackgroundCompilation      = Arguments::_BackgroundCompilation;
1086
1087  // Change from defaults based on mode
1088  switch (mode) {
1089  default:
1090    ShouldNotReachHere();
1091    break;
1092  case _int:
1093    UseCompiler              = false;
1094    UseLoopCounter           = false;
1095    AlwaysCompileLoopMethods = false;
1096    UseOnStackReplacement    = false;
1097    break;
1098  case _mixed:
1099    // same as default
1100    break;
1101  case _comp:
1102    UseInterpreter           = false;
1103    BackgroundCompilation    = false;
1104    ClipInlining             = false;
1105    // Be much more aggressive in tiered mode with -Xcomp and exercise C2 more.
1106    // We will first compile a level 3 version (C1 with full profiling), then do one invocation of it and
1107    // compile a level 4 (C2) and then continue executing it.
1108    if (TieredCompilation) {
1109      Tier3InvokeNotifyFreqLog = 0;
1110      Tier4InvocationThreshold = 0;
1111    }
1112    break;
1113  }
1114}
1115
1116#if defined(COMPILER2) || defined(_LP64) || !INCLUDE_CDS
1117// Conflict: required to use shared spaces (-Xshare:on), but
1118// incompatible command line options were chosen.
1119
1120static void no_shared_spaces() {
1121  if (RequireSharedSpaces) {
1122    jio_fprintf(defaultStream::error_stream(),
1123      "Class data sharing is inconsistent with other specified options.\n");
1124    vm_exit_during_initialization("Unable to use shared archive.", NULL);
1125  } else {
1126    FLAG_SET_DEFAULT(UseSharedSpaces, false);
1127  }
1128}
1129#endif
1130
1131void Arguments::set_tiered_flags() {
1132  // With tiered, set default policy to AdvancedThresholdPolicy, which is 3.
1133  if (FLAG_IS_DEFAULT(CompilationPolicyChoice)) {
1134    FLAG_SET_DEFAULT(CompilationPolicyChoice, 3);
1135  }
1136  if (CompilationPolicyChoice < 2) {
1137    vm_exit_during_initialization(
1138      "Incompatible compilation policy selected", NULL);
1139  }
1140  // Increase the code cache size - tiered compiles a lot more.
1141  if (FLAG_IS_DEFAULT(ReservedCodeCacheSize)) {
1142    FLAG_SET_DEFAULT(ReservedCodeCacheSize, ReservedCodeCacheSize * 5);
1143  }
1144  if (!UseInterpreter) { // -Xcomp
1145    Tier3InvokeNotifyFreqLog = 0;
1146    Tier4InvocationThreshold = 0;
1147  }
1148}
1149
1150#if INCLUDE_ALL_GCS
1151static void disable_adaptive_size_policy(const char* collector_name) {
1152  if (UseAdaptiveSizePolicy) {
1153    if (FLAG_IS_CMDLINE(UseAdaptiveSizePolicy)) {
1154      warning("disabling UseAdaptiveSizePolicy; it is incompatible with %s.",
1155              collector_name);
1156    }
1157    FLAG_SET_DEFAULT(UseAdaptiveSizePolicy, false);
1158  }
1159}
1160
1161void Arguments::set_parnew_gc_flags() {
1162  assert(!UseSerialGC && !UseParallelOldGC && !UseParallelGC && !UseG1GC,
1163         "control point invariant");
1164  assert(UseParNewGC, "Error");
1165
1166  // Turn off AdaptiveSizePolicy for parnew until it is complete.
1167  disable_adaptive_size_policy("UseParNewGC");
1168
1169  if (FLAG_IS_DEFAULT(ParallelGCThreads)) {
1170    FLAG_SET_DEFAULT(ParallelGCThreads, Abstract_VM_Version::parallel_worker_threads());
1171    assert(ParallelGCThreads > 0, "We should always have at least one thread by default");
1172  } else if (ParallelGCThreads == 0) {
1173    jio_fprintf(defaultStream::error_stream(),
1174        "The ParNew GC can not be combined with -XX:ParallelGCThreads=0\n");
1175    vm_exit(1);
1176  }
1177
1178  // By default YoungPLABSize and OldPLABSize are set to 4096 and 1024 respectively,
1179  // these settings are default for Parallel Scavenger. For ParNew+Tenured configuration
1180  // we set them to 1024 and 1024.
1181  // See CR 6362902.
1182  if (FLAG_IS_DEFAULT(YoungPLABSize)) {
1183    FLAG_SET_DEFAULT(YoungPLABSize, (intx)1024);
1184  }
1185  if (FLAG_IS_DEFAULT(OldPLABSize)) {
1186    FLAG_SET_DEFAULT(OldPLABSize, (intx)1024);
1187  }
1188
1189  // AlwaysTenure flag should make ParNew promote all at first collection.
1190  // See CR 6362902.
1191  if (AlwaysTenure) {
1192    FLAG_SET_CMDLINE(uintx, MaxTenuringThreshold, 0);
1193  }
1194  // When using compressed oops, we use local overflow stacks,
1195  // rather than using a global overflow list chained through
1196  // the klass word of the object's pre-image.
1197  if (UseCompressedOops && !ParGCUseLocalOverflow) {
1198    if (!FLAG_IS_DEFAULT(ParGCUseLocalOverflow)) {
1199      warning("Forcing +ParGCUseLocalOverflow: needed if using compressed references");
1200    }
1201    FLAG_SET_DEFAULT(ParGCUseLocalOverflow, true);
1202  }
1203  assert(ParGCUseLocalOverflow || !UseCompressedOops, "Error");
1204}
1205
1206// Adjust some sizes to suit CMS and/or ParNew needs; these work well on
1207// sparc/solaris for certain applications, but would gain from
1208// further optimization and tuning efforts, and would almost
1209// certainly gain from analysis of platform and environment.
1210void Arguments::set_cms_and_parnew_gc_flags() {
1211  assert(!UseSerialGC && !UseParallelOldGC && !UseParallelGC, "Error");
1212  assert(UseConcMarkSweepGC, "CMS is expected to be on here");
1213
1214  // If we are using CMS, we prefer to UseParNewGC,
1215  // unless explicitly forbidden.
1216  if (FLAG_IS_DEFAULT(UseParNewGC)) {
1217    FLAG_SET_ERGO(bool, UseParNewGC, true);
1218  }
1219
1220  // Turn off AdaptiveSizePolicy by default for cms until it is complete.
1221  disable_adaptive_size_policy("UseConcMarkSweepGC");
1222
1223  // In either case, adjust ParallelGCThreads and/or UseParNewGC
1224  // as needed.
1225  if (UseParNewGC) {
1226    set_parnew_gc_flags();
1227  }
1228
1229  size_t max_heap = align_size_down(MaxHeapSize,
1230                                    CardTableRS::ct_max_alignment_constraint());
1231
1232  // Now make adjustments for CMS
1233  intx   tenuring_default = (intx)6;
1234  size_t young_gen_per_worker = CMSYoungGenPerWorker;
1235
1236  // Preferred young gen size for "short" pauses:
1237  // upper bound depends on # of threads and NewRatio.
1238  const uintx parallel_gc_threads =
1239    (ParallelGCThreads == 0 ? 1 : ParallelGCThreads);
1240  const size_t preferred_max_new_size_unaligned =
1241    MIN2(max_heap/(NewRatio+1), ScaleForWordSize(young_gen_per_worker * parallel_gc_threads));
1242  size_t preferred_max_new_size =
1243    align_size_up(preferred_max_new_size_unaligned, os::vm_page_size());
1244
1245  // Unless explicitly requested otherwise, size young gen
1246  // for "short" pauses ~ CMSYoungGenPerWorker*ParallelGCThreads
1247
1248  // If either MaxNewSize or NewRatio is set on the command line,
1249  // assume the user is trying to set the size of the young gen.
1250  if (FLAG_IS_DEFAULT(MaxNewSize) && FLAG_IS_DEFAULT(NewRatio)) {
1251
1252    // Set MaxNewSize to our calculated preferred_max_new_size unless
1253    // NewSize was set on the command line and it is larger than
1254    // preferred_max_new_size.
1255    if (!FLAG_IS_DEFAULT(NewSize)) {   // NewSize explicitly set at command-line
1256      FLAG_SET_ERGO(uintx, MaxNewSize, MAX2(NewSize, preferred_max_new_size));
1257    } else {
1258      FLAG_SET_ERGO(uintx, MaxNewSize, preferred_max_new_size);
1259    }
1260    if (PrintGCDetails && Verbose) {
1261      // Too early to use gclog_or_tty
1262      tty->print_cr("CMS ergo set MaxNewSize: " SIZE_FORMAT, MaxNewSize);
1263    }
1264
1265    // Code along this path potentially sets NewSize and OldSize
1266    if (PrintGCDetails && Verbose) {
1267      // Too early to use gclog_or_tty
1268      tty->print_cr("CMS set min_heap_size: " SIZE_FORMAT
1269           " initial_heap_size:  " SIZE_FORMAT
1270           " max_heap: " SIZE_FORMAT,
1271           min_heap_size(), InitialHeapSize, max_heap);
1272    }
1273    size_t min_new = preferred_max_new_size;
1274    if (FLAG_IS_CMDLINE(NewSize)) {
1275      min_new = NewSize;
1276    }
1277    if (max_heap > min_new && min_heap_size() > min_new) {
1278      // Unless explicitly requested otherwise, make young gen
1279      // at least min_new, and at most preferred_max_new_size.
1280      if (FLAG_IS_DEFAULT(NewSize)) {
1281        FLAG_SET_ERGO(uintx, NewSize, MAX2(NewSize, min_new));
1282        FLAG_SET_ERGO(uintx, NewSize, MIN2(preferred_max_new_size, NewSize));
1283        if (PrintGCDetails && Verbose) {
1284          // Too early to use gclog_or_tty
1285          tty->print_cr("CMS ergo set NewSize: " SIZE_FORMAT, NewSize);
1286        }
1287      }
1288      // Unless explicitly requested otherwise, size old gen
1289      // so it's NewRatio x of NewSize.
1290      if (FLAG_IS_DEFAULT(OldSize)) {
1291        if (max_heap > NewSize) {
1292          FLAG_SET_ERGO(uintx, OldSize, MIN2(NewRatio*NewSize, max_heap - NewSize));
1293          if (PrintGCDetails && Verbose) {
1294            // Too early to use gclog_or_tty
1295            tty->print_cr("CMS ergo set OldSize: " SIZE_FORMAT, OldSize);
1296          }
1297        }
1298      }
1299    }
1300  }
1301  // Unless explicitly requested otherwise, definitely
1302  // promote all objects surviving "tenuring_default" scavenges.
1303  if (FLAG_IS_DEFAULT(MaxTenuringThreshold) &&
1304      FLAG_IS_DEFAULT(SurvivorRatio)) {
1305    FLAG_SET_ERGO(uintx, MaxTenuringThreshold, tenuring_default);
1306  }
1307  // If we decided above (or user explicitly requested)
1308  // `promote all' (via MaxTenuringThreshold := 0),
1309  // prefer minuscule survivor spaces so as not to waste
1310  // space for (non-existent) survivors
1311  if (FLAG_IS_DEFAULT(SurvivorRatio) && MaxTenuringThreshold == 0) {
1312    FLAG_SET_ERGO(uintx, SurvivorRatio, MAX2((uintx)1024, SurvivorRatio));
1313  }
1314  // If OldPLABSize is set and CMSParPromoteBlocksToClaim is not,
1315  // set CMSParPromoteBlocksToClaim equal to OldPLABSize.
1316  // This is done in order to make ParNew+CMS configuration to work
1317  // with YoungPLABSize and OldPLABSize options.
1318  // See CR 6362902.
1319  if (!FLAG_IS_DEFAULT(OldPLABSize)) {
1320    if (FLAG_IS_DEFAULT(CMSParPromoteBlocksToClaim)) {
1321      // OldPLABSize is not the default value but CMSParPromoteBlocksToClaim
1322      // is.  In this situation let CMSParPromoteBlocksToClaim follow
1323      // the value (either from the command line or ergonomics) of
1324      // OldPLABSize.  Following OldPLABSize is an ergonomics decision.
1325      FLAG_SET_ERGO(uintx, CMSParPromoteBlocksToClaim, OldPLABSize);
1326    } else {
1327      // OldPLABSize and CMSParPromoteBlocksToClaim are both set.
1328      // CMSParPromoteBlocksToClaim is a collector-specific flag, so
1329      // we'll let it to take precedence.
1330      jio_fprintf(defaultStream::error_stream(),
1331                  "Both OldPLABSize and CMSParPromoteBlocksToClaim"
1332                  " options are specified for the CMS collector."
1333                  " CMSParPromoteBlocksToClaim will take precedence.\n");
1334    }
1335  }
1336  if (!FLAG_IS_DEFAULT(ResizeOldPLAB) && !ResizeOldPLAB) {
1337    // OldPLAB sizing manually turned off: Use a larger default setting,
1338    // unless it was manually specified. This is because a too-low value
1339    // will slow down scavenges.
1340    if (FLAG_IS_DEFAULT(CMSParPromoteBlocksToClaim)) {
1341      FLAG_SET_ERGO(uintx, CMSParPromoteBlocksToClaim, 50); // default value before 6631166
1342    }
1343  }
1344  // Overwrite OldPLABSize which is the variable we will internally use everywhere.
1345  FLAG_SET_ERGO(uintx, OldPLABSize, CMSParPromoteBlocksToClaim);
1346  // If either of the static initialization defaults have changed, note this
1347  // modification.
1348  if (!FLAG_IS_DEFAULT(CMSParPromoteBlocksToClaim) || !FLAG_IS_DEFAULT(OldPLABWeight)) {
1349    CFLS_LAB::modify_initialization(OldPLABSize, OldPLABWeight);
1350  }
1351  if (PrintGCDetails && Verbose) {
1352    tty->print_cr("MarkStackSize: %uk  MarkStackSizeMax: %uk",
1353      MarkStackSize / K, MarkStackSizeMax / K);
1354    tty->print_cr("ConcGCThreads: %u", ConcGCThreads);
1355  }
1356}
1357#endif // INCLUDE_ALL_GCS
1358
1359void set_object_alignment() {
1360  // Object alignment.
1361  assert(is_power_of_2(ObjectAlignmentInBytes), "ObjectAlignmentInBytes must be power of 2");
1362  MinObjAlignmentInBytes     = ObjectAlignmentInBytes;
1363  assert(MinObjAlignmentInBytes >= HeapWordsPerLong * HeapWordSize, "ObjectAlignmentInBytes value is too small");
1364  MinObjAlignment            = MinObjAlignmentInBytes / HeapWordSize;
1365  assert(MinObjAlignmentInBytes == MinObjAlignment * HeapWordSize, "ObjectAlignmentInBytes value is incorrect");
1366  MinObjAlignmentInBytesMask = MinObjAlignmentInBytes - 1;
1367
1368  LogMinObjAlignmentInBytes  = exact_log2(ObjectAlignmentInBytes);
1369  LogMinObjAlignment         = LogMinObjAlignmentInBytes - LogHeapWordSize;
1370
1371  // Oop encoding heap max
1372  OopEncodingHeapMax = (uint64_t(max_juint) + 1) << LogMinObjAlignmentInBytes;
1373
1374#if INCLUDE_ALL_GCS
1375  // Set CMS global values
1376  CompactibleFreeListSpace::set_cms_values();
1377#endif // INCLUDE_ALL_GCS
1378}
1379
1380bool verify_object_alignment() {
1381  // Object alignment.
1382  if (!is_power_of_2(ObjectAlignmentInBytes)) {
1383    jio_fprintf(defaultStream::error_stream(),
1384                "error: ObjectAlignmentInBytes=%d must be power of 2\n",
1385                (int)ObjectAlignmentInBytes);
1386    return false;
1387  }
1388  if ((int)ObjectAlignmentInBytes < BytesPerLong) {
1389    jio_fprintf(defaultStream::error_stream(),
1390                "error: ObjectAlignmentInBytes=%d must be greater or equal %d\n",
1391                (int)ObjectAlignmentInBytes, BytesPerLong);
1392    return false;
1393  }
1394  // It does not make sense to have big object alignment
1395  // since a space lost due to alignment will be greater
1396  // then a saved space from compressed oops.
1397  if ((int)ObjectAlignmentInBytes > 256) {
1398    jio_fprintf(defaultStream::error_stream(),
1399                "error: ObjectAlignmentInBytes=%d must not be greater than 256\n",
1400                (int)ObjectAlignmentInBytes);
1401    return false;
1402  }
1403  // In case page size is very small.
1404  if ((int)ObjectAlignmentInBytes >= os::vm_page_size()) {
1405    jio_fprintf(defaultStream::error_stream(),
1406                "error: ObjectAlignmentInBytes=%d must be less than page size %d\n",
1407                (int)ObjectAlignmentInBytes, os::vm_page_size());
1408    return false;
1409  }
1410  return true;
1411}
1412
1413uintx Arguments::max_heap_for_compressed_oops() {
1414  // Avoid sign flip.
1415  assert(OopEncodingHeapMax > (uint64_t)os::vm_page_size(), "Unusual page size");
1416  // We need to fit both the NULL page and the heap into the memory budget, while
1417  // keeping alignment constraints of the heap. To guarantee the latter, as the
1418  // NULL page is located before the heap, we pad the NULL page to the conservative
1419  // maximum alignment that the GC may ever impose upon the heap.
1420  size_t displacement_due_to_null_page = align_size_up_(os::vm_page_size(),
1421                                                        _conservative_max_heap_alignment);
1422
1423  LP64_ONLY(return OopEncodingHeapMax - displacement_due_to_null_page);
1424  NOT_LP64(ShouldNotReachHere(); return 0);
1425}
1426
1427bool Arguments::should_auto_select_low_pause_collector() {
1428  if (UseAutoGCSelectPolicy &&
1429      !FLAG_IS_DEFAULT(MaxGCPauseMillis) &&
1430      (MaxGCPauseMillis <= AutoGCSelectPauseMillis)) {
1431    if (PrintGCDetails) {
1432      // Cannot use gclog_or_tty yet.
