src/share/vm/runtime/globals.cpp

Wed, 17 Aug 2011 10:32:53 -0700

author
jcoomes
date
Wed, 17 Aug 2011 10:32:53 -0700
changeset 3057
24cee90e9453
parent 2742
ed69575596ac
child 3286
763f01599ff4
permissions
-rw-r--r--

6791672: enable 1G and larger pages on solaris
Reviewed-by: ysr, iveresov, johnc

duke@435 1 /*
twisti@2047 2 * Copyright (c) 1997, 2010, Oracle and/or its affiliates. All rights reserved.
duke@435 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@435 4 *
duke@435 5 * This code is free software; you can redistribute it and/or modify it
duke@435 6 * under the terms of the GNU General Public License version 2 only, as
duke@435 7 * published by the Free Software Foundation.
duke@435 8 *
duke@435 9 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@435 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@435 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@435 12 * version 2 for more details (a copy is included in the LICENSE file that
duke@435 13 * accompanied this code).
duke@435 14 *
duke@435 15 * You should have received a copy of the GNU General Public License version
duke@435 16 * 2 along with this work; if not, write to the Free Software Foundation,
duke@435 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@435 18 *
trims@1907 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
trims@1907 20 * or visit www.oracle.com if you need additional information or have any
trims@1907 21 * questions.
duke@435 22 *
duke@435 23 */
duke@435 24
stefank@2314 25 #include "precompiled.hpp"
stefank@2314 26 #include "memory/allocation.inline.hpp"
stefank@2314 27 #include "oops/oop.inline.hpp"
stefank@2314 28 #include "runtime/arguments.hpp"
stefank@2314 29 #include "runtime/globals.hpp"
stefank@2314 30 #include "runtime/globals_extension.hpp"
stefank@2314 31 #include "utilities/ostream.hpp"
stefank@2314 32 #include "utilities/top.hpp"
stefank@2314 33 #ifndef SERIALGC
stefank@2314 34 #include "gc_implementation/g1/g1_globals.hpp"
stefank@2314 35 #endif
stefank@2314 36 #ifdef COMPILER1
stefank@2314 37 #include "c1/c1_globals.hpp"
stefank@2314 38 #endif
stefank@2314 39 #ifdef COMPILER2
stefank@2314 40 #include "opto/c2_globals.hpp"
stefank@2314 41 #endif
stefank@2314 42 #ifdef SHARK
stefank@2314 43 #include "shark/shark_globals.hpp"
stefank@2314 44 #endif
duke@435 45
duke@435 46
duke@435 47 RUNTIME_FLAGS(MATERIALIZE_DEVELOPER_FLAG, MATERIALIZE_PD_DEVELOPER_FLAG, \
duke@435 48 MATERIALIZE_PRODUCT_FLAG, MATERIALIZE_PD_PRODUCT_FLAG, \
ysr@785 49 MATERIALIZE_DIAGNOSTIC_FLAG, MATERIALIZE_EXPERIMENTAL_FLAG, \
ysr@785 50 MATERIALIZE_NOTPRODUCT_FLAG, \
coleenp@548 51 MATERIALIZE_MANAGEABLE_FLAG, MATERIALIZE_PRODUCT_RW_FLAG, \
coleenp@548 52 MATERIALIZE_LP64_PRODUCT_FLAG)
duke@435 53
duke@435 54 RUNTIME_OS_FLAGS(MATERIALIZE_DEVELOPER_FLAG, MATERIALIZE_PD_DEVELOPER_FLAG, \
duke@435 55 MATERIALIZE_PRODUCT_FLAG, MATERIALIZE_PD_PRODUCT_FLAG, \
duke@435 56 MATERIALIZE_DIAGNOSTIC_FLAG, MATERIALIZE_NOTPRODUCT_FLAG)
duke@435 57
duke@435 58 bool Flag::is_unlocker() const {
ysr@785 59 return strcmp(name, "UnlockDiagnosticVMOptions") == 0 ||
ysr@785 60 strcmp(name, "UnlockExperimentalVMOptions") == 0;
ysr@785 61
duke@435 62 }
duke@435 63
duke@435 64 bool Flag::is_unlocked() const {
duke@435 65 if (strcmp(kind, "{diagnostic}") == 0) {
jrose@2742 66 if (strcmp(name, "EnableInvokeDynamic") == 0 && UnlockExperimentalVMOptions && !UnlockDiagnosticVMOptions) {
jrose@2742 67 // transitional logic to allow tests to run until they are changed
jrose@2742 68 static int warned;
jrose@2742 69 if (++warned == 1) warning("Use -XX:+UnlockDiagnosticVMOptions before EnableInvokeDynamic flag");
jrose@2742 70 return true;
jrose@2742 71 }
duke@435 72 return UnlockDiagnosticVMOptions;
never@1515 73 } else if (strcmp(kind, "{experimental}") == 0 ||
never@1515 74 strcmp(kind, "{C2 experimental}") == 0) {
ysr@785 75 return UnlockExperimentalVMOptions;
duke@435 76 } else {
duke@435 77 return true;
duke@435 78 }
duke@435 79 }
duke@435 80
duke@435 81 bool Flag::is_writeable() const {
duke@435 82 return (strcmp(kind, "{manageable}") == 0 || strcmp(kind, "{product rw}") == 0);
duke@435 83 }
duke@435 84
duke@435 85 // All flags except "manageable" are assumed internal flags.