1433      tty->print_cr("Automatic selection of the low pause collector"
1434       " based on pause goal of %d (ms)", MaxGCPauseMillis);
1435    }
1436    return true;
1437  }
1438  return false;
1439}
1440
1441void Arguments::set_use_compressed_oops() {
1442#ifndef ZERO
1443#ifdef _LP64
1444  // MaxHeapSize is not set up properly at this point, but
1445  // the only value that can override MaxHeapSize if we are
1446  // to use UseCompressedOops is InitialHeapSize.
1447  size_t max_heap_size = MAX2(MaxHeapSize, InitialHeapSize);
1448
1449  if (max_heap_size <= max_heap_for_compressed_oops()) {
1450#if !defined(COMPILER1) || defined(TIERED)
1451    if (FLAG_IS_DEFAULT(UseCompressedOops)) {
1452      FLAG_SET_ERGO(bool, UseCompressedOops, true);
1453    }
1454#endif
1455#ifdef _WIN64
1456    if (UseLargePages && UseCompressedOops) {
1457      // Cannot allocate guard pages for implicit checks in indexed addressing
1458      // mode, when large pages are specified on windows.
1459      // This flag could be switched ON if narrow oop base address is set to 0,
1460      // see code in Universe::initialize_heap().
1461      Universe::set_narrow_oop_use_implicit_null_checks(false);
1462    }
1463#endif //  _WIN64
1464  } else {
1465    if (UseCompressedOops && !FLAG_IS_DEFAULT(UseCompressedOops)) {
1466      warning("Max heap size too large for Compressed Oops");
1467      FLAG_SET_DEFAULT(UseCompressedOops, false);
1468      FLAG_SET_DEFAULT(UseCompressedClassPointers, false);
1469    }
1470  }
1471#endif // _LP64
1472#endif // ZERO
1473}
1474
1475
1476// NOTE: set_use_compressed_klass_ptrs() must be called after calling
1477// set_use_compressed_oops().
1478void Arguments::set_use_compressed_klass_ptrs() {
1479#ifndef ZERO
1480#ifdef _LP64
1481  // UseCompressedOops must be on for UseCompressedClassPointers to be on.
1482  if (!UseCompressedOops) {
1483    if (UseCompressedClassPointers) {
1484      warning("UseCompressedClassPointers requires UseCompressedOops");
1485    }
1486    FLAG_SET_DEFAULT(UseCompressedClassPointers, false);
1487  } else {
1488    // Turn on UseCompressedClassPointers too
1489    if (FLAG_IS_DEFAULT(UseCompressedClassPointers)) {
1490      FLAG_SET_ERGO(bool, UseCompressedClassPointers, true);
1491    }
1492    // Check the CompressedClassSpaceSize to make sure we use compressed klass ptrs.
1493    if (UseCompressedClassPointers) {
1494      if (CompressedClassSpaceSize > KlassEncodingMetaspaceMax) {
1495        warning("CompressedClassSpaceSize is too large for UseCompressedClassPointers");
1496        FLAG_SET_DEFAULT(UseCompressedClassPointers, false);
1497      }
1498    }
1499  }
1500#endif // _LP64
1501#endif // !ZERO
1502}
1503
1504void Arguments::set_conservative_max_heap_alignment() {
1505  // The conservative maximum required alignment for the heap is the maximum of
1506  // the alignments imposed by several sources: any requirements from the heap
1507  // itself, the collector policy and the maximum page size we may run the VM
1508  // with.
1509  size_t heap_alignment = GenCollectedHeap::conservative_max_heap_alignment();
1510#if INCLUDE_ALL_GCS
1511  if (UseParallelGC) {
1512    heap_alignment = ParallelScavengeHeap::conservative_max_heap_alignment();
1513  } else if (UseG1GC) {
1514    heap_alignment = G1CollectedHeap::conservative_max_heap_alignment();
1515  }
1516#endif // INCLUDE_ALL_GCS
1517  _conservative_max_heap_alignment = MAX3(heap_alignment, os::max_page_size(),
1518    CollectorPolicy::compute_heap_alignment());
1519}
1520
1521void Arguments::set_ergonomics_flags() {
1522
1523  if (os::is_server_class_machine()) {
1524    // If no other collector is requested explicitly,
1525    // let the VM select the collector based on
1526    // machine class and automatic selection policy.
1527    if (!UseSerialGC &&
1528        !UseConcMarkSweepGC &&
1529        !UseG1GC &&
1530        !UseParNewGC &&
1531        FLAG_IS_DEFAULT(UseParallelGC)) {
1532      if (should_auto_select_low_pause_collector()) {
1533        FLAG_SET_ERGO(bool, UseConcMarkSweepGC, true);
1534      } else {
1535        FLAG_SET_ERGO(bool, UseParallelGC, true);
1536      }
1537    }
1538  }
1539#ifdef COMPILER2
1540  // Shared spaces work fine with other GCs but causes bytecode rewriting
1541  // to be disabled, which hurts interpreter performance and decreases
1542  // server performance.  When -server is specified, keep the default off
1543  // unless it is asked for.  Future work: either add bytecode rewriting
1544  // at link time, or rewrite bytecodes in non-shared methods.
1545  if (!DumpSharedSpaces && !RequireSharedSpaces &&
1546      (FLAG_IS_DEFAULT(UseSharedSpaces) || !UseSharedSpaces)) {
1547    no_shared_spaces();
1548  }
1549#endif
1550
1551  set_conservative_max_heap_alignment();
1552
1553#ifndef ZERO
1554#ifdef _LP64
1555  set_use_compressed_oops();
1556
1557  // set_use_compressed_klass_ptrs() must be called after calling
1558  // set_use_compressed_oops().
1559  set_use_compressed_klass_ptrs();
1560
1561  // Also checks that certain machines are slower with compressed oops
1562  // in vm_version initialization code.
1563#endif // _LP64
1564#endif // !ZERO
1565}
1566
1567void Arguments::set_parallel_gc_flags() {
1568  assert(UseParallelGC || UseParallelOldGC, "Error");
1569  // Enable ParallelOld unless it was explicitly disabled (cmd line or rc file).
1570  if (FLAG_IS_DEFAULT(UseParallelOldGC)) {
1571    FLAG_SET_DEFAULT(UseParallelOldGC, true);
1572  }
1573  FLAG_SET_DEFAULT(UseParallelGC, true);
1574
1575  // If no heap maximum was requested explicitly, use some reasonable fraction
1576  // of the physical memory, up to a maximum of 1GB.
1577  FLAG_SET_DEFAULT(ParallelGCThreads,
1578                   Abstract_VM_Version::parallel_worker_threads());
1579  if (ParallelGCThreads == 0) {
1580    jio_fprintf(defaultStream::error_stream(),
1581        "The Parallel GC can not be combined with -XX:ParallelGCThreads=0\n");
1582    vm_exit(1);
1583  }
1584
1585  if (UseAdaptiveSizePolicy) {
1586    // We don't want to limit adaptive heap sizing's freedom to adjust the heap
1587    // unless the user actually sets these flags.
1588    if (FLAG_IS_DEFAULT(MinHeapFreeRatio)) {
1589      FLAG_SET_DEFAULT(MinHeapFreeRatio, 0);
1590    }
1591    if (FLAG_IS_DEFAULT(MaxHeapFreeRatio)) {
1592      FLAG_SET_DEFAULT(MaxHeapFreeRatio, 100);
1593    }
1594  }
1595
1596  // If InitialSurvivorRatio or MinSurvivorRatio were not specified, but the
1597  // SurvivorRatio has been set, reset their default values to SurvivorRatio +
1598  // 2.  By doing this we make SurvivorRatio also work for Parallel Scavenger.
1599  // See CR 6362902 for details.
1600  if (!FLAG_IS_DEFAULT(SurvivorRatio)) {
1601    if (FLAG_IS_DEFAULT(InitialSurvivorRatio)) {
1602       FLAG_SET_DEFAULT(InitialSurvivorRatio, SurvivorRatio + 2);
1603    }
1604    if (FLAG_IS_DEFAULT(MinSurvivorRatio)) {
1605      FLAG_SET_DEFAULT(MinSurvivorRatio, SurvivorRatio + 2);
1606    }
1607  }
1608
1609  if (UseParallelOldGC) {
1610    // Par compact uses lower default values since they are treated as
1611    // minimums.  These are different defaults because of the different
1612    // interpretation and are not ergonomically set.
1613    if (FLAG_IS_DEFAULT(MarkSweepDeadRatio)) {
1614      FLAG_SET_DEFAULT(MarkSweepDeadRatio, 1);
1615    }
1616  }
1617}
1618
1619void Arguments::set_g1_gc_flags() {
1620  assert(UseG1GC, "Error");
1621#ifdef COMPILER1
1622  FastTLABRefill = false;
1623#endif
1624  FLAG_SET_DEFAULT(ParallelGCThreads,
1625                     Abstract_VM_Version::parallel_worker_threads());
1626  if (ParallelGCThreads == 0) {
1627    FLAG_SET_DEFAULT(ParallelGCThreads,
1628                     Abstract_VM_Version::parallel_worker_threads());
1629  }
1630
1631  // MarkStackSize will be set (if it hasn't been set by the user)
1632  // when concurrent marking is initialized.
1633  // Its value will be based upon the number of parallel marking threads.
1634  // But we do set the maximum mark stack size here.
1635  if (FLAG_IS_DEFAULT(MarkStackSizeMax)) {
1636    FLAG_SET_DEFAULT(MarkStackSizeMax, 128 * TASKQUEUE_SIZE);
1637  }
1638
1639  if (FLAG_IS_DEFAULT(GCTimeRatio) || GCTimeRatio == 0) {
1640    // In G1, we want the default GC overhead goal to be higher than
1641    // say in PS. So we set it here to 10%. Otherwise the heap might
1642    // be expanded more aggressively than we would like it to. In
1643    // fact, even 10% seems to not be high enough in some cases
1644    // (especially small GC stress tests that the main thing they do
1645    // is allocation). We might consider increase it further.
1646    FLAG_SET_DEFAULT(GCTimeRatio, 9);
1647  }
1648
1649  if (PrintGCDetails && Verbose) {
1650    tty->print_cr("MarkStackSize: %uk  MarkStackSizeMax: %uk",
1651      MarkStackSize / K, MarkStackSizeMax / K);
1652    tty->print_cr("ConcGCThreads: %u", ConcGCThreads);
1653  }
1654}
1655
1656julong Arguments::limit_by_allocatable_memory(julong limit) {
1657  julong max_allocatable;
1658  julong result = limit;
1659  if (os::has_allocatable_memory_limit(&max_allocatable)) {
1660    result = MIN2(result, max_allocatable / MaxVirtMemFraction);
1661  }
1662  return result;
1663}
1664
1665// Use static initialization to get the default before parsing
1666static const uintx DefaultHeapBaseMinAddress = HeapBaseMinAddress;
1667
1668void Arguments::set_heap_size() {
1669  if (!FLAG_IS_DEFAULT(DefaultMaxRAMFraction)) {
1670    // Deprecated flag
1671    FLAG_SET_CMDLINE(uintx, MaxRAMFraction, DefaultMaxRAMFraction);
1672  }
1673
1674  const julong phys_mem =
1675    FLAG_IS_DEFAULT(MaxRAM) ? MIN2(os::physical_memory(), (julong)MaxRAM)
1676                            : (julong)MaxRAM;
1677
1678  // If the maximum heap size has not been set with -Xmx,
1679  // then set it as fraction of the size of physical memory,
1680  // respecting the maximum and minimum sizes of the heap.
1681  if (FLAG_IS_DEFAULT(MaxHeapSize)) {
1682    julong reasonable_max = phys_mem / MaxRAMFraction;
1683
1684    if (phys_mem <= MaxHeapSize * MinRAMFraction) {
1685      // Small physical memory, so use a minimum fraction of it for the heap
1686      reasonable_max = phys_mem / MinRAMFraction;
1687    } else {
1688      // Not-small physical memory, so require a heap at least
1689      // as large as MaxHeapSize
1690      reasonable_max = MAX2(reasonable_max, (julong)MaxHeapSize);
1691    }
1692    if (!FLAG_IS_DEFAULT(ErgoHeapSizeLimit) && ErgoHeapSizeLimit != 0) {
1693      // Limit the heap size to ErgoHeapSizeLimit
1694      reasonable_max = MIN2(reasonable_max, (julong)ErgoHeapSizeLimit);
1695    }
1696    if (UseCompressedOops) {
1697      // Limit the heap size to the maximum possible when using compressed oops
1698      julong max_coop_heap = (julong)max_heap_for_compressed_oops();
1699
1700      // HeapBaseMinAddress can be greater than default but not less than.
1701      if (!FLAG_IS_DEFAULT(HeapBaseMinAddress)) {
1702        if (HeapBaseMinAddress < DefaultHeapBaseMinAddress) {
1703          // matches compressed oops printing flags
1704          if (PrintCompressedOopsMode || (PrintMiscellaneous && Verbose)) {
1705            jio_fprintf(defaultStream::error_stream(),
1706                        "HeapBaseMinAddress must be at least " UINTX_FORMAT
1707                        " (" UINTX_FORMAT "G) which is greater than value given "
1708                        UINTX_FORMAT "\n",
1709                        DefaultHeapBaseMinAddress,
1710                        DefaultHeapBaseMinAddress/G,
1711                        HeapBaseMinAddress);
1712          }
1713          FLAG_SET_ERGO(uintx, HeapBaseMinAddress, DefaultHeapBaseMinAddress);
1714        }
1715      }
1716
1717      if (HeapBaseMinAddress + MaxHeapSize < max_coop_heap) {
1718        // Heap should be above HeapBaseMinAddress to get zero based compressed oops
1719        // but it should be not less than default MaxHeapSize.
1720        max_coop_heap -= HeapBaseMinAddress;
1721      }
1722      reasonable_max = MIN2(reasonable_max, max_coop_heap);
1723    }
1724    reasonable_max = limit_by_allocatable_memory(reasonable_max);
1725
1726    if (!FLAG_IS_DEFAULT(InitialHeapSize)) {
1727      // An initial heap size was specified on the command line,
1728      // so be sure that the maximum size is consistent.  Done
1729      // after call to limit_by_allocatable_memory because that
1730      // method might reduce the allocation size.
1731      reasonable_max = MAX2(reasonable_max, (julong)InitialHeapSize);
1732    }
1733
1734    if (PrintGCDetails && Verbose) {
1735      // Cannot use gclog_or_tty yet.
1736      tty->print_cr("  Maximum heap size " SIZE_FORMAT, reasonable_max);
1737    }
1738    FLAG_SET_ERGO(uintx, MaxHeapSize, (uintx)reasonable_max);
1739  }
1740
1741  // If the minimum or initial heap_size have not been set or requested to be set
1742  // ergonomically, set them accordingly.
1743  if (InitialHeapSize == 0 || min_heap_size() == 0) {
1744    julong reasonable_minimum = (julong)(OldSize + NewSize);
1745
1746    reasonable_minimum = MIN2(reasonable_minimum, (julong)MaxHeapSize);
1747
1748    reasonable_minimum = limit_by_allocatable_memory(reasonable_minimum);
1749
1750    if (InitialHeapSize == 0) {
1751      julong reasonable_initial = phys_mem / InitialRAMFraction;
1752
1753      reasonable_initial = MAX3(reasonable_initial, reasonable_minimum, (julong)min_heap_size());
1754      reasonable_initial = MIN2(reasonable_initial, (julong)MaxHeapSize);
1755
1756      reasonable_initial = limit_by_allocatable_memory(reasonable_initial);
1757
1758      if (PrintGCDetails && Verbose) {
1759        // Cannot use gclog_or_tty yet.
1760        tty->print_cr("  Initial heap size " SIZE_FORMAT, (uintx)reasonable_initial);
1761      }
1762      FLAG_SET_ERGO(uintx, InitialHeapSize, (uintx)reasonable_initial);
1763    }
1764    // If the minimum heap size has not been set (via -Xms),
1765    // synchronize with InitialHeapSize to avoid errors with the default value.
1766    if (min_heap_size() == 0) {
1767      set_min_heap_size(MIN2((uintx)reasonable_minimum, InitialHeapSize));
1768      if (PrintGCDetails && Verbose) {
1769        // Cannot use gclog_or_tty yet.
1770        tty->print_cr("  Minimum heap size " SIZE_FORMAT, min_heap_size());
1771      }
1772    }
1773  }
1774}
1775
1776// This must be called after ergonomics because we want bytecode rewriting
1777// if the server compiler is used, or if UseSharedSpaces is disabled.
1778void Arguments::set_bytecode_flags() {
1779  // Better not attempt to store into a read-only space.
1780  if (UseSharedSpaces) {
1781    FLAG_SET_DEFAULT(RewriteBytecodes, false);
1782    FLAG_SET_DEFAULT(RewriteFrequentPairs, false);
1783  }
1784
1785  if (!RewriteBytecodes) {
1786    FLAG_SET_DEFAULT(RewriteFrequentPairs, false);
1787  }
1788}
1789
1790// Aggressive optimization flags  -XX:+AggressiveOpts
1791void Arguments::set_aggressive_opts_flags() {
1792#ifdef COMPILER2
1793  if (AggressiveUnboxing) {
1794    if (FLAG_IS_DEFAULT(EliminateAutoBox)) {
1795      FLAG_SET_DEFAULT(EliminateAutoBox, true);
1796    } else if (!EliminateAutoBox) {
1797      // warning("AggressiveUnboxing is disabled because EliminateAutoBox is disabled");
1798      AggressiveUnboxing = false;
1799    }
1800    if (FLAG_IS_DEFAULT(DoEscapeAnalysis)) {
1801      FLAG_SET_DEFAULT(DoEscapeAnalysis, true);
1802    } else if (!DoEscapeAnalysis) {
1803      // warning("AggressiveUnboxing is disabled because DoEscapeAnalysis is disabled");
1804      AggressiveUnboxing = false;
1805    }
1806  }
1807  if (AggressiveOpts || !FLAG_IS_DEFAULT(AutoBoxCacheMax)) {
1808    if (FLAG_IS_DEFAULT(EliminateAutoBox)) {
1809      FLAG_SET_DEFAULT(EliminateAutoBox, true);
1810    }
1811    if (FLAG_IS_DEFAULT(AutoBoxCacheMax)) {
1812      FLAG_SET_DEFAULT(AutoBoxCacheMax, 20000);
1813    }
1814
1815    // Feed the cache size setting into the JDK
1816    char buffer[1024];
1817    sprintf(buffer, "java.lang.Integer.IntegerCache.high=" INTX_FORMAT, AutoBoxCacheMax);
1818    add_property(buffer);
1819  }
1820  if (AggressiveOpts && FLAG_IS_DEFAULT(BiasedLockingStartupDelay)) {
1821    FLAG_SET_DEFAULT(BiasedLockingStartupDelay, 500);
1822  }
1823#endif
1824
1825  if (AggressiveOpts) {
1826// Sample flag setting code
1827//    if (FLAG_IS_DEFAULT(EliminateZeroing)) {
1828//      FLAG_SET_DEFAULT(EliminateZeroing, true);
1829//    }
1830  }
1831}
1832
1833//===========================================================================================================
1834// Parsing of java.compiler property
1835
1836void Arguments::process_java_compiler_argument(char* arg) {
1837  // For backwards compatibility, Djava.compiler=NONE or ""
1838  // causes us to switch to -Xint mode UNLESS -Xdebug
1839  // is also specified.
1840  if (strlen(arg) == 0 || strcasecmp(arg, "NONE") == 0) {
1841    set_java_compiler(true);    // "-Djava.compiler[=...]" most recently seen.
1842  }
1843}
1844
1845void Arguments::process_java_launcher_argument(const char* launcher, void* extra_info) {
1846  _sun_java_launcher = strdup(launcher);
1847}
1848
1849bool Arguments::created_by_java_launcher() {
1850  assert(_sun_java_launcher != NULL, "property must have value");
1851  return strcmp(DEFAULT_JAVA_LAUNCHER, _sun_java_launcher) != 0;
1852}
1853
1854bool Arguments::sun_java_launcher_is_altjvm() {
1855  return _sun_java_launcher_is_altjvm;
1856}
1857
1858//===========================================================================================================
1859// Parsing of main arguments
1860
1861bool Arguments::verify_interval(uintx val, uintx min,
1862                                uintx max, const char* name) {
1863  // Returns true iff value is in the inclusive interval [min..max]
1864  // false, otherwise.
1865  if (val >= min && val <= max) {
1866    return true;
1867  }
1868  jio_fprintf(defaultStream::error_stream(),
1869              "%s of " UINTX_FORMAT " is invalid; must be between " UINTX_FORMAT
1870              " and " UINTX_FORMAT "\n",
1871              name, val, min, max);
1872  return false;
1873}
1874
1875bool Arguments::verify_min_value(intx val, intx min, const char* name) {
1876  // Returns true if given value is at least specified min threshold
1877  // false, otherwise.
1878  if (val >= min ) {
1879      return true;
1880  }
1881  jio_fprintf(defaultStream::error_stream(),
1882              "%s of " INTX_FORMAT " is invalid; must be at least " INTX_FORMAT "\n",
1883              name, val, min);
1884  return false;
1885}
1886
1887bool Arguments::verify_percentage(uintx value, const char* name) {
1888  if (is_percentage(value)) {
1889    return true;
1890  }
1891  jio_fprintf(defaultStream::error_stream(),
1892              "%s of " UINTX_FORMAT " is invalid; must be between 0 and 100\n",
1893              name, value);
1894  return false;
1895}
1896
1897#if !INCLUDE_ALL_GCS
1898#ifdef ASSERT
1899static bool verify_serial_gc_flags() {
1900  return (UseSerialGC &&
1901        !(UseParNewGC || (UseConcMarkSweepGC || CMSIncrementalMode) || UseG1GC ||
1902          UseParallelGC || UseParallelOldGC));
1903}
1904#endif // ASSERT
1905#endif // INCLUDE_ALL_GCS
1906
1907// check if do gclog rotation
1908// +UseGCLogFileRotation is a must,
1909// no gc log rotation when log file not supplied or
1910// NumberOfGCLogFiles is 0, or GCLogFileSize is 0
1911void check_gclog_consistency() {
1912  if (UseGCLogFileRotation) {
1913    if ((Arguments::gc_log_filename() == NULL) ||
1914        (NumberOfGCLogFiles == 0)  ||
1915        (GCLogFileSize == 0)) {
1916      jio_fprintf(defaultStream::output_stream(),
1917                  "To enable GC log rotation, use -Xloggc:<filename> -XX:+UseGCLogFileRotation -XX:NumberOfGCLogFiles=<num_of_files> -XX:GCLogFileSize=<num_of_size>[k|K|m|M|g|G]\n"
1918                  "where num_of_file > 0 and num_of_size > 0\n"
1919                  "GC log rotation is turned off\n");
1920      UseGCLogFileRotation = false;
1921    }
1922  }
1923
1924  if (UseGCLogFileRotation && GCLogFileSize < 8*K) {
1925        FLAG_SET_CMDLINE(uintx, GCLogFileSize, 8*K);
1926        jio_fprintf(defaultStream::output_stream(),
1927                    "GCLogFileSize changed to minimum 8K\n");
1928  }
1929}
1930
1931// This function is called for -Xloggc:<filename>, it can be used
1932// to check if a given file name(or string) conforms to the following
1933// specification:
1934// A valid string only contains "[A-Z][a-z][0-9].-_%[p|t]"
1935// %p and %t only allowed once. We only limit usage of filename not path
1936bool is_filename_valid(const char *file_name) {
1937  const char* p = file_name;
1938  char file_sep = os::file_separator()[0];
1939  const char* cp;
1940  // skip prefix path
1941  for (cp = file_name; *cp != '\0'; cp++) {
1942    if (*cp == '/' || *cp == file_sep) {
1943      p = cp + 1;
1944    }
1945  }
1946
1947  int count_p = 0;
1948  int count_t = 0;
1949  while (*p != '\0') {
1950    if ((*p >= '0' && *p <= '9') ||
1951        (*p >= 'A' && *p <= 'Z') ||
1952        (*p >= 'a' && *p <= 'z') ||
1953         *p == '-'               ||
1954         *p == '_'               ||
1955         *p == '.') {
1956       p++;
1957       continue;
1958    }
1959    if (*p == '%') {
1960      if(*(p + 1) == 'p') {
1961        p += 2;
1962        count_p ++;
1963        continue;
1964      }
1965      if (*(p + 1) == 't') {
1966        p += 2;
1967        count_t ++;
1968        continue;
1969      }
1970    }
1971    return false;
1972  }
1973  return count_p < 2 && count_t < 2;
1974}
1975
1976bool Arguments::verify_MinHeapFreeRatio(FormatBuffer<80>& err_msg, uintx min_heap_free_ratio) {
1977  if (!is_percentage(min_heap_free_ratio)) {
1978    err_msg.print("MinHeapFreeRatio must have a value between 0 and 100");
1979    return false;
1980  }
1981  if (min_heap_free_ratio > MaxHeapFreeRatio) {
1982    err_msg.print("MinHeapFreeRatio (" UINTX_FORMAT ") must be less than or "
1983                  "equal to MaxHeapFreeRatio (" UINTX_FORMAT ")", min_heap_free_ratio,
1984                  MaxHeapFreeRatio);
1985    return false;
1986  }
1987  return true;
1988}
1989
1990bool Arguments::verify_MaxHeapFreeRatio(FormatBuffer<80>& err_msg, uintx max_heap_free_ratio) {
1991  if (!is_percentage(max_heap_free_ratio)) {
1992    err_msg.print("MaxHeapFreeRatio must have a value between 0 and 100");
1993    return false;
1994  }
1995  if (max_heap_free_ratio < MinHeapFreeRatio) {
1996    err_msg.print("MaxHeapFreeRatio (" UINTX_FORMAT ") must be greater than or "
1997                  "equal to MinHeapFreeRatio (" UINTX_FORMAT ")", max_heap_free_ratio,
1998                  MinHeapFreeRatio);
1999    return false;
2000  }
2001  return true;
2002}
2003
2004// Check consistency of GC selection
2005bool Arguments::check_gc_consistency() {
2006  check_gclog_consistency();
2007  bool status = true;
2008  // Ensure that the user has not selected conflicting sets
2009  // of collectors. [Note: this check is merely a user convenience;
2010  // collectors over-ride each other so that only a non-conflicting
2011  // set is selected; however what the user gets is not what they
2012  // may have expected from the combination they asked for. It's
2013  // better to reduce user confusion by not allowing them to
2014  // select conflicting combinations.
2015  uint i = 0;
2016  if (UseSerialGC)                       i++;
2017  if (UseConcMarkSweepGC || UseParNewGC) i++;
2018  if (UseParallelGC || UseParallelOldGC) i++;
2019  if (UseG1GC)                           i++;
2020  if (i > 1) {
2021    jio_fprintf(defaultStream::error_stream(),
2022                "Conflicting collector combinations in option list; "
2023                "please refer to the release notes for the combinations "
2024                "allowed\n");
2025    status = false;
2026  }
2027  return status;
2028}
2029
2030void Arguments::check_deprecated_gcs() {
2031  if (UseConcMarkSweepGC && !UseParNewGC) {
2032    warning("Using the DefNew young collector with the CMS collector is deprecated "
2033        "and will likely be removed in a future release");
2034  }
2035
2036  if (UseParNewGC && !UseConcMarkSweepGC) {
2037    // !UseConcMarkSweepGC means that we are using serial old gc. Unfortunately we don't
2038    // set up UseSerialGC properly, so that can't be used in the check here.
2039    warning("Using the ParNew young collector with the Serial old collector is deprecated "
2040        "and will likely be removed in a future release");
2041  }
2042
2043  if (CMSIncrementalMode) {
2044    warning("Using incremental CMS is deprecated and will likely be removed in a future release");
2045  }
2046}
2047
2048void Arguments::check_deprecated_gc_flags() {
2049  if (FLAG_IS_CMDLINE(MaxGCMinorPauseMillis)) {
2050    warning("Using MaxGCMinorPauseMillis as minor pause goal is deprecated"
2051            "and will likely be removed in future release");
2052  }
2053  if (FLAG_IS_CMDLINE(DefaultMaxRAMFraction)) {
2054    warning("DefaultMaxRAMFraction is deprecated and will likely be removed in a future release. "
2055        "Use MaxRAMFraction instead.");
2056  }
2057  if (FLAG_IS_CMDLINE(UseCMSCompactAtFullCollection)) {
2058    warning("UseCMSCompactAtFullCollection is deprecated and will likely be removed in a future release.");
2059  }
2060  if (FLAG_IS_CMDLINE(CMSFullGCsBeforeCompaction)) {
2061    warning("CMSFullGCsBeforeCompaction is deprecated and will likely be removed in a future release.");
2062  }
2063  if (FLAG_IS_CMDLINE(UseCMSCollectionPassing)) {
2064    warning("UseCMSCollectionPassing is deprecated and will likely be removed in a future release.");
2065  }
2066}
2067
2068// Check stack pages settings
2069bool Arguments::check_stack_pages()
2070{
2071  bool status = true;
2072  status = status && verify_min_value(StackYellowPages, 1, "StackYellowPages");
2073  status = status && verify_min_value(StackRedPages, 1, "StackRedPages");
2074  // greater stack shadow pages can't generate instruction to bang stack
2075  status = status && verify_interval(StackShadowPages, 1, 50, "StackShadowPages");
2076  return status;
2077}
2078
2079// Check the consistency of vm_init_args
2080bool Arguments::check_vm_args_consistency() {
2081  // Method for adding checks for flag consistency.
2082  // The intent is to warn the user of all possible conflicts,
2083  // before returning an error.
2084  // Note: Needs platform-dependent factoring.
2085  bool status = true;
2086
2087  // Allow both -XX:-UseStackBanging and -XX:-UseBoundThreads in non-product
2088  // builds so the cost of stack banging can be measured.
2089#if (defined(PRODUCT) && defined(SOLARIS))
2090  if (!UseBoundThreads && !UseStackBanging) {
2091    jio_fprintf(defaultStream::error_stream(),
2092                "-UseStackBanging conflicts with -UseBoundThreads\n");
2093
2094     status = false;
2095  }
2096#endif
2097
2098  if (TLABRefillWasteFraction == 0) {
2099    jio_fprintf(defaultStream::error_stream(),
2100                "TLABRefillWasteFraction should be a denominator, "
2101                "not " SIZE_FORMAT "\n",
2102                TLABRefillWasteFraction);
2103    status = false;
2104  }
2105
2106  status = status && verify_interval(AdaptiveSizePolicyWeight, 0, 100,
2107                              "AdaptiveSizePolicyWeight");
2108  status = status && verify_percentage(ThresholdTolerance, "ThresholdTolerance");
2109
2110  // Divide by bucket size to prevent a large size from causing rollover when
2111  // calculating amount of memory needed to be allocated for the String table.
2112  status = status && verify_interval(StringTableSize, minimumStringTableSize,
2113    (max_uintx / StringTable::bucket_size()), "StringTable size");
2114
2115  status = status && verify_interval(SymbolTableSize, minimumSymbolTableSize,
2116    (max_uintx / SymbolTable::bucket_size()), "SymbolTable size");
2117
2118  {
2119    // Using "else if" below to avoid printing two error messages if min > max.
2120    // This will also prevent us from reporting both min>100 and max>100 at the
2121    // same time, but that is less annoying than printing two identical errors IMHO.
2122    FormatBuffer<80> err_msg("");
2123    if (!verify_MinHeapFreeRatio(err_msg, MinHeapFreeRatio)) {
2124      jio_fprintf(defaultStream::error_stream(), "%s\n", err_msg.buffer());
2125      status = false;
2126    } else if (!verify_MaxHeapFreeRatio(err_msg, MaxHeapFreeRatio)) {
2127      jio_fprintf(defaultStream::error_stream(), "%s\n", err_msg.buffer());
2128      status = false;
2129    }
2130  }
2131
2132  // Min/MaxMetaspaceFreeRatio
2133  status = status && verify_percentage(MinMetaspaceFreeRatio, "MinMetaspaceFreeRatio");
2134  status = status && verify_percentage(MaxMetaspaceFreeRatio, "MaxMetaspaceFreeRatio");
2135
2136  if (MinMetaspaceFreeRatio > MaxMetaspaceFreeRatio) {
2137    jio_fprintf(defaultStream::error_stream(),
2138                "MinMetaspaceFreeRatio (%s" UINTX_FORMAT ") must be less than or "
2139                "equal to MaxMetaspaceFreeRatio (%s" UINTX_FORMAT ")\n",
2140                FLAG_IS_DEFAULT(MinMetaspaceFreeRatio) ? "Default: " : "",
2141                MinMetaspaceFreeRatio,
2142                FLAG_IS_DEFAULT(MaxMetaspaceFreeRatio) ? "Default: " : "",
2143                MaxMetaspaceFreeRatio);
2144    status = false;
2145  }
2146
2147  // Trying to keep 100% free is not practical
2148  MinMetaspaceFreeRatio = MIN2(MinMetaspaceFreeRatio, (uintx) 99);
2149
2150  if (FullGCALot && FLAG_IS_DEFAULT(MarkSweepAlwaysCompactCount)) {
2151    MarkSweepAlwaysCompactCount = 1;  // Move objects every gc.
2152  }
2153
2154  if (UseParallelOldGC && ParallelOldGCSplitALot) {
2155    // Settings to encourage splitting.
2156    if (!FLAG_IS_CMDLINE(NewRatio)) {
2157      FLAG_SET_CMDLINE(uintx, NewRatio, 2);
2158    }
2159    if (!FLAG_IS_CMDLINE(ScavengeBeforeFullGC)) {
2160      FLAG_SET_CMDLINE(bool, ScavengeBeforeFullGC, false);
2161    }
2162  }
2163
2164  status = status && verify_percentage(GCHeapFreeLimit, "GCHeapFreeLimit");
2165  status = status && verify_percentage(GCTimeLimit, "GCTimeLimit");
2166  if (GCTimeLimit == 100) {
2167    // Turn off gc-overhead-limit-exceeded checks
2168    FLAG_SET_DEFAULT(UseGCOverheadLimit, false);
2169  }
2170
2171  status = status && check_gc_consistency();
2172  status = status && check_stack_pages();
2173
2174  if (CMSIncrementalMode) {
2175    if (!UseConcMarkSweepGC) {
2176      jio_fprintf(defaultStream::error_stream(),
2177                  "error:  invalid argument combination.\n"
2178                  "The CMS collector (-XX:+UseConcMarkSweepGC) must be "
2179                  "selected in order\nto use CMSIncrementalMode.\n");
2180      status = false;
2181    } else {
2182      status = status && verify_percentage(CMSIncrementalDutyCycle,
2183                                  "CMSIncrementalDutyCycle");
2184      status = status && verify_percentage(CMSIncrementalDutyCycleMin,
2185                                  "CMSIncrementalDutyCycleMin");
2186      status = status && verify_percentage(CMSIncrementalSafetyFactor,
2187                                  "CMSIncrementalSafetyFactor");
2188      status = status && verify_percentage(CMSIncrementalOffset,
2189                                  "CMSIncrementalOffset");
2190      status = status && verify_percentage(CMSExpAvgFactor,
2191                                  "CMSExpAvgFactor");
2192      // If it was not set on the command line, set
2193      // CMSInitiatingOccupancyFraction to 1 so icms can initiate cycles early.