duke@435 86 // Long term, we need to define a mechanism to specify which flags
duke@435 87 // are external/stable and change this function accordingly.
duke@435 88 bool Flag::is_external() const {
duke@435 89 return (strcmp(kind, "{manageable}") == 0);
duke@435 90 }
duke@435 91
duke@435 92 // Length of format string (e.g. "%.1234s") for printing ccstr below
duke@435 93 #define FORMAT_BUFFER_LEN 16
duke@435 94
ikrylov@2123 95 void Flag::print_on(outputStream* st, bool withComments) {
ikrylov@2123 96 st->print("%9s %-40s %c= ", type, name, (origin != DEFAULT ? ':' : ' '));
phh@1502 97 if (is_bool()) st->print("%-16s", get_bool() ? "true" : "false");
phh@1502 98 if (is_intx()) st->print("%-16ld", get_intx());
phh@1502 99 if (is_uintx()) st->print("%-16lu", get_uintx());
phh@1502 100 if (is_uint64_t()) st->print("%-16lu", get_uint64_t());
ikrylov@2123 101 if (is_double()) st->print("%-16f", get_double());
ikrylov@2123 102
duke@435 103 if (is_ccstr()) {
ikrylov@2123 104 const char* cp = get_ccstr();
ikrylov@2123 105 if (cp != NULL) {
ikrylov@2123 106 const char* eol;
ikrylov@2123 107 while ((eol = strchr(cp, '\n')) != NULL) {
ikrylov@2123 108 char format_buffer[FORMAT_BUFFER_LEN];
ikrylov@2123 109 size_t llen = pointer_delta(eol, cp, sizeof(char));
ikrylov@2123 110 jio_snprintf(format_buffer, FORMAT_BUFFER_LEN,
never@538 111 "%%." SIZE_FORMAT "s", llen);
ikrylov@2123 112 st->print(format_buffer, cp);
ikrylov@2123 113 st->cr();
ikrylov@2123 114 cp = eol+1;
ikrylov@2123 115 st->print("%5s %-35s += ", "", name);
ikrylov@2123 116 }
ikrylov@2123 117 st->print("%-16s", cp);
ikrylov@2123 118 }
ikrylov@2123 119 else st->print("%-16s", "");
duke@435 120 }
ikrylov@2123 121 st->print("%-20s", kind);
ikrylov@2123 122 if (withComments) {
ikrylov@2123 123 #ifndef PRODUCT
ikrylov@2123 124 st->print("%s", doc );
ikrylov@2123 125 #endif
ikrylov@2123 126 }
duke@435 127 st->cr();
duke@435 128 }
duke@435 129
duke@435 130 void Flag::print_as_flag(outputStream* st) {
duke@435 131 if (is_bool()) {
duke@435 132 st->print("-XX:%s%s", get_bool() ? "+" : "-", name);
duke@435 133 } else if (is_intx()) {
duke@435 134 st->print("-XX:%s=" INTX_FORMAT, name, get_intx());
duke@435 135 } else if (is_uintx()) {
duke@435 136 st->print("-XX:%s=" UINTX_FORMAT, name, get_uintx());
phh@1502 137 } else if (is_uint64_t()) {
phh@1502 138 st->print("-XX:%s=" UINT64_FORMAT, name, get_uint64_t());
duke@435 139 } else if (is_ccstr()) {
duke@435 140 st->print("-XX:%s=", name);
never@538 141 const char* cp = get_ccstr();
never@538 142 if (cp != NULL) {
never@538 143 // Need to turn embedded '\n's back into separate arguments
never@538 144 // Not so efficient to print one character at a time,
never@538 145 // but the choice is to do the transformation to a buffer
never@538 146 // and print that. And this need not be efficient.