2194      if (CMSInitiatingOccupancyFraction < 0) {
2195        FLAG_SET_DEFAULT(CMSInitiatingOccupancyFraction, 1);
2196      }
2197    }
2198  }
2199
2200  // CMS space iteration, which FLSVerifyAllHeapreferences entails,
2201  // insists that we hold the requisite locks so that the iteration is
2202  // MT-safe. For the verification at start-up and shut-down, we don't
2203  // yet have a good way of acquiring and releasing these locks,
2204  // which are not visible at the CollectedHeap level. We want to
2205  // be able to acquire these locks and then do the iteration rather
2206  // than just disable the lock verification. This will be fixed under
2207  // bug 4788986.
2208  if (UseConcMarkSweepGC && FLSVerifyAllHeapReferences) {
2209    if (VerifyDuringStartup) {
2210      warning("Heap verification at start-up disabled "
2211              "(due to current incompatibility with FLSVerifyAllHeapReferences)");
2212      VerifyDuringStartup = false; // Disable verification at start-up
2213    }
2214
2215    if (VerifyBeforeExit) {
2216      warning("Heap verification at shutdown disabled "
2217              "(due to current incompatibility with FLSVerifyAllHeapReferences)");
2218      VerifyBeforeExit = false; // Disable verification at shutdown
2219    }
2220  }
2221
2222  // Note: only executed in non-PRODUCT mode
2223  if (!UseAsyncConcMarkSweepGC &&
2224      (ExplicitGCInvokesConcurrent ||
2225       ExplicitGCInvokesConcurrentAndUnloadsClasses)) {
2226    jio_fprintf(defaultStream::error_stream(),
2227                "error: +ExplicitGCInvokesConcurrent[AndUnloadsClasses] conflicts"
2228                " with -UseAsyncConcMarkSweepGC");
2229    status = false;
2230  }
2231
2232  status = status && verify_min_value(ParGCArrayScanChunk, 1, "ParGCArrayScanChunk");
2233
2234#if INCLUDE_ALL_GCS
2235  if (UseG1GC) {
2236    status = status && verify_percentage(G1NewSizePercent, "G1NewSizePercent");
2237    status = status && verify_percentage(G1MaxNewSizePercent, "G1MaxNewSizePercent");
2238    status = status && verify_interval(G1NewSizePercent, 0, G1MaxNewSizePercent, "G1NewSizePercent");
2239
2240    status = status && verify_percentage(InitiatingHeapOccupancyPercent,
2241                                         "InitiatingHeapOccupancyPercent");
2242    status = status && verify_min_value(G1RefProcDrainInterval, 1,
2243                                        "G1RefProcDrainInterval");
2244    status = status && verify_min_value((intx)G1ConcMarkStepDurationMillis, 1,
2245                                        "G1ConcMarkStepDurationMillis");
2246    status = status && verify_interval(G1ConcRSHotCardLimit, 0, max_jubyte,
2247                                       "G1ConcRSHotCardLimit");
2248    status = status && verify_interval(G1ConcRSLogCacheSize, 0, 31,
2249                                       "G1ConcRSLogCacheSize");
2250  }
2251  if (UseConcMarkSweepGC) {
2252    status = status && verify_min_value(CMSOldPLABNumRefills, 1, "CMSOldPLABNumRefills");
2253    status = status && verify_min_value(CMSOldPLABToleranceFactor, 1, "CMSOldPLABToleranceFactor");
2254    status = status && verify_min_value(CMSOldPLABMax, 1, "CMSOldPLABMax");
2255    status = status && verify_interval(CMSOldPLABMin, 1, CMSOldPLABMax, "CMSOldPLABMin");
2256
2257    status = status && verify_min_value(CMSYoungGenPerWorker, 1, "CMSYoungGenPerWorker");
2258
2259    status = status && verify_min_value(CMSSamplingGrain, 1, "CMSSamplingGrain");
2260    status = status && verify_interval(CMS_SweepWeight, 0, 100, "CMS_SweepWeight");
2261    status = status && verify_interval(CMS_FLSWeight, 0, 100, "CMS_FLSWeight");
2262
2263    status = status && verify_interval(FLSCoalescePolicy, 0, 4, "FLSCoalescePolicy");
2264
2265    status = status && verify_min_value(CMSRescanMultiple, 1, "CMSRescanMultiple");
2266    status = status && verify_min_value(CMSConcMarkMultiple, 1, "CMSConcMarkMultiple");
2267
2268    status = status && verify_interval(CMSPrecleanIter, 0, 9, "CMSPrecleanIter");
2269    status = status && verify_min_value(CMSPrecleanDenominator, 1, "CMSPrecleanDenominator");
2270    status = status && verify_interval(CMSPrecleanNumerator, 0, CMSPrecleanDenominator - 1, "CMSPrecleanNumerator");
2271
2272    status = status && verify_percentage(CMSBootstrapOccupancy, "CMSBootstrapOccupancy");
2273
2274    status = status && verify_min_value(CMSPrecleanThreshold, 100, "CMSPrecleanThreshold");
2275
2276    status = status && verify_percentage(CMSScheduleRemarkEdenPenetration, "CMSScheduleRemarkEdenPenetration");
2277    status = status && verify_min_value(CMSScheduleRemarkSamplingRatio, 1, "CMSScheduleRemarkSamplingRatio");
2278    status = status && verify_min_value(CMSBitMapYieldQuantum, 1, "CMSBitMapYieldQuantum");
2279    status = status && verify_percentage(CMSTriggerRatio, "CMSTriggerRatio");
2280    status = status && verify_percentage(CMSIsTooFullPercentage, "CMSIsTooFullPercentage");
2281  }
2282
2283  if (UseParallelGC || UseParallelOldGC) {
2284    status = status && verify_interval(ParallelOldDeadWoodLimiterMean, 0, 100, "ParallelOldDeadWoodLimiterMean");
2285    status = status && verify_interval(ParallelOldDeadWoodLimiterStdDev, 0, 100, "ParallelOldDeadWoodLimiterStdDev");
2286
2287    status = status && verify_percentage(YoungGenerationSizeIncrement, "YoungGenerationSizeIncrement");
2288    status = status && verify_percentage(TenuredGenerationSizeIncrement, "TenuredGenerationSizeIncrement");
2289
2290    status = status && verify_min_value(YoungGenerationSizeSupplementDecay, 1, "YoungGenerationSizeSupplementDecay");
2291    status = status && verify_min_value(TenuredGenerationSizeSupplementDecay, 1, "TenuredGenerationSizeSupplementDecay");
2292
2293    status = status && verify_min_value(ParGCCardsPerStrideChunk, 1, "ParGCCardsPerStrideChunk");
2294
2295    status = status && verify_min_value(ParallelOldGCSplitInterval, 0, "ParallelOldGCSplitInterval");
2296  }
2297#endif // INCLUDE_ALL_GCS
2298
2299  status = status && verify_interval(RefDiscoveryPolicy,
2300                                     ReferenceProcessor::DiscoveryPolicyMin,
2301                                     ReferenceProcessor::DiscoveryPolicyMax,
2302                                     "RefDiscoveryPolicy");
2303
2304  // Limit the lower bound of this flag to 1 as it is used in a division
2305  // expression.
2306  status = status && verify_interval(TLABWasteTargetPercent,
2307                                     1, 100, "TLABWasteTargetPercent");
2308
2309  status = status && verify_object_alignment();
2310
2311  status = status && verify_interval(CompressedClassSpaceSize, 1*M, 3*G,
2312                                      "CompressedClassSpaceSize");
2313
2314  status = status && verify_interval(MarkStackSizeMax,
2315                                  1, (max_jint - 1), "MarkStackSizeMax");
2316  status = status && verify_interval(NUMAChunkResizeWeight, 0, 100, "NUMAChunkResizeWeight");
2317
2318  status = status && verify_min_value(LogEventsBufferEntries, 1, "LogEventsBufferEntries");
2319
2320  status = status && verify_min_value(HeapSizePerGCThread, (uintx) os::vm_page_size(), "HeapSizePerGCThread");
2321
2322  status = status && verify_min_value(GCTaskTimeStampEntries, 1, "GCTaskTimeStampEntries");
2323
2324  status = status && verify_percentage(ParallelGCBufferWastePct, "ParallelGCBufferWastePct");
2325  status = status && verify_interval(TargetPLABWastePct, 1, 100, "TargetPLABWastePct");
2326
2327  status = status && verify_min_value(ParGCStridesPerThread, 1, "ParGCStridesPerThread");
2328
2329  status = status && verify_min_value(MinRAMFraction, 1, "MinRAMFraction");
2330  status = status && verify_min_value(InitialRAMFraction, 1, "InitialRAMFraction");
2331  status = status && verify_min_value(MaxRAMFraction, 1, "MaxRAMFraction");
2332  status = status && verify_min_value(DefaultMaxRAMFraction, 1, "DefaultMaxRAMFraction");
2333
2334  status = status && verify_interval(AdaptiveTimeWeight, 0, 100, "AdaptiveTimeWeight");
2335  status = status && verify_min_value(AdaptiveSizeDecrementScaleFactor, 1, "AdaptiveSizeDecrementScaleFactor");
2336
2337  status = status && verify_interval(TLABAllocationWeight, 0, 100, "TLABAllocationWeight");
2338  status = status && verify_min_value(MinTLABSize, 1, "MinTLABSize");
2339  status = status && verify_min_value(TLABRefillWasteFraction, 1, "TLABRefillWasteFraction");
2340
2341  status = status && verify_percentage(YoungGenerationSizeSupplement, "YoungGenerationSizeSupplement");
2342  status = status && verify_percentage(TenuredGenerationSizeSupplement, "TenuredGenerationSizeSupplement");
2343
2344  // the "age" field in the oop header is 4 bits; do not want to pull in markOop.hpp
2345  // just for that, so hardcode here.
2346  status = status && verify_interval(MaxTenuringThreshold, 0, 15, "MaxTenuringThreshold");
2347  status = status && verify_interval(InitialTenuringThreshold, 0, MaxTenuringThreshold, "MaxTenuringThreshold");
2348  status = status && verify_percentage(TargetSurvivorRatio, "TargetSurvivorRatio");
2349  status = status && verify_percentage(MarkSweepDeadRatio, "MarkSweepDeadRatio");
2350
2351  status = status && verify_min_value(MarkSweepAlwaysCompactCount, 1, "MarkSweepAlwaysCompactCount");
2352
2353  if (PrintNMTStatistics) {
2354#if INCLUDE_NMT
2355    if (MemTracker::tracking_level() == MemTracker::NMT_off) {
2356#endif // INCLUDE_NMT
2357      warning("PrintNMTStatistics is disabled, because native memory tracking is not enabled");
2358      PrintNMTStatistics = false;
2359#if INCLUDE_NMT
2360    }
2361#endif
2362  }
2363
2364  // Need to limit the extent of the padding to reasonable size.
2365  // 8K is well beyond the reasonable HW cache line size, even with the
2366  // aggressive prefetching, while still leaving the room for segregating
2367  // among the distinct pages.
2368  if (ContendedPaddingWidth < 0 || ContendedPaddingWidth > 8192) {
2369    jio_fprintf(defaultStream::error_stream(),
2370                "ContendedPaddingWidth=" INTX_FORMAT " must be in between %d and %d\n",
2371                ContendedPaddingWidth, 0, 8192);
2372    status = false;
2373  }
2374
2375  // Need to enforce the padding not to break the existing field alignments.
2376  // It is sufficient to check against the largest type size.
2377  if ((ContendedPaddingWidth % BytesPerLong) != 0) {
2378    jio_fprintf(defaultStream::error_stream(),
2379                "ContendedPaddingWidth=" INTX_FORMAT " must be a multiple of %d\n",
2380                ContendedPaddingWidth, BytesPerLong);
2381    status = false;
2382  }
2383
2384  // Check lower bounds of the code cache
2385  // Template Interpreter code is approximately 3X larger in debug builds.
2386  uint min_code_cache_size = (CodeCacheMinimumUseSpace DEBUG_ONLY(* 3)) + CodeCacheMinimumFreeSpace;
2387  if (InitialCodeCacheSize < (uintx)os::vm_page_size()) {
2388    jio_fprintf(defaultStream::error_stream(),
2389                "Invalid InitialCodeCacheSize=%dK. Must be at least %dK.\n", InitialCodeCacheSize/K,
2390                os::vm_page_size()/K);
2391    status = false;
2392  } else if (ReservedCodeCacheSize < InitialCodeCacheSize) {
2393    jio_fprintf(defaultStream::error_stream(),
2394                "Invalid ReservedCodeCacheSize: %dK. Must be at least InitialCodeCacheSize=%dK.\n",
2395                ReservedCodeCacheSize/K, InitialCodeCacheSize/K);
2396    status = false;
2397  } else if (ReservedCodeCacheSize < min_code_cache_size) {
2398    jio_fprintf(defaultStream::error_stream(),
2399                "Invalid ReservedCodeCacheSize=%dK. Must be at least %uK.\n", ReservedCodeCacheSize/K,
2400                min_code_cache_size/K);
2401    status = false;
2402  } else if (ReservedCodeCacheSize > 2*G) {
2403    // Code cache size larger than MAXINT is not supported.
2404    jio_fprintf(defaultStream::error_stream(),
2405                "Invalid ReservedCodeCacheSize=%dM. Must be at most %uM.\n", ReservedCodeCacheSize/M,
2406                (2*G)/M);
2407    status = false;
2408  }
2409
2410  status &= verify_interval(NmethodSweepFraction, 1, ReservedCodeCacheSize/K, "NmethodSweepFraction");
2411  status &= verify_interval(NmethodSweepActivity, 0, 2000, "NmethodSweepActivity");
2412  status &= verify_interval(CodeCacheMinBlockLength, 1, 100, "CodeCacheMinBlockLength");
2413  status &= verify_interval(CodeCacheSegmentSize, 1, 1024, "CodeCacheSegmentSize");
2414
2415  // TieredCompilation needs at least 2 compiler threads.
2416  const int num_min_compiler_threads = (TieredCompilation && (TieredStopAtLevel >= CompLevel_full_optimization)) ? 2 : 1;
2417  status &=verify_min_value(CICompilerCount, num_min_compiler_threads, "CICompilerCount");
2418
2419  return status;
2420}
2421
2422bool Arguments::is_bad_option(const JavaVMOption* option, jboolean ignore,
2423  const char* option_type) {
2424  if (ignore) return false;
2425
2426  const char* spacer = " ";
2427  if (option_type == NULL) {
2428    option_type = ++spacer; // Set both to the empty string.
2429  }
2430
2431  if (os::obsolete_option(option)) {
2432    jio_fprintf(defaultStream::error_stream(),
2433                "Obsolete %s%soption: %s\n", option_type, spacer,
2434      option->optionString);
2435    return false;
2436  } else {
2437    jio_fprintf(defaultStream::error_stream(),
2438                "Unrecognized %s%soption: %s\n", option_type, spacer,
2439      option->optionString);
2440    return true;
2441  }
2442}
2443
2444static const char* user_assertion_options[] = {
2445  "-da", "-ea", "-disableassertions", "-enableassertions", 0
2446};
2447
2448static const char* system_assertion_options[] = {
2449  "-dsa", "-esa", "-disablesystemassertions", "-enablesystemassertions", 0
2450};
2451
2452// Return true if any of the strings in null-terminated array 'names' matches.
2453// If tail_allowed is true, then the tail must begin with a colon; otherwise,
2454// the option must match exactly.
2455static bool match_option(const JavaVMOption* option, const char** names, const char** tail,
2456  bool tail_allowed) {
2457  for (/* empty */; *names != NULL; ++names) {
2458    if (match_option(option, *names, tail)) {
2459      if (**tail == '\0' || tail_allowed && **tail == ':') {
2460        return true;
2461      }
2462    }
2463  }
2464  return false;
2465}
2466
2467bool Arguments::parse_uintx(const char* value,
2468                            uintx* uintx_arg,
2469                            uintx min_size) {
2470
2471  // Check the sign first since atomull() parses only unsigned values.
2472  bool value_is_positive = !(*value == '-');
2473
2474  if (value_is_positive) {
2475    julong n;
2476    bool good_return = atomull(value, &n);
2477    if (good_return) {
2478      bool above_minimum = n >= min_size;
2479      bool value_is_too_large = n > max_uintx;
2480
2481      if (above_minimum && !value_is_too_large) {
2482        *uintx_arg = n;
2483        return true;
2484      }
2485    }
2486  }
2487  return false;
2488}
2489
2490Arguments::ArgsRange Arguments::parse_memory_size(const char* s,
2491                                                  julong* long_arg,
2492                                                  julong min_size) {
2493  if (!atomull(s, long_arg)) return arg_unreadable;
2494  return check_memory_size(*long_arg, min_size);
2495}
2496
2497// Parse JavaVMInitArgs structure
2498
2499jint Arguments::parse_vm_init_args(const JavaVMInitArgs* args) {
2500  // For components of the system classpath.