never@538 147 for (; *cp != '\0'; cp += 1) {
never@538 148 switch (*cp) {
never@538 149 default:
never@538 150 st->print("%c", *cp);
never@538 151 break;
never@538 152 case '\n':
never@538 153 st->print(" -XX:%s=", name);
never@538 154 break;
never@538 155 }
duke@435 156 }
duke@435 157 }
duke@435 158 } else {
duke@435 159 ShouldNotReachHere();
duke@435 160 }
duke@435 161 }
duke@435 162
duke@435 163 // 4991491 do not "optimize out" the was_set false values: omitting them
duke@435 164 // tickles a Microsoft compiler bug causing flagTable to be malformed
duke@435 165
ikrylov@2123 166 #define RUNTIME_PRODUCT_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{product}", DEFAULT },
ikrylov@2123 167 #define RUNTIME_PD_PRODUCT_FLAG_STRUCT(type, name, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{pd product}", DEFAULT },
ikrylov@2123 168 #define RUNTIME_DIAGNOSTIC_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{diagnostic}", DEFAULT },
ikrylov@2123 169 #define RUNTIME_EXPERIMENTAL_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{experimental}", DEFAULT },
ikrylov@2123 170 #define RUNTIME_MANAGEABLE_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{manageable}", DEFAULT },
ikrylov@2123 171 #define RUNTIME_PRODUCT_RW_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{product rw}", DEFAULT },
duke@435 172
duke@435 173 #ifdef PRODUCT
duke@435 174 #define RUNTIME_DEVELOP_FLAG_STRUCT(type, name, value, doc) /* flag is constant */
duke@435 175 #define RUNTIME_PD_DEVELOP_FLAG_STRUCT(type, name, doc) /* flag is constant */
duke@435 176 #define RUNTIME_NOTPRODUCT_FLAG_STRUCT(type, name, value, doc)
duke@435 177 #else
ikrylov@2123 178 #define RUNTIME_DEVELOP_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, doc, "", DEFAULT },
ikrylov@2123 179 #define RUNTIME_PD_DEVELOP_FLAG_STRUCT(type, name, doc) { #type, XSTR(name), &name, doc, "{pd}", DEFAULT },
ikrylov@2123 180 #define RUNTIME_NOTPRODUCT_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, doc, "{notproduct}", DEFAULT },
duke@435 181 #endif
duke@435 182
coleenp@548 183 #ifdef _LP64
ikrylov@2123 184 #define RUNTIME_LP64_PRODUCT_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{lp64_product}", DEFAULT },
coleenp@548 185 #else
coleenp@548 186 #define RUNTIME_LP64_PRODUCT_FLAG_STRUCT(type, name, value, doc) /* flag is constant */
coleenp@548 187 #endif // _LP64
coleenp@548 188
ikrylov@2123 189 #define C1_PRODUCT_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{C1 product}", DEFAULT },
ikrylov@2123 190 #define C1_PD_PRODUCT_FLAG_STRUCT(type, name, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{C1 pd product}", DEFAULT },
duke@435 191 #ifdef PRODUCT
duke@435 192 #define C1_DEVELOP_FLAG_STRUCT(type, name, value, doc) /* flag is constant */
duke@435 193 #define C1_PD_DEVELOP_FLAG_STRUCT(type, name, doc) /* flag is constant */
duke@435 194 #define C1_NOTPRODUCT_FLAG_STRUCT(type, name, value, doc)
duke@435 195 #else
ikrylov@2123 196 #define C1_DEVELOP_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, doc, "{C1}", DEFAULT },
ikrylov@2123 197 #define C1_PD_DEVELOP_FLAG_STRUCT(type, name, doc) { #type, XSTR(name), &name, doc, "{C1 pd}", DEFAULT },
ikrylov@2123 198 #define C1_NOTPRODUCT_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, doc, "{C1 notproduct}", DEFAULT },
duke@435 199 #endif
duke@435 200