2501  SysClassPath scp(Arguments::get_sysclasspath());
2502  bool scp_assembly_required = false;
2503
2504  // Save default settings for some mode flags
2505  Arguments::_AlwaysCompileLoopMethods = AlwaysCompileLoopMethods;
2506  Arguments::_UseOnStackReplacement    = UseOnStackReplacement;
2507  Arguments::_ClipInlining             = ClipInlining;
2508  Arguments::_BackgroundCompilation    = BackgroundCompilation;
2509
2510  // Setup flags for mixed which is the default
2511  set_mode_flags(_mixed);
2512
2513  // Parse JAVA_TOOL_OPTIONS environment variable (if present)
2514  jint result = parse_java_tool_options_environment_variable(&scp, &scp_assembly_required);
2515  if (result != JNI_OK) {
2516    return result;
2517  }
2518
2519  // Parse JavaVMInitArgs structure passed in
2520  result = parse_each_vm_init_arg(args, &scp, &scp_assembly_required, Flag::COMMAND_LINE);
2521  if (result != JNI_OK) {
2522    return result;
2523  }
2524
2525  // Parse _JAVA_OPTIONS environment variable (if present) (mimics classic VM)
2526  result = parse_java_options_environment_variable(&scp, &scp_assembly_required);
2527  if (result != JNI_OK) {
2528    return result;
2529  }
2530
2531  // Do final processing now that all arguments have been parsed
2532  result = finalize_vm_init_args(&scp, scp_assembly_required);
2533  if (result != JNI_OK) {
2534    return result;
2535  }
2536
2537  return JNI_OK;
2538}
2539
2540// Checks if name in command-line argument -agent{lib,path}:name[=options]
2541// represents a valid HPROF of JDWP agent.  is_path==true denotes that we
2542// are dealing with -agentpath (case where name is a path), otherwise with
2543// -agentlib
2544bool valid_hprof_or_jdwp_agent(char *name, bool is_path) {
2545  char *_name;
2546  const char *_hprof = "hprof", *_jdwp = "jdwp";
2547  size_t _len_hprof, _len_jdwp, _len_prefix;
2548
2549  if (is_path) {
2550    if ((_name = strrchr(name, (int) *os::file_separator())) == NULL) {
2551      return false;
2552    }
2553
2554    _name++;  // skip past last path separator
2555    _len_prefix = strlen(JNI_LIB_PREFIX);
2556
2557    if (strncmp(_name, JNI_LIB_PREFIX, _len_prefix) != 0) {
2558      return false;
2559    }
2560
2561    _name += _len_prefix;
2562    _len_hprof = strlen(_hprof);
2563    _len_jdwp = strlen(_jdwp);
2564
2565    if (strncmp(_name, _hprof, _len_hprof) == 0) {
2566      _name += _len_hprof;
2567    }
2568    else if (strncmp(_name, _jdwp, _len_jdwp) == 0) {
2569      _name += _len_jdwp;
2570    }
2571    else {
2572      return false;
2573    }
2574
2575    if (strcmp(_name, JNI_LIB_SUFFIX) != 0) {
2576      return false;
2577    }
2578
2579    return true;
2580  }
2581
2582  if (strcmp(name, _hprof) == 0 || strcmp(name, _jdwp) == 0) {
2583    return true;
2584  }
2585
2586  return false;
2587}
2588
2589jint Arguments::parse_each_vm_init_arg(const JavaVMInitArgs* args,
2590                                       SysClassPath* scp_p,
2591                                       bool* scp_assembly_required_p,
2592                                       Flag::Flags origin) {
2593  // Remaining part of option string
2594  const char* tail;
2595
2596  // iterate over arguments
2597  for (int index = 0; index < args->nOptions; index++) {
2598    bool is_absolute_path = false;  // for -agentpath vs -agentlib
2599
2600    const JavaVMOption* option = args->options + index;
2601
2602    if (!match_option(option, "-Djava.class.path", &tail) &&
2603        !match_option(option, "-Dsun.java.command", &tail) &&
2604        !match_option(option, "-Dsun.java.launcher", &tail)) {
2605
2606        // add all jvm options to the jvm_args string. This string
2607        // is used later to set the java.vm.args PerfData string constant.
2608        // the -Djava.class.path and the -Dsun.java.command options are
2609        // omitted from jvm_args string as each have their own PerfData
2610        // string constant object.
2611        build_jvm_args(option->optionString);
2612    }
2613
2614    // -verbose:[class/gc/jni]
2615    if (match_option(option, "-verbose", &tail)) {
2616      if (!strcmp(tail, ":class") || !strcmp(tail, "")) {
2617        FLAG_SET_CMDLINE(bool, TraceClassLoading, true);
2618        FLAG_SET_CMDLINE(bool, TraceClassUnloading, true);
2619      } else if (!strcmp(tail, ":gc")) {
2620        FLAG_SET_CMDLINE(bool, PrintGC, true);
2621      } else if (!strcmp(tail, ":jni")) {
2622        FLAG_SET_CMDLINE(bool, PrintJNIResolving, true);
2623      }
2624    // -da / -ea / -disableassertions / -enableassertions
2625    // These accept an optional class/package name separated by a colon, e.g.,
2626    // -da:java.lang.Thread.
2627    } else if (match_option(option, user_assertion_options, &tail, true)) {
2628      bool enable = option->optionString[1] == 'e';     // char after '-' is 'e'
2629      if (*tail == '\0') {
2630        JavaAssertions::setUserClassDefault(enable);
2631      } else {
2632        assert(*tail == ':', "bogus match by match_option()");
2633        JavaAssertions::addOption(tail + 1, enable);
2634      }
2635    // -dsa / -esa / -disablesystemassertions / -enablesystemassertions
2636    } else if (match_option(option, system_assertion_options, &tail, false)) {
2637      bool enable = option->optionString[1] == 'e';     // char after '-' is 'e'
2638      JavaAssertions::setSystemClassDefault(enable);
2639    // -bootclasspath:
2640    } else if (match_option(option, "-Xbootclasspath:", &tail)) {
2641      scp_p->reset_path(tail);
2642      *scp_assembly_required_p = true;
2643    // -bootclasspath/a:
2644    } else if (match_option(option, "-Xbootclasspath/a:", &tail)) {
2645      scp_p->add_suffix(tail);
2646      *scp_assembly_required_p = true;
2647    // -bootclasspath/p:
2648    } else if (match_option(option, "-Xbootclasspath/p:", &tail)) {
2649      scp_p->add_prefix(tail);
2650      *scp_assembly_required_p = true;
2651    // -Xrun
2652    } else if (match_option(option, "-Xrun", &tail)) {
2653      if (tail != NULL) {
2654        const char* pos = strchr(tail, ':');
2655        size_t len = (pos == NULL) ? strlen(tail) : pos - tail;
2656        char* name = (char*)memcpy(NEW_C_HEAP_ARRAY(char, len + 1, mtInternal), tail, len);
2657        name[len] = '\0';
2658
2659        char *options = NULL;
2660        if(pos != NULL) {
2661          size_t len2 = strlen(pos+1) + 1; // options start after ':'.  Final zero must be copied.
2662          options = (char*)memcpy(NEW_C_HEAP_ARRAY(char, len2, mtInternal), pos+1, len2);
2663        }
2664#if !INCLUDE_JVMTI
2665        if ((strcmp(name, "hprof") == 0) || (strcmp(name, "jdwp") == 0)) {
2666          jio_fprintf(defaultStream::error_stream(),
2667            "Profiling and debugging agents are not supported in this VM\n");
2668          return JNI_ERR;
2669        }
2670#endif // !INCLUDE_JVMTI
2671        add_init_library(name, options);
2672      }
2673    // -agentlib and -agentpath
2674    } else if (match_option(option, "-agentlib:", &tail) ||
2675          (is_absolute_path = match_option(option, "-agentpath:", &tail))) {
2676      if(tail != NULL) {
2677        const char* pos = strchr(tail, '=');
2678        size_t len = (pos == NULL) ? strlen(tail) : pos - tail;
2679        char* name = strncpy(NEW_C_HEAP_ARRAY(char, len + 1, mtInternal), tail, len);
2680        name[len] = '\0';
2681
2682        char *options = NULL;
2683        if(pos != NULL) {
2684          options = strcpy(NEW_C_HEAP_ARRAY(char, strlen(pos + 1) + 1, mtInternal), pos + 1);
2685        }
2686#if !INCLUDE_JVMTI
2687        if (valid_hprof_or_jdwp_agent(name, is_absolute_path)) {
2688          jio_fprintf(defaultStream::error_stream(),
2689            "Profiling and debugging agents are not supported in this VM\n");
2690          return JNI_ERR;
2691        }
2692#endif // !INCLUDE_JVMTI
2693        add_init_agent(name, options, is_absolute_path);
2694      }
2695    // -javaagent
2696    } else if (match_option(option, "-javaagent:", &tail)) {
2697#if !INCLUDE_JVMTI
2698      jio_fprintf(defaultStream::error_stream(),
2699        "Instrumentation agents are not supported in this VM\n");
2700      return JNI_ERR;
2701#else
2702      if(tail != NULL) {
2703        char *options = strcpy(NEW_C_HEAP_ARRAY(char, strlen(tail) + 1, mtInternal), tail);
2704        add_init_agent("instrument", options, false);
2705      }
2706#endif // !INCLUDE_JVMTI
2707    // -Xnoclassgc
2708    } else if (match_option(option, "-Xnoclassgc", &tail)) {
2709      FLAG_SET_CMDLINE(bool, ClassUnloading, false);
2710    // -Xincgc: i-CMS
2711    } else if (match_option(option, "-Xincgc", &tail)) {
2712      FLAG_SET_CMDLINE(bool, UseConcMarkSweepGC, true);
2713      FLAG_SET_CMDLINE(bool, CMSIncrementalMode, true);
2714    // -Xnoincgc: no i-CMS
2715    } else if (match_option(option, "-Xnoincgc", &tail)) {
2716      FLAG_SET_CMDLINE(bool, UseConcMarkSweepGC, false);
2717      FLAG_SET_CMDLINE(bool, CMSIncrementalMode, false);
2718    // -Xconcgc
2719    } else if (match_option(option, "-Xconcgc", &tail)) {
2720      FLAG_SET_CMDLINE(bool, UseConcMarkSweepGC, true);
2721    // -Xnoconcgc
2722    } else if (match_option(option, "-Xnoconcgc", &tail)) {
2723      FLAG_SET_CMDLINE(bool, UseConcMarkSweepGC, false);
2724    // -Xbatch
2725    } else if (match_option(option, "-Xbatch", &tail)) {
2726      FLAG_SET_CMDLINE(bool, BackgroundCompilation, false);
2727    // -Xmn for compatibility with other JVM vendors
2728    } else if (match_option(option, "-Xmn", &tail)) {
2729      julong long_initial_young_size = 0;
2730      ArgsRange errcode = parse_memory_size(tail, &long_initial_young_size, 1);
2731      if (errcode != arg_in_range) {
2732        jio_fprintf(defaultStream::error_stream(),
2733                    "Invalid initial young generation size: %s\n", option->optionString);
2734        describe_range_error(errcode);
2735        return JNI_EINVAL;
2736      }
2737      FLAG_SET_CMDLINE(uintx, MaxNewSize, (uintx)long_initial_young_size);
2738      FLAG_SET_CMDLINE(uintx, NewSize, (uintx)long_initial_young_size);
2739    // -Xms
2740    } else if (match_option(option, "-Xms", &tail)) {
2741      julong long_initial_heap_size = 0;
2742      // an initial heap size of 0 means automatically determine
2743      ArgsRange errcode = parse_memory_size(tail, &long_initial_heap_size, 0);
2744      if (errcode != arg_in_range) {
2745        jio_fprintf(defaultStream::error_stream(),
2746                    "Invalid initial heap size: %s\n", option->optionString);
2747        describe_range_error(errcode);
2748        return JNI_EINVAL;
2749      }
2750      set_min_heap_size((uintx)long_initial_heap_size);
2751      // Currently the minimum size and the initial heap sizes are the same.
2752      // Can be overridden with -XX:InitialHeapSize.
2753      FLAG_SET_CMDLINE(uintx, InitialHeapSize, (uintx)long_initial_heap_size);
2754    // -Xmx
2755    } else if (match_option(option, "-Xmx", &tail) || match_option(option, "-XX:MaxHeapSize=", &tail)) {
2756      julong long_max_heap_size = 0;
2757      ArgsRange errcode = parse_memory_size(tail, &long_max_heap_size, 1);
2758      if (errcode != arg_in_range) {
2759        jio_fprintf(defaultStream::error_stream(),
2760                    "Invalid maximum heap size: %s\n", option->optionString);
2761        describe_range_error(errcode);
2762        return JNI_EINVAL;
2763      }
2764      FLAG_SET_CMDLINE(uintx, MaxHeapSize, (uintx)long_max_heap_size);
2765    // Xmaxf
2766    } else if (match_option(option, "-Xmaxf", &tail)) {
2767      char* err;
2768      int maxf = (int)(strtod(tail, &err) * 100);
2769      if (*err != '\0' || *tail == '\0' || maxf < 0 || maxf > 100) {
2770        jio_fprintf(defaultStream::error_stream(),
2771                    "Bad max heap free percentage size: %s\n",
2772                    option->optionString);
2773        return JNI_EINVAL;
2774      } else {
2775        FLAG_SET_CMDLINE(uintx, MaxHeapFreeRatio, maxf);
2776      }
2777    // Xminf
2778    } else if (match_option(option, "-Xminf", &tail)) {
2779      char* err;
2780      int minf = (int)(strtod(tail, &err) * 100);
2781      if (*err != '\0' || *tail == '\0' || minf < 0 || minf > 100) {
2782        jio_fprintf(defaultStream::error_stream(),
2783                    "Bad min heap free percentage size: %s\n",
2784                    option->optionString);
2785        return JNI_EINVAL;
2786      } else {
2787        FLAG_SET_CMDLINE(uintx, MinHeapFreeRatio, minf);
2788      }
2789    // -Xss
2790    } else if (match_option(option, "-Xss", &tail)) {
2791      julong long_ThreadStackSize = 0;
2792      ArgsRange errcode = parse_memory_size(tail, &long_ThreadStackSize, 1000);
2793      if (errcode != arg_in_range) {
2794        jio_fprintf(defaultStream::error_stream(),
2795                    "Invalid thread stack size: %s\n", option->optionString);
2796        describe_range_error(errcode);
2797        return JNI_EINVAL;
2798      }
2799      // Internally track ThreadStackSize in units of 1024 bytes.
2800      FLAG_SET_CMDLINE(intx, ThreadStackSize,
2801                              round_to((int)long_ThreadStackSize, K) / K);
2802    // -Xoss
2803    } else if (match_option(option, "-Xoss", &tail)) {
2804          // HotSpot does not have separate native and Java stacks, ignore silently for compatibility
2805    } else if (match_option(option, "-XX:CodeCacheExpansionSize=", &tail)) {
2806      julong long_CodeCacheExpansionSize = 0;
2807      ArgsRange errcode = parse_memory_size(tail, &long_CodeCacheExpansionSize, os::vm_page_size());
2808      if (errcode != arg_in_range) {
2809        jio_fprintf(defaultStream::error_stream(),
2810                   "Invalid argument: %s. Must be at least %luK.\n", option->optionString,
2811                   os::vm_page_size()/K);
2812        return JNI_EINVAL;
2813      }
2814      FLAG_SET_CMDLINE(uintx, CodeCacheExpansionSize, (uintx)long_CodeCacheExpansionSize);
2815    } else if (match_option(option, "-Xmaxjitcodesize", &tail) ||
2816               match_option(option, "-XX:ReservedCodeCacheSize=", &tail)) {
2817      julong long_ReservedCodeCacheSize = 0;
2818
2819      ArgsRange errcode = parse_memory_size(tail, &long_ReservedCodeCacheSize, 1);
2820      if (errcode != arg_in_range) {
2821        jio_fprintf(defaultStream::error_stream(),
2822                    "Invalid maximum code cache size: %s.\n", option->optionString);
2823        return JNI_EINVAL;
2824      }
2825      FLAG_SET_CMDLINE(uintx, ReservedCodeCacheSize, (uintx)long_ReservedCodeCacheSize);
2826      //-XX:IncreaseFirstTierCompileThresholdAt=
2827      } else if (match_option(option, "-XX:IncreaseFirstTierCompileThresholdAt=", &tail)) {
2828        uintx uint_IncreaseFirstTierCompileThresholdAt = 0;
2829        if (!parse_uintx(tail, &uint_IncreaseFirstTierCompileThresholdAt, 0) || uint_IncreaseFirstTierCompileThresholdAt > 99) {
2830          jio_fprintf(defaultStream::error_stream(),
2831                      "Invalid value for IncreaseFirstTierCompileThresholdAt: %s. Should be between 0 and 99.\n",
2832                      option->optionString);
2833          return JNI_EINVAL;
2834        }
2835        FLAG_SET_CMDLINE(uintx, IncreaseFirstTierCompileThresholdAt, (uintx)uint_IncreaseFirstTierCompileThresholdAt);
2836    // -green
2837    } else if (match_option(option, "-green", &tail)) {
2838      jio_fprintf(defaultStream::error_stream(),
2839                  "Green threads support not available\n");
2840          return JNI_EINVAL;
2841    // -native
2842    } else if (match_option(option, "-native", &tail)) {
2843          // HotSpot always uses native threads, ignore silently for compatibility
2844    // -Xsqnopause
2845    } else if (match_option(option, "-Xsqnopause", &tail)) {
2846          // EVM option, ignore silently for compatibility
2847    // -Xrs
2848    } else if (match_option(option, "-Xrs", &tail)) {
2849          // Classic/EVM option, new functionality
2850      FLAG_SET_CMDLINE(bool, ReduceSignalUsage, true);
2851    } else if (match_option(option, "-Xusealtsigs", &tail)) {
2852          // change default internal VM signals used - lower case for back compat
2853      FLAG_SET_CMDLINE(bool, UseAltSigs, true);
2854    // -Xoptimize
2855    } else if (match_option(option, "-Xoptimize", &tail)) {
2856          // EVM option, ignore silently for compatibility
2857    // -Xprof
2858    } else if (match_option(option, "-Xprof", &tail)) {
2859#if INCLUDE_FPROF
2860      _has_profile = true;
2861#else // INCLUDE_FPROF
2862      jio_fprintf(defaultStream::error_stream(),
2863        "Flat profiling is not supported in this VM.\n");
2864      return JNI_ERR;
2865#endif // INCLUDE_FPROF
2866    // -Xconcurrentio
2867    } else if (match_option(option, "-Xconcurrentio", &tail)) {
2868      FLAG_SET_CMDLINE(bool, UseLWPSynchronization, true);
2869      FLAG_SET_CMDLINE(bool, BackgroundCompilation, false);
2870      FLAG_SET_CMDLINE(intx, DeferThrSuspendLoopCount, 1);
2871      FLAG_SET_CMDLINE(bool, UseTLAB, false);
2872      FLAG_SET_CMDLINE(uintx, NewSizeThreadIncrease, 16 * K);  // 20Kb per thread added to new generation
2873
2874      // -Xinternalversion
2875    } else if (match_option(option, "-Xinternalversion", &tail)) {
2876      jio_fprintf(defaultStream::output_stream(), "%s\n",
2877                  VM_Version::internal_vm_info_string());
2878      vm_exit(0);
2879#ifndef PRODUCT
2880    // -Xprintflags
2881    } else if (match_option(option, "-Xprintflags", &tail)) {
2882      CommandLineFlags::printFlags(tty, false);
2883      vm_exit(0);
2884#endif
2885    // -D
2886    } else if (match_option(option, "-D", &tail)) {
2887      if (!add_property(tail)) {
2888        return JNI_ENOMEM;
2889      }
2890      // Out of the box management support
2891      if (match_option(option, "-Dcom.sun.management", &tail)) {
2892#if INCLUDE_MANAGEMENT
2893        FLAG_SET_CMDLINE(bool, ManagementServer, true);
2894#else
2895        jio_fprintf(defaultStream::output_stream(),
2896          "-Dcom.sun.management is not supported in this VM.\n");
2897        return JNI_ERR;
2898#endif
2899      }
2900    // -Xint
2901    } else if (match_option(option, "-Xint", &tail)) {
2902          set_mode_flags(_int);
2903    // -Xmixed
2904    } else if (match_option(option, "-Xmixed", &tail)) {
2905          set_mode_flags(_mixed);
2906    // -Xcomp
2907    } else if (match_option(option, "-Xcomp", &tail)) {
2908      // for testing the compiler; turn off all flags that inhibit compilation
2909          set_mode_flags(_comp);
2910    // -Xshare:dump
2911    } else if (match_option(option, "-Xshare:dump", &tail)) {
2912      FLAG_SET_CMDLINE(bool, DumpSharedSpaces, true);
2913      set_mode_flags(_int);     // Prevent compilation, which creates objects
2914    // -Xshare:on
2915    } else if (match_option(option, "-Xshare:on", &tail)) {
2916      FLAG_SET_CMDLINE(bool, UseSharedSpaces, true);
2917      FLAG_SET_CMDLINE(bool, RequireSharedSpaces, true);
2918    // -Xshare:auto
2919    } else if (match_option(option, "-Xshare:auto", &tail)) {
2920      FLAG_SET_CMDLINE(bool, UseSharedSpaces, true);
2921      FLAG_SET_CMDLINE(bool, RequireSharedSpaces, false);
2922    // -Xshare:off
2923    } else if (match_option(option, "-Xshare:off", &tail)) {
2924      FLAG_SET_CMDLINE(bool, UseSharedSpaces, false);
2925      FLAG_SET_CMDLINE(bool, RequireSharedSpaces, false);
2926    // -Xverify
2927    } else if (match_option(option, "-Xverify", &tail)) {
2928      if (strcmp(tail, ":all") == 0 || strcmp(tail, "") == 0) {
2929        FLAG_SET_CMDLINE(bool, BytecodeVerificationLocal, true);
2930        FLAG_SET_CMDLINE(bool, BytecodeVerificationRemote, true);
2931      } else if (strcmp(tail, ":remote") == 0) {
2932        FLAG_SET_CMDLINE(bool, BytecodeVerificationLocal, false);
2933        FLAG_SET_CMDLINE(bool, BytecodeVerificationRemote, true);
2934      } else if (strcmp(tail, ":none") == 0) {
2935        FLAG_SET_CMDLINE(bool, BytecodeVerificationLocal, false);
2936        FLAG_SET_CMDLINE(bool, BytecodeVerificationRemote, false);
2937      } else if (is_bad_option(option, args->ignoreUnrecognized, "verification")) {
2938        return JNI_EINVAL;
2939      }
2940    // -Xdebug
2941    } else if (match_option(option, "-Xdebug", &tail)) {
2942      // note this flag has been used, then ignore
2943      set_xdebug_mode(true);
2944    // -Xnoagent
2945    } else if (match_option(option, "-Xnoagent", &tail)) {
2946      // For compatibility with classic. HotSpot refuses to load the old style agent.dll.
2947    } else if (match_option(option, "-Xboundthreads", &tail)) {
2948      // Bind user level threads to kernel threads (Solaris only)
2949      FLAG_SET_CMDLINE(bool, UseBoundThreads, true);
2950    } else if (match_option(option, "-Xloggc:", &tail)) {
2951      // Redirect GC output to the file. -Xloggc:<filename>
2952      // ostream_init_log(), when called will use this filename
2953      // to initialize a fileStream.
2954      _gc_log_filename = strdup(tail);
2955     if (!is_filename_valid(_gc_log_filename)) {
2956       jio_fprintf(defaultStream::output_stream(),
2957                  "Invalid file name for use with -Xloggc: Filename can only contain the "
2958                  "characters [A-Z][a-z][0-9]-_.%%[p|t] but it has been %s\n"
2959                  "Note %%p or %%t can only be used once\n", _gc_log_filename);
2960        return JNI_EINVAL;
2961      }
2962      FLAG_SET_CMDLINE(bool, PrintGC, true);
2963      FLAG_SET_CMDLINE(bool, PrintGCTimeStamps, true);
2964
2965    // JNI hooks
2966    } else if (match_option(option, "-Xcheck", &tail)) {
2967      if (!strcmp(tail, ":jni")) {
2968#if !INCLUDE_JNI_CHECK
2969        warning("JNI CHECKING is not supported in this VM");
2970#else
2971        CheckJNICalls = true;
2972#endif // INCLUDE_JNI_CHECK
2973      } else if (is_bad_option(option, args->ignoreUnrecognized,
2974                                     "check")) {
2975        return JNI_EINVAL;
2976      }
2977    } else if (match_option(option, "vfprintf", &tail)) {
2978      _vfprintf_hook = CAST_TO_FN_PTR(vfprintf_hook_t, option->extraInfo);
2979    } else if (match_option(option, "exit", &tail)) {
2980      _exit_hook = CAST_TO_FN_PTR(exit_hook_t, option->extraInfo);
2981    } else if (match_option(option, "abort", &tail)) {
2982      _abort_hook = CAST_TO_FN_PTR(abort_hook_t, option->extraInfo);
2983    // -XX:+AggressiveHeap
2984    } else if (match_option(option, "-XX:+AggressiveHeap", &tail)) {
2985
2986      // This option inspects the machine and attempts to set various
2987      // parameters to be optimal for long-running, memory allocation
2988      // intensive jobs.  It is intended for machines with large
2989      // amounts of cpu and memory.
2990
2991      // initHeapSize is needed since _initial_heap_size is 4 bytes on a 32 bit
2992      // VM, but we may not be able to represent the total physical memory
2993      // available (like having 8gb of memory on a box but using a 32bit VM).
2994      // Thus, we need to make sure we're using a julong for intermediate
2995      // calculations.
2996      julong initHeapSize;
2997      julong total_memory = os::physical_memory();
2998
2999      if (total_memory < (julong)256*M) {
3000        jio_fprintf(defaultStream::error_stream(),
3001                    "You need at least 256mb of memory to use -XX:+AggressiveHeap\n");
3002        vm_exit(1);
3003      }
3004
3005      // The heap size is half of available memory, or (at most)
3006      // all of possible memory less 160mb (leaving room for the OS
3007      // when using ISM).  This is the maximum; because adaptive sizing
3008      // is turned on below, the actual space used may be smaller.
3009
3010      initHeapSize = MIN2(total_memory / (julong)2,
3011                          total_memory - (julong)160*M);
3012
3013      initHeapSize = limit_by_allocatable_memory(initHeapSize);
3014
3015      if (FLAG_IS_DEFAULT(MaxHeapSize)) {
3016         FLAG_SET_CMDLINE(uintx, MaxHeapSize, initHeapSize);
3017         FLAG_SET_CMDLINE(uintx, InitialHeapSize, initHeapSize);
3018         // Currently the minimum size and the initial heap sizes are the same.
3019         set_min_heap_size(initHeapSize);
3020      }
3021      if (FLAG_IS_DEFAULT(NewSize)) {
3022         // Make the young generation 3/8ths of the total heap.
3023         FLAG_SET_CMDLINE(uintx, NewSize,
3024                                ((julong)MaxHeapSize / (julong)8) * (julong)3);
3025         FLAG_SET_CMDLINE(uintx, MaxNewSize, NewSize);
3026      }
3027
3028#ifndef _ALLBSD_SOURCE  // UseLargePages is not yet supported on BSD.
3029      FLAG_SET_DEFAULT(UseLargePages, true);
3030#endif
3031
3032      // Increase some data structure sizes for efficiency
3033      FLAG_SET_CMDLINE(uintx, BaseFootPrintEstimate, MaxHeapSize);
3034      FLAG_SET_CMDLINE(bool, ResizeTLAB, false);
3035      FLAG_SET_CMDLINE(uintx, TLABSize, 256*K);
3036
3037      // See the OldPLABSize comment below, but replace 'after promotion'
3038      // with 'after copying'.  YoungPLABSize is the size of the survivor
3039      // space per-gc-thread buffers.  The default is 4kw.
3040      FLAG_SET_CMDLINE(uintx, YoungPLABSize, 256*K);      // Note: this is in words
3041
3042      // OldPLABSize is the size of the buffers in the old gen that
3043      // UseParallelGC uses to promote live data that doesn't fit in the
3044      // survivor spaces.  At any given time, there's one for each gc thread.
3045      // The default size is 1kw. These buffers are rarely used, since the
3046      // survivor spaces are usually big enough.  For specjbb, however, there
3047      // are occasions when there's lots of live data in the young gen
3048      // and we end up promoting some of it.  We don't have a definite
3049      // explanation for why bumping OldPLABSize helps, but the theory
3050      // is that a bigger PLAB results in retaining something like the
3051      // original allocation order after promotion, which improves mutator
3052      // locality.  A minor effect may be that larger PLABs reduce the
3053      // number of PLAB allocation events during gc.  The value of 8kw
3054      // was arrived at by experimenting with specjbb.
3055      FLAG_SET_CMDLINE(uintx, OldPLABSize, 8*K);  // Note: this is in words
3056
3057      // Enable parallel GC and adaptive generation sizing
3058      FLAG_SET_CMDLINE(bool, UseParallelGC, true);
3059      FLAG_SET_DEFAULT(ParallelGCThreads,
3060                       Abstract_VM_Version::parallel_worker_threads());
3061
3062      // Encourage steady state memory management
3063      FLAG_SET_CMDLINE(uintx, ThresholdTolerance, 100);
3064
3065      // This appears to improve mutator locality
3066      FLAG_SET_CMDLINE(bool, ScavengeBeforeFullGC, false);
3067
3068      // Get around early Solaris scheduling bug
3069      // (affinity vs other jobs on system)
3070      // but disallow DR and offlining (5008695).
3071      FLAG_SET_CMDLINE(bool, BindGCTaskThreadsToCPUs, true);
3072
3073    } else if (match_option(option, "-XX:+NeverTenure", &tail)) {
3074      // The last option must always win.
3075      FLAG_SET_CMDLINE(bool, AlwaysTenure, false);
3076      FLAG_SET_CMDLINE(bool, NeverTenure, true);
3077    } else if (match_option(option, "-XX:+AlwaysTenure", &tail)) {
3078      // The last option must always win.
3079      FLAG_SET_CMDLINE(bool, NeverTenure, false);
3080      FLAG_SET_CMDLINE(bool, AlwaysTenure, true);
3081    } else if (match_option(option, "-XX:+CMSPermGenSweepingEnabled", &tail) ||
3082               match_option(option, "-XX:-CMSPermGenSweepingEnabled", &tail)) {
3083      jio_fprintf(defaultStream::error_stream(),
3084        "Please use CMSClassUnloadingEnabled in place of "
3085        "CMSPermGenSweepingEnabled in the future\n");
3086    } else if (match_option(option, "-XX:+UseGCTimeLimit", &tail)) {
3087      FLAG_SET_CMDLINE(bool, UseGCOverheadLimit, true);
3088      jio_fprintf(defaultStream::error_stream(),
3089        "Please use -XX:+UseGCOverheadLimit in place of "
3090        "-XX:+UseGCTimeLimit in the future\n");
3091    } else if (match_option(option, "-XX:-UseGCTimeLimit", &tail)) {
3092      FLAG_SET_CMDLINE(bool, UseGCOverheadLimit, false);
3093      jio_fprintf(defaultStream::error_stream(),
3094        "Please use -XX:-UseGCOverheadLimit in place of "
3095        "-XX:-UseGCTimeLimit in the future\n");
3096    // The TLE options are for compatibility with 1.3 and will be
3097    // removed without notice in a future release.  These options
3098    // are not to be documented.
3099    } else if (match_option(option, "-XX:MaxTLERatio=", &tail)) {
3100      // No longer used.
3101    } else if (match_option(option, "-XX:+ResizeTLE", &tail)) {
3102      FLAG_SET_CMDLINE(bool, ResizeTLAB, true);
3103    } else if (match_option(option, "-XX:-ResizeTLE", &tail)) {
3104      FLAG_SET_CMDLINE(bool, ResizeTLAB, false);
3105    } else if (match_option(option, "-XX:+PrintTLE", &tail)) {
3106      FLAG_SET_CMDLINE(bool, PrintTLAB, true);
3107    } else if (match_option(option, "-XX:-PrintTLE", &tail)) {
3108      FLAG_SET_CMDLINE(bool, PrintTLAB, false);
3109    } else if (match_option(option, "-XX:TLEFragmentationRatio=", &tail)) {
3110      // No longer used.
3111    } else if (match_option(option, "-XX:TLESize=", &tail)) {
3112      julong long_tlab_size = 0;
3113      ArgsRange errcode = parse_memory_size(tail, &long_tlab_size, 1);
3114      if (errcode != arg_in_range) {
3115        jio_fprintf(defaultStream::error_stream(),
3116                    "Invalid TLAB size: %s\n", option->optionString);
3117        describe_range_error(errcode);
3118        return JNI_EINVAL;
3119      }
3120      FLAG_SET_CMDLINE(uintx, TLABSize, long_tlab_size);
3121    } else if (match_option(option, "-XX:TLEThreadRatio=", &tail)) {
3122      // No longer used.
3123    } else if (match_option(option, "-XX:+UseTLE", &tail)) {
3124      FLAG_SET_CMDLINE(bool, UseTLAB, true);
3125    } else if (match_option(option, "-XX:-UseTLE", &tail)) {
3126      FLAG_SET_CMDLINE(bool, UseTLAB, false);
3127    } else if (match_option(option, "-XX:+DisplayVMOutputToStderr", &tail)) {
3128      FLAG_SET_CMDLINE(bool, DisplayVMOutputToStdout, false);
3129      FLAG_SET_CMDLINE(bool, DisplayVMOutputToStderr, true);
3130    } else if (match_option(option, "-XX:+DisplayVMOutputToStdout", &tail)) {
3131      FLAG_SET_CMDLINE(bool, DisplayVMOutputToStderr, false);
3132      FLAG_SET_CMDLINE(bool, DisplayVMOutputToStdout, true);
3133    } else if (match_option(option, "-XX:+ExtendedDTraceProbes", &tail)) {
3134#if defined(DTRACE_ENABLED)
3135      FLAG_SET_CMDLINE(bool, ExtendedDTraceProbes, true);
3136      FLAG_SET_CMDLINE(bool, DTraceMethodProbes, true);
3137      FLAG_SET_CMDLINE(bool, DTraceAllocProbes, true);
3138      FLAG_SET_CMDLINE(bool, DTraceMonitorProbes, true);
3139#else // defined(DTRACE_ENABLED)
3140      jio_fprintf(defaultStream::error_stream(),
3141                  "ExtendedDTraceProbes flag is not applicable for this configuration\n");
3142      return JNI_EINVAL;
3143#endif // defined(DTRACE_ENABLED)
3144#ifdef ASSERT
3145    } else if (match_option(option, "-XX:+FullGCALot", &tail)) {
3146      FLAG_SET_CMDLINE(bool, FullGCALot, true);
3147      // disable scavenge before parallel mark-compact
3148      FLAG_SET_CMDLINE(bool, ScavengeBeforeFullGC, false);
3149#endif
3150    } else if (match_option(option, "-XX:CMSParPromoteBlocksToClaim=", &tail)) {
3151      julong cms_blocks_to_claim = (julong)atol(tail);
3152      FLAG_SET_CMDLINE(uintx, CMSParPromoteBlocksToClaim, cms_blocks_to_claim);
3153      jio_fprintf(defaultStream::error_stream(),
3154        "Please use -XX:OldPLABSize in place of "
3155        "-XX:CMSParPromoteBlocksToClaim in the future\n");
3156    } else if (match_option(option, "-XX:ParCMSPromoteBlocksToClaim=", &tail)) {
3157      julong cms_blocks_to_claim = (julong)atol(tail);
3158      FLAG_SET_CMDLINE(uintx, CMSParPromoteBlocksToClaim, cms_blocks_to_claim);
3159      jio_fprintf(defaultStream::error_stream(),
3160        "Please use -XX:OldPLABSize in place of "
3161        "-XX:ParCMSPromoteBlocksToClaim in the future\n");
3162    } else if (match_option(option, "-XX:ParallelGCOldGenAllocBufferSize=", &tail)) {
3163      julong old_plab_size = 0;
3164      ArgsRange errcode = parse_memory_size(tail, &old_plab_size, 1);
3165      if (errcode != arg_in_range) {
3166        jio_fprintf(defaultStream::error_stream(),
3167                    "Invalid old PLAB size: %s\n", option->optionString);
3168        describe_range_error(errcode);
3169        return JNI_EINVAL;
3170      }
3171      FLAG_SET_CMDLINE(uintx, OldPLABSize, old_plab_size);
3172      jio_fprintf(defaultStream::error_stream(),
3173                  "Please use -XX:OldPLABSize in place of "
3174                  "-XX:ParallelGCOldGenAllocBufferSize in the future\n");
3175    } else if (match_option(option, "-XX:ParallelGCToSpaceAllocBufferSize=", &tail)) {
3176      julong young_plab_size = 0;
3177      ArgsRange errcode = parse_memory_size(tail, &young_plab_size, 1);
3178      if (errcode != arg_in_range) {
3179        jio_fprintf(defaultStream::error_stream(),
3180                    "Invalid young PLAB size: %s\n", option->optionString);
3181        describe_range_error(errcode);
3182        return JNI_EINVAL;
3183      }
3184      FLAG_SET_CMDLINE(uintx, YoungPLABSize, young_plab_size);
3185      jio_fprintf(defaultStream::error_stream(),
3186                  "Please use -XX:YoungPLABSize in place of "
3187                  "-XX:ParallelGCToSpaceAllocBufferSize in the future\n");
3188    } else if (match_option(option, "-XX:CMSMarkStackSize=", &tail) ||
3189               match_option(option, "-XX:G1MarkStackSize=", &tail)) {
3190      julong stack_size = 0;
3191      ArgsRange errcode = parse_memory_size(tail, &stack_size, 1);
3192      if (errcode != arg_in_range) {
3193        jio_fprintf(defaultStream::error_stream(),
3194                    "Invalid mark stack size: %s\n", option->optionString);
3195        describe_range_error(errcode);
3196        return JNI_EINVAL;
3197      }
3198      FLAG_SET_CMDLINE(uintx, MarkStackSize, stack_size);
3199    } else if (match_option(option, "-XX:CMSMarkStackSizeMax=", &tail)) {
3200      julong max_stack_size = 0;
3201      ArgsRange errcode = parse_memory_size(tail, &max_stack_size, 1);
3202      if (errcode != arg_in_range) {
3203        jio_fprintf(defaultStream::error_stream(),
3204                    "Invalid maximum mark stack size: %s\n",
3205                    option->optionString);
3206        describe_range_error(errcode);
3207        return JNI_EINVAL;
3208      }
3209      FLAG_SET_CMDLINE(uintx, MarkStackSizeMax, max_stack_size);
3210    } else if (match_option(option, "-XX:ParallelMarkingThreads=", &tail) ||
3211               match_option(option, "-XX:ParallelCMSThreads=", &tail)) {
3212      uintx conc_threads = 0;
3213      if (!parse_uintx(tail, &conc_threads, 1)) {
3214        jio_fprintf(defaultStream::error_stream(),
3215                    "Invalid concurrent threads: %s\n", option->optionString);
3216        return JNI_EINVAL;
3217      }
3218      FLAG_SET_CMDLINE(uintx, ConcGCThreads, conc_threads);
3219    } else if (match_option(option, "-XX:MaxDirectMemorySize=", &tail)) {
3220      julong max_direct_memory_size = 0;
3221      ArgsRange errcode = parse_memory_size(tail, &max_direct_memory_size, 0);
3222      if (errcode != arg_in_range) {
3223        jio_fprintf(defaultStream::error_stream(),
3224                    "Invalid maximum direct memory size: %s\n",
3225                    option->optionString);
3226        describe_range_error(errcode);
3227        return JNI_EINVAL;
3228      }
3229      FLAG_SET_CMDLINE(uintx, MaxDirectMemorySize, max_direct_memory_size);
3230#if !INCLUDE_MANAGEMENT
3231    } else if (match_option(option, "-XX:+ManagementServer", &tail)) {
3232        jio_fprintf(defaultStream::error_stream(),
3233          "ManagementServer is not supported in this VM.\n");
3234        return JNI_ERR;
3235#endif // INCLUDE_MANAGEMENT
3236    } else if (match_option(option, "-XX:", &tail)) { // -XX:xxxx
3237      // Skip -XX:Flags= since that case has already been handled
3238      if (strncmp(tail, "Flags=", strlen("Flags=")) != 0) {
3239        if (!process_argument(tail, args->ignoreUnrecognized, origin)) {
3240          return JNI_EINVAL;
3241        }
3242      }
3243    // Unknown option
3244    } else if (is_bad_option(option, args->ignoreUnrecognized)) {
3245      return JNI_ERR;
3246    }
3247  }
3248
3249  // Change the default value for flags  which have different default values
3250  // when working with older JDKs.
3251#ifdef LINUX
3252 if (JDK_Version::current().compare_major(6) <= 0 &&
3253      FLAG_IS_DEFAULT(UseLinuxPosixThreadCPUClocks)) {
3254    FLAG_SET_DEFAULT(UseLinuxPosixThreadCPUClocks, false);
3255  }
3256#endif // LINUX
3257  return JNI_OK;
3258}
3259
3260jint Arguments::finalize_vm_init_args(SysClassPath* scp_p, bool scp_assembly_required) {
3261  // This must be done after all -D arguments have been processed.
3262  scp_p->expand_endorsed();
3263
3264  if (scp_assembly_required || scp_p->get_endorsed() != NULL) {
3265    // Assemble the bootclasspath elements into the final path.
3266    Arguments::set_sysclasspath(scp_p->combined_path());
3267  }
3268
3269  // This must be done after all arguments have been processed.
3270  // java_compiler() true means set to "NONE" or empty.
3271  if (java_compiler() && !xdebug_mode()) {
3272    // For backwards compatibility, we switch to interpreted mode if
3273    // -Djava.compiler="NONE" or "" is specified AND "-Xdebug" was
3274    // not specified.
3275    set_mode_flags(_int);
3276  }
3277  if (CompileThreshold == 0) {
3278    set_mode_flags(_int);
3279  }
3280
3281  // eventually fix up InitialTenuringThreshold if only MaxTenuringThreshold is set
3282  if (FLAG_IS_DEFAULT(InitialTenuringThreshold) && (InitialTenuringThreshold > MaxTenuringThreshold)) {
3283    FLAG_SET_ERGO(uintx, InitialTenuringThreshold, MaxTenuringThreshold);
3284  }
3285
3286#ifndef COMPILER2
3287  // Don't degrade server performance for footprint
3288  if (FLAG_IS_DEFAULT(UseLargePages) &&
3289      MaxHeapSize < LargePageHeapSizeThreshold) {
3290    // No need for large granularity pages w/small heaps.
3291    // Note that large pages are enabled/disabled for both the
3292    // Java heap and the code cache.
3293    FLAG_SET_DEFAULT(UseLargePages, false);
3294  }
3295
3296#else
3297  if (!FLAG_IS_DEFAULT(OptoLoopAlignment) && FLAG_IS_DEFAULT(MaxLoopPad)) {
3298    FLAG_SET_DEFAULT(MaxLoopPad, OptoLoopAlignment-1);
3299  }
3300#endif
3301
3302#ifndef TIERED
3303  // Tiered compilation is undefined.
3304  UNSUPPORTED_OPTION(TieredCompilation, "TieredCompilation");
3305#endif
3306
3307  // If we are running in a headless jre, force java.awt.headless property
3308  // to be true unless the property has already been set.
3309  // Also allow the OS environment variable JAVA_AWT_HEADLESS to set headless state.
3310  if (os::is_headless_jre()) {
3311    const char* headless = Arguments::get_property("java.awt.headless");
3312    if (headless == NULL) {
3313      char envbuffer[128];
3314      if (!os::getenv("JAVA_AWT_HEADLESS", envbuffer, sizeof(envbuffer))) {
3315        if (!add_property("java.awt.headless=true")) {
3316          return JNI_ENOMEM;
3317        }
3318      } else {
3319        char buffer[256];
3320        strcpy(buffer, "java.awt.headless=");
3321        strcat(buffer, envbuffer);
3322        if (!add_property(buffer)) {
3323          return JNI_ENOMEM;
3324        }
3325      }
3326    }
3327  }
3328
3329  if (!check_vm_args_consistency()) {
3330    return JNI_ERR;
3331  }
3332
3333  return JNI_OK;
3334}
3335
3336jint Arguments::parse_java_options_environment_variable(SysClassPath* scp_p, bool* scp_assembly_required_p) {
3337  return parse_options_environment_variable("_JAVA_OPTIONS", scp_p,
3338                                            scp_assembly_required_p);
3339}
3340
3341jint Arguments::parse_java_tool_options_environment_variable(SysClassPath* scp_p, bool* scp_assembly_required_p) {
3342  return parse_options_environment_variable("JAVA_TOOL_OPTIONS", scp_p,
3343                                            scp_assembly_required_p);
3344}
3345
3346jint Arguments::parse_options_environment_variable(const char* name, SysClassPath* scp_p, bool* scp_assembly_required_p) {
3347  const int N_MAX_OPTIONS = 64;
3348  const int OPTION_BUFFER_SIZE = 1024;
3349  char buffer[OPTION_BUFFER_SIZE];
3350
3351  // The variable will be ignored if it exceeds the length of the buffer.
3352  // Don't check this variable if user has special privileges
3353  // (e.g. unix su command).
3354  if (os::getenv(name, buffer, sizeof(buffer)) &&
3355      !os::have_special_privileges()) {
3356    JavaVMOption options[N_MAX_OPTIONS];      // Construct option array
3357    jio_fprintf(defaultStream::error_stream(),
3358                "Picked up %s: %s\n", name, buffer);
3359    char* rd = buffer;                        // pointer to the input string (rd)
3360    int i;
3361    for (i = 0; i < N_MAX_OPTIONS;) {         // repeat for all options in the input string
3362      while (isspace(*rd)) rd++;              // skip whitespace
3363      if (*rd == 0) break;                    // we re done when the input string is read completely
3364
3365      // The output, option string, overwrites the input string.
3366      // Because of quoting, the pointer to the option string (wrt) may lag the pointer to
3367      // input string (rd).
3368      char* wrt = rd;
3369
3370      options[i++].optionString = wrt;        // Fill in option
3371      while (*rd != 0 && !isspace(*rd)) {     // unquoted strings terminate with a space or NULL
3372        if (*rd == '\'' || *rd == '"') {      // handle a quoted string
3373          int quote = *rd;                    // matching quote to look for
3374          rd++;                               // don't copy open quote
3375          while (*rd != quote) {              // include everything (even spaces) up until quote
3376            if (*rd == 0) {                   // string termination means unmatched string
3377              jio_fprintf(defaultStream::error_stream(),
3378                          "Unmatched quote in %s\n", name);
3379              return JNI_ERR;
3380            }
3381            *wrt++ = *rd++;                   // copy to option string
3382          }
3383          rd++;                               // don't copy close quote
3384        } else {
3385          *wrt++ = *rd++;                     // copy to option string
3386        }
3387      }
3388      // Need to check if we're done before writing a NULL,
3389      // because the write could be to the byte that rd is pointing to.
3390      if (*rd++ == 0) {
3391        *wrt = 0;
3392        break;
3393      }
3394      *wrt = 0;                               // Zero terminate option
3395    }
3396    // Construct JavaVMInitArgs structure and parse as if it was part of the command line
3397    JavaVMInitArgs vm_args;
3398    vm_args.version = JNI_VERSION_1_2;
3399    vm_args.options = options;
3400    vm_args.nOptions = i;
3401    vm_args.ignoreUnrecognized = IgnoreUnrecognizedVMOptions;
3402
3403    if (PrintVMOptions) {
3404      const char* tail;
3405      for (int i = 0; i < vm_args.nOptions; i++) {
3406        const JavaVMOption *option = vm_args.options + i;
3407        if (match_option(option, "-XX:", &tail)) {
3408          logOption(tail);
3409        }
3410      }
3411    }
3412
3413    return(parse_each_vm_init_arg(&vm_args, scp_p, scp_assembly_required_p, Flag::ENVIRON_VAR));
3414  }
3415  return JNI_OK;
3416}
3417
3418void Arguments::set_shared_spaces_flags() {
3419  if (DumpSharedSpaces) {
3420    if (RequireSharedSpaces) {
3421      warning("cannot dump shared archive while using shared archive");
3422    }
3423    UseSharedSpaces = false;
3424#ifdef _LP64
3425    if (!UseCompressedOops || !UseCompressedClassPointers) {
3426      vm_exit_during_initialization(
3427        "Cannot dump shared archive when UseCompressedOops or UseCompressedClassPointers is off.", NULL);
3428    }
3429  } else {
3430    // UseCompressedOops and UseCompressedClassPointers must be on for UseSharedSpaces.
3431    if (!UseCompressedOops || !UseCompressedClassPointers) {
3432      no_shared_spaces();
3433    }
3434#endif
3435  }
3436}
3437
3438#if !INCLUDE_ALL_GCS
3439static void force_serial_gc() {
3440  FLAG_SET_DEFAULT(UseSerialGC, true);
3441  FLAG_SET_DEFAULT(CMSIncrementalMode, false);  // special CMS suboption
3442  UNSUPPORTED_GC_OPTION(UseG1GC);
3443  UNSUPPORTED_GC_OPTION(UseParallelGC);
3444  UNSUPPORTED_GC_OPTION(UseParallelOldGC);
3445  UNSUPPORTED_GC_OPTION(UseConcMarkSweepGC);
3446  UNSUPPORTED_GC_OPTION(UseParNewGC);
3447}
3448#endif // INCLUDE_ALL_GCS
3449
3450// Sharing support
3451// Construct the path to the archive
3452static char* get_shared_archive_path() {
3453  char *shared_archive_path;
3454  if (SharedArchiveFile == NULL) {
3455    char jvm_path[JVM_MAXPATHLEN];
3456    os::jvm_path(jvm_path, sizeof(jvm_path));
3457    char *end = strrchr(jvm_path, *os::file_separator());
3458    if (end != NULL) *end = '\0';
3459    size_t jvm_path_len = strlen(jvm_path);
3460    size_t file_sep_len = strlen(os::file_separator());
3461    shared_archive_path = NEW_C_HEAP_ARRAY(char, jvm_path_len +
3462        file_sep_len + 20, mtInternal);
3463    if (shared_archive_path != NULL) {
3464      strncpy(shared_archive_path, jvm_path, jvm_path_len + 1);
3465      strncat(shared_archive_path, os::file_separator(), file_sep_len);
3466      strncat(shared_archive_path, "classes.jsa", 11);
3467    }
3468  } else {
3469    shared_archive_path = NEW_C_HEAP_ARRAY(char, strlen(SharedArchiveFile) + 1, mtInternal);
3470    if (shared_archive_path != NULL) {
3471      strncpy(shared_archive_path, SharedArchiveFile, strlen(SharedArchiveFile) + 1);
3472    }
3473  }
3474  return shared_archive_path;
3475}
3476
3477#ifndef PRODUCT
3478// Determine whether LogVMOutput should be implicitly turned on.
3479static bool use_vm_log() {
3480  if (LogCompilation || !FLAG_IS_DEFAULT(LogFile) ||
3481      PrintCompilation || PrintInlining || PrintDependencies || PrintNativeNMethods ||
3482      PrintDebugInfo || PrintRelocations || PrintNMethods || PrintExceptionHandlers ||
3483      PrintAssembly || TraceDeoptimization || TraceDependencies ||
3484      (VerifyDependencies && FLAG_IS_CMDLINE(VerifyDependencies))) {
3485    return true;
3486  }
3487
3488#ifdef COMPILER1
3489  if (PrintC1Statistics) {
3490    return true;
3491  }
3492#endif // COMPILER1
3493
3494#ifdef COMPILER2
3495  if (PrintOptoAssembly || PrintOptoStatistics) {
3496    return true;
3497  }
3498#endif // COMPILER2
3499
3500  return false;
3501}
3502#endif // PRODUCT
3503
3504// Parse entry point called from JNI_CreateJavaVM
3505
3506jint Arguments::parse(const JavaVMInitArgs* args) {
3507
3508  // Remaining part of option string
3509  const char* tail;
3510
3511  // If flag "-XX:Flags=flags-file" is used it will be the first option to be processed.
3512  const char* hotspotrc = ".hotspotrc";
3513  bool settings_file_specified = false;
3514  bool needs_hotspotrc_warning = false;
3515
3516  const char* flags_file;
3517  int index;
3518  for (index = 0; index < args->nOptions; index++) {
3519    const JavaVMOption *option = args->options + index;
3520    if (match_option(option, "-XX:Flags=", &tail)) {
3521      flags_file = tail;
3522      settings_file_specified = true;
3523    }
3524    if (match_option(option, "-XX:+PrintVMOptions", &tail)) {
3525      PrintVMOptions = true;
3526    }
3527    if (match_option(option, "-XX:-PrintVMOptions", &tail)) {
3528      PrintVMOptions = false;
3529    }
3530    if (match_option(option, "-XX:+IgnoreUnrecognizedVMOptions", &tail)) {
3531      IgnoreUnrecognizedVMOptions = true;
3532    }
3533    if (match_option(option, "-XX:-IgnoreUnrecognizedVMOptions", &tail)) {
3534      IgnoreUnrecognizedVMOptions = false;
3535    }
3536    if (match_option(option, "-XX:+PrintFlagsInitial", &tail)) {
3537      CommandLineFlags::printFlags(tty, false);
3538      vm_exit(0);
3539    }
3540    if (match_option(option, "-XX:NativeMemoryTracking", &tail)) {
3541#if INCLUDE_NMT
3542      MemTracker::init_tracking_options(tail);
3543#else
3544      jio_fprintf(defaultStream::error_stream(),
3545        "Native Memory Tracking is not supported in this VM\n");
3546      return JNI_ERR;
3547#endif
3548    }
3549
3550
3551#ifndef PRODUCT
3552    if (match_option(option, "-XX:+PrintFlagsWithComments", &tail)) {
3553      CommandLineFlags::printFlags(tty, true);
3554      vm_exit(0);
3555    }
3556#endif
3557  }
3558
3559  if (IgnoreUnrecognizedVMOptions) {
3560    // uncast const to modify the flag args->ignoreUnrecognized
3561    *(jboolean*)(&args->ignoreUnrecognized) = true;
3562  }
3563
3564  // Parse specified settings file
3565  if (settings_file_specified) {
3566    if (!process_settings_file(flags_file, true, args->ignoreUnrecognized)) {
3567      return JNI_EINVAL;
3568    }
3569  } else {
3570#ifdef ASSERT
3571    // Parse default .hotspotrc settings file
3572    if (!process_settings_file(".hotspotrc", false, args->ignoreUnrecognized)) {
3573      return JNI_EINVAL;
3574    }
3575#else
3576    struct stat buf;
3577    if (os::stat(hotspotrc, &buf) == 0) {
3578      needs_hotspotrc_warning = true;
3579    }
3580#endif
3581  }
3582
3583  if (PrintVMOptions) {
3584    for (index = 0; index < args->nOptions; index++) {
3585      const JavaVMOption *option = args->options + index;
3586      if (match_option(option, "-XX:", &tail)) {
3587        logOption(tail);
3588      }
3589    }
3590  }
3591
3592  // Parse JavaVMInitArgs structure passed in, as well as JAVA_TOOL_OPTIONS and _JAVA_OPTIONS
3593  jint result = parse_vm_init_args(args);
3594  if (result != JNI_OK) {
3595    return result;
3596  }
3597
3598  // Call get_shared_archive_path() here, after possible SharedArchiveFile option got parsed.
3599  SharedArchivePath = get_shared_archive_path();
3600  if (SharedArchivePath == NULL) {
3601    return JNI_ENOMEM;
3602  }
3603
3604  // Delay warning until here so that we've had a chance to process
3605  // the -XX:-PrintWarnings flag
3606  if (needs_hotspotrc_warning) {
3607    warning("%s file is present but has been ignored.  "
3608            "Run with -XX:Flags=%s to load the file.",
3609            hotspotrc, hotspotrc);
3610  }
3611
3612#ifdef _ALLBSD_SOURCE  // UseLargePages is not yet supported on BSD.
3613  UNSUPPORTED_OPTION(UseLargePages, "-XX:+UseLargePages");
3614#endif
3615
3616#if INCLUDE_ALL_GCS
3617  #if (defined JAVASE_EMBEDDED || defined ARM)
3618    UNSUPPORTED_OPTION(UseG1GC, "G1 GC");
3619  #endif
3620#endif
3621
3622#ifndef PRODUCT
3623  if (TraceBytecodesAt != 0) {
3624    TraceBytecodes = true;
3625  }
3626  if (CountCompiledCalls) {
3627    if (UseCounterDecay) {
3628      warning("UseCounterDecay disabled because CountCalls is set");
3629      UseCounterDecay = false;
3630    }
3631  }
3632#endif // PRODUCT
3633
3634  // JSR 292 is not supported before 1.7
3635  if (!JDK_Version::is_gte_jdk17x_version()) {
3636    if (EnableInvokeDynamic) {
3637      if (!FLAG_IS_DEFAULT(EnableInvokeDynamic)) {
3638        warning("JSR 292 is not supported before 1.7.  Disabling support.");
3639      }
3640      EnableInvokeDynamic = false;
3641    }
3642  }
3643
3644  if (EnableInvokeDynamic && ScavengeRootsInCode == 0) {
3645    if (!FLAG_IS_DEFAULT(ScavengeRootsInCode)) {
3646      warning("forcing ScavengeRootsInCode non-zero because EnableInvokeDynamic is true");
3647    }
3648    ScavengeRootsInCode = 1;
3649  }
3650
3651  if (PrintGCDetails) {
3652    // Turn on -verbose:gc options as well
3653    PrintGC = true;
3654  }
3655
3656  if (!JDK_Version::is_gte_jdk18x_version()) {
3657    // To avoid changing the log format for 7 updates this flag is only
3658    // true by default in JDK8 and above.
3659    if (FLAG_IS_DEFAULT(PrintGCCause)) {
3660      FLAG_SET_DEFAULT(PrintGCCause, false);
3661    }
3662  }
3663
3664  // Set object alignment values.
3665  set_object_alignment();
3666
3667#if !INCLUDE_ALL_GCS
3668  force_serial_gc();
3669#endif // INCLUDE_ALL_GCS
3670#if !INCLUDE_CDS
3671  if (DumpSharedSpaces || RequireSharedSpaces) {
3672    jio_fprintf(defaultStream::error_stream(),
3673      "Shared spaces are not supported in this VM\n");
3674    return JNI_ERR;
3675  }
3676  if ((UseSharedSpaces && FLAG_IS_CMDLINE(UseSharedSpaces)) || PrintSharedSpaces) {
3677    warning("Shared spaces are not supported in this VM");
3678    FLAG_SET_DEFAULT(UseSharedSpaces, false);
3679    FLAG_SET_DEFAULT(PrintSharedSpaces, false);
3680  }
3681  no_shared_spaces();
3682#endif // INCLUDE_CDS
3683
3684  return JNI_OK;
3685}
3686
3687jint Arguments::apply_ergo() {
3688
3689  // Set flags based on ergonomics.
3690  set_ergonomics_flags();
3691
3692  set_shared_spaces_flags();
3693
3694  // Check the GC selections again.
3695  if (!check_gc_consistency()) {
3696    return JNI_EINVAL;
3697  }
3698
3699  if (TieredCompilation) {
3700    set_tiered_flags();
3701  } else {
3702    // Check if the policy is valid. Policies 0 and 1 are valid for non-tiered setup.
3703    if (CompilationPolicyChoice >= 2) {
3704      vm_exit_during_initialization(
3705        "Incompatible compilation policy selected", NULL);
3706    }
3707  }
3708  // Set NmethodSweepFraction after the size of the code cache is adapted (in case of tiered)
3709  if (FLAG_IS_DEFAULT(NmethodSweepFraction)) {
3710    FLAG_SET_DEFAULT(NmethodSweepFraction, 1 + ReservedCodeCacheSize / (16 * M));
3711  }
3712
3713
3714  // Set heap size based on available physical memory
3715  set_heap_size();
3716
3717#if INCLUDE_ALL_GCS
3718  // Set per-collector flags
3719  if (UseParallelGC || UseParallelOldGC) {
3720    set_parallel_gc_flags();
3721  } else if (UseConcMarkSweepGC) { // Should be done before ParNew check below
3722    set_cms_and_parnew_gc_flags();
3723  } else if (UseParNewGC) {  // Skipped if CMS is set above
3724    set_parnew_gc_flags();
3725  } else if (UseG1GC) {
3726    set_g1_gc_flags();
3727  }
3728  check_deprecated_gcs();
3729  check_deprecated_gc_flags();
3730  if (AssumeMP && !UseSerialGC) {
3731    if (FLAG_IS_DEFAULT(ParallelGCThreads) && ParallelGCThreads == 1) {
3732      warning("If the number of processors is expected to increase from one, then"
3733              " you should configure the number of parallel GC threads appropriately"
3734              " using -XX:ParallelGCThreads=N");
3735    }
3736  }
3737  if (MinHeapFreeRatio == 100) {
3738    // Keeping the heap 100% free is hard ;-) so limit it to 99%.
3739    FLAG_SET_ERGO(uintx, MinHeapFreeRatio, 99);
3740  }
3741#else // INCLUDE_ALL_GCS
3742  assert(verify_serial_gc_flags(), "SerialGC unset");
3743#endif // INCLUDE_ALL_GCS
3744
3745  // Initialize Metaspace flags and alignments
3746  Metaspace::ergo_initialize();
3747
3748  // Set bytecode rewriting flags
3749  set_bytecode_flags();
3750
3751  // Set flags if Aggressive optimization flags (-XX:+AggressiveOpts) enabled
3752  set_aggressive_opts_flags();
3753
3754  // Turn off biased locking for locking debug mode flags,
3755  // which are subtly different from each other but neither works with
3756  // biased locking
3757  if (UseHeavyMonitors
3758#ifdef COMPILER1
3759      || !UseFastLocking
3760#endif // COMPILER1
3761    ) {
3762    if (!FLAG_IS_DEFAULT(UseBiasedLocking) && UseBiasedLocking) {
3763      // flag set to true on command line; warn the user that they
3764      // can't enable biased locking here
3765      warning("Biased Locking is not supported with locking debug flags"
3766              "; ignoring UseBiasedLocking flag." );
3767    }
3768    UseBiasedLocking = false;
3769  }
3770
3771#ifdef ZERO
3772  // Clear flags not supported on zero.
3773  FLAG_SET_DEFAULT(ProfileInterpreter, false);
3774  FLAG_SET_DEFAULT(UseBiasedLocking, false);
3775  LP64_ONLY(FLAG_SET_DEFAULT(UseCompressedOops, false));
3776  LP64_ONLY(FLAG_SET_DEFAULT(UseCompressedClassPointers, false));
3777#endif // CC_INTERP
3778
3779#ifdef COMPILER2
3780  if (!UseBiasedLocking || EmitSync != 0) {
3781    UseOptoBiasInlining = false;
3782  }
3783  if (!EliminateLocks) {
3784    EliminateNestedLocks = false;
3785  }
3786  if (!Inline) {
3787    IncrementalInline = false;
3788  }
3789#ifndef PRODUCT
3790  if (!IncrementalInline) {
3791    AlwaysIncrementalInline = false;
3792  }
3793#endif
3794  if (IncrementalInline && FLAG_IS_DEFAULT(MaxNodeLimit)) {
3795    // incremental inlining: bump MaxNodeLimit
3796    FLAG_SET_DEFAULT(MaxNodeLimit, (intx)75000);
3797  }
3798  if (!UseTypeSpeculation && FLAG_IS_DEFAULT(TypeProfileLevel)) {
3799    // nothing to use the profiling, turn if off
3800    FLAG_SET_DEFAULT(TypeProfileLevel, 0);
3801  }
3802  if (UseTypeSpeculation && FLAG_IS_DEFAULT(ReplaceInParentMaps)) {
3803    // Doing the replace in parent maps helps speculation
3804    FLAG_SET_DEFAULT(ReplaceInParentMaps, true);
3805  }
3806#endif
3807
3808  if (PrintAssembly && FLAG_IS_DEFAULT(DebugNonSafepoints)) {
3809    warning("PrintAssembly is enabled; turning on DebugNonSafepoints to gain additional output");
3810    DebugNonSafepoints = true;
3811  }
3812
3813  if (FLAG_IS_CMDLINE(CompressedClassSpaceSize) && !UseCompressedClassPointers) {
3814    warning("Setting CompressedClassSpaceSize has no effect when compressed class pointers are not used");
3815  }
3816
3817#ifndef PRODUCT
3818  if (CompileTheWorld) {
3819    // Force NmethodSweeper to sweep whole CodeCache each time.
3820    if (FLAG_IS_DEFAULT(NmethodSweepFraction)) {
3821      NmethodSweepFraction = 1;
3822    }
3823  }
3824
3825  if (!LogVMOutput && FLAG_IS_DEFAULT(LogVMOutput)) {
3826    if (use_vm_log()) {
3827      LogVMOutput = true;
3828    }
3829  }
3830#endif // PRODUCT
3831
3832  if (PrintCommandLineFlags) {
3833    CommandLineFlags::printSetFlags(tty);
3834  }
3835
3836  // Apply CPU specific policy for the BiasedLocking
3837  if (UseBiasedLocking) {
3838    if (!VM_Version::use_biased_locking() &&
3839        !(FLAG_IS_CMDLINE(UseBiasedLocking))) {
3840      UseBiasedLocking = false;
3841    }
3842  }
3843
3844  return JNI_OK;
3845}
3846
3847jint Arguments::adjust_after_os() {
3848  if (UseNUMA) {
3849    if (UseParallelGC || UseParallelOldGC) {
3850      if (FLAG_IS_DEFAULT(MinHeapDeltaBytes)) {
3851         FLAG_SET_DEFAULT(MinHeapDeltaBytes, 64*M);
3852      }
3853    }
3854    // UseNUMAInterleaving is set to ON for all collectors and
3855    // platforms when UseNUMA is set to ON. NUMA-aware collectors
3856    // such as the parallel collector for Linux and Solaris will
3857    // interleave old gen and survivor spaces on top of NUMA
3858    // allocation policy for the eden space.
3859    // Non NUMA-aware collectors such as CMS, G1 and Serial-GC on
3860    // all platforms and ParallelGC on Windows will interleave all
3861    // of the heap spaces across NUMA nodes.
3862    if (FLAG_IS_DEFAULT(UseNUMAInterleaving)) {
3863      FLAG_SET_ERGO(bool, UseNUMAInterleaving, true);
3864    }
3865  }
3866  return JNI_OK;
3867}
3868
3869int Arguments::PropertyList_count(SystemProperty* pl) {
3870  int count = 0;
3871  while(pl != NULL) {
3872    count++;
3873    pl = pl->next();
3874  }
3875  return count;
3876}
3877
3878const char* Arguments::PropertyList_get_value(SystemProperty *pl, const char* key) {
3879  assert(key != NULL, "just checking");
3880  SystemProperty* prop;
3881  for (prop = pl; prop != NULL; prop = prop->next()) {
3882    if (strcmp(key, prop->key()) == 0) return prop->value();
3883  }
3884  return NULL;
3885}
3886
3887const char* Arguments::PropertyList_get_key_at(SystemProperty *pl, int index) {
3888  int count = 0;
3889  const char* ret_val = NULL;
3890
3891  while(pl != NULL) {
3892    if(count >= index) {
3893      ret_val = pl->key();
3894      break;
3895    }
3896    count++;
3897    pl = pl->next();
3898  }
3899
3900  return ret_val;
3901}
3902
3903char* Arguments::PropertyList_get_value_at(SystemProperty* pl, int index) {
3904  int count = 0;
3905  char* ret_val = NULL;
3906
3907  while(pl != NULL) {
3908    if(count >= index) {
3909      ret_val = pl->value();
3910      break;
3911    }
3912    count++;
3913    pl = pl->next();
3914  }
3915
3916  return ret_val;
3917}
3918
3919void Arguments::PropertyList_add(SystemProperty** plist, SystemProperty *new_p) {
3920  SystemProperty* p = *plist;
3921  if (p == NULL) {
3922    *plist = new_p;
3923  } else {
3924    while (p->next() != NULL) {
3925      p = p->next();
3926    }
3927    p->set_next(new_p);
3928  }
3929}
3930
3931void Arguments::PropertyList_add(SystemProperty** plist, const char* k, char* v) {
3932  if (plist == NULL)
3933    return;
3934
3935  SystemProperty* new_p = new SystemProperty(k, v, true);
3936  PropertyList_add(plist, new_p);
3937}
3938
3939// This add maintains unique property key in the list.
3940void Arguments::PropertyList_unique_add(SystemProperty** plist, const char* k, char* v, jboolean append) {
3941  if (plist == NULL)
3942    return;
3943
3944  // If property key exist then update with new value.
3945  SystemProperty* prop;
3946  for (prop = *plist; prop != NULL; prop = prop->next()) {
3947    if (strcmp(k, prop->key()) == 0) {
3948      if (append) {
3949        prop->append_value(v);
3950      } else {
3951        prop->set_value(v);
3952      }
3953      return;
3954    }
3955  }
3956
3957  PropertyList_add(plist, k, v);
3958}
3959
3960// Copies src into buf, replacing "%%" with "%" and "%p" with pid
3961// Returns true if all of the source pointed by src has been copied over to
3962// the destination buffer pointed by buf. Otherwise, returns false.
3963// Notes:
3964// 1. If the length (buflen) of the destination buffer excluding the
3965// NULL terminator character is not long enough for holding the expanded
3966// pid characters, it also returns false instead of returning the partially
3967// expanded one.
3968// 2. The passed in "buflen" should be large enough to hold the null terminator.
3969bool Arguments::copy_expand_pid(const char* src, size_t srclen,
3970                                char* buf, size_t buflen) {
3971  const char* p = src;
3972  char* b = buf;
3973  const char* src_end = &src[srclen];
3974  char* buf_end = &buf[buflen - 1];
3975
3976  while (p < src_end && b < buf_end) {
3977    if (*p == '%') {
3978      switch (*(++p)) {
3979      case '%':         // "%%" ==> "%"
3980        *b++ = *p++;
3981        break;
3982      case 'p':  {       //  "%p" ==> current process id
3983        // buf_end points to the character before the last character so
3984        // that we could write '\0' to the end of the buffer.
3985        size_t buf_sz = buf_end - b + 1;
3986        int ret = jio_snprintf(b, buf_sz, "%d", os::current_process_id());
3987
3988        // if jio_snprintf fails or the buffer is not long enough to hold
3989        // the expanded pid, returns false.
3990        if (ret < 0 || ret >= (int)buf_sz) {
3991          return false;
3992        } else {
3993          b += ret;
3994          assert(*b == '\0', "fail in copy_expand_pid");
3995          if (p == src_end && b == buf_end + 1) {
3996            // reach the end of the buffer.
3997            return true;
3998          }
3999        }
4000        p++;
4001        break;
4002      }
4003      default :
4004        *b++ = '%';
4005      }
4006    } else {
4007      *b++ = *p++;
4008    }
4009  }
4010  *b = '\0';
4011  return (p == src_end); // return false if not all of the source was copied
4012}
4013