duke@435 201
ikrylov@2123 202 #define C2_PRODUCT_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{C2 product}", DEFAULT },
ikrylov@2123 203 #define C2_PD_PRODUCT_FLAG_STRUCT(type, name, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{C2 pd product}", DEFAULT },
ikrylov@2123 204 #define C2_DIAGNOSTIC_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{C2 diagnostic}", DEFAULT },
ikrylov@2123 205 #define C2_EXPERIMENTAL_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{C2 experimental}", DEFAULT },
duke@435 206 #ifdef PRODUCT
duke@435 207 #define C2_DEVELOP_FLAG_STRUCT(type, name, value, doc) /* flag is constant */
duke@435 208 #define C2_PD_DEVELOP_FLAG_STRUCT(type, name, doc) /* flag is constant */
duke@435 209 #define C2_NOTPRODUCT_FLAG_STRUCT(type, name, value, doc)
duke@435 210 #else
ikrylov@2123 211 #define C2_DEVELOP_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, doc, "{C2}", DEFAULT },
ikrylov@2123 212 #define C2_PD_DEVELOP_FLAG_STRUCT(type, name, doc) { #type, XSTR(name), &name, doc, "{C2 pd}", DEFAULT },
ikrylov@2123 213 #define C2_NOTPRODUCT_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, doc, "{C2 notproduct}", DEFAULT },
duke@435 214 #endif
duke@435 215
ikrylov@2123 216 #define SHARK_PRODUCT_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{Shark product}", DEFAULT },
ikrylov@2123 217 #define SHARK_PD_PRODUCT_FLAG_STRUCT(type, name, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{Shark pd product}", DEFAULT },
ikrylov@2123 218 #define SHARK_DIAGNOSTIC_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, NOT_PRODUCT_ARG(doc) "{Shark diagnostic}", DEFAULT },
twisti@2047 219 #ifdef PRODUCT
twisti@2047 220 #define SHARK_DEVELOP_FLAG_STRUCT(type, name, value, doc) /* flag is constant */
twisti@2047 221 #define SHARK_PD_DEVELOP_FLAG_STRUCT(type, name, doc) /* flag is constant */
twisti@2047 222 #define SHARK_NOTPRODUCT_FLAG_STRUCT(type, name, value, doc)
twisti@2047 223 #else
ikrylov@2123 224 #define SHARK_DEVELOP_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, doc, "{Shark}", DEFAULT },
ikrylov@2123 225 #define SHARK_PD_DEVELOP_FLAG_STRUCT(type, name, doc) { #type, XSTR(name), &name, doc, "{Shark pd}", DEFAULT },
ikrylov@2123 226 #define SHARK_NOTPRODUCT_FLAG_STRUCT(type, name, value, doc) { #type, XSTR(name), &name, doc, "{Shark notproduct}", DEFAULT },
twisti@2047 227 #endif
duke@435 228
duke@435 229 static Flag flagTable[] = {
ysr@785 230 RUNTIME_FLAGS(RUNTIME_DEVELOP_FLAG_STRUCT, RUNTIME_PD_DEVELOP_FLAG_STRUCT, RUNTIME_PRODUCT_FLAG_STRUCT, RUNTIME_PD_PRODUCT_FLAG_STRUCT, RUNTIME_DIAGNOSTIC_FLAG_STRUCT, RUNTIME_EXPERIMENTAL_FLAG_STRUCT, RUNTIME_NOTPRODUCT_FLAG_STRUCT, RUNTIME_MANAGEABLE_FLAG_STRUCT, RUNTIME_PRODUCT_RW_FLAG_STRUCT, RUNTIME_LP64_PRODUCT_FLAG_STRUCT)
duke@435 231 RUNTIME_OS_FLAGS(RUNTIME_DEVELOP_FLAG_STRUCT, RUNTIME_PD_DEVELOP_FLAG_STRUCT, RUNTIME_PRODUCT_FLAG_STRUCT, RUNTIME_PD_PRODUCT_FLAG_STRUCT, RUNTIME_DIAGNOSTIC_FLAG_STRUCT, RUNTIME_NOTPRODUCT_FLAG_STRUCT)
ysr@777 232 #ifndef SERIALGC
ysr@785 233 G1_FLAGS(RUNTIME_DEVELOP_FLAG_STRUCT, RUNTIME_PD_DEVELOP_FLAG_STRUCT, RUNTIME_PRODUCT_FLAG_STRUCT, RUNTIME_PD_PRODUCT_FLAG_STRUCT, RUNTIME_DIAGNOSTIC_FLAG_STRUCT, RUNTIME_EXPERIMENTAL_FLAG_STRUCT, RUNTIME_NOTPRODUCT_FLAG_STRUCT, RUNTIME_MANAGEABLE_FLAG_STRUCT, RUNTIME_PRODUCT_RW_FLAG_STRUCT)
ysr@777 234 #endif // SERIALGC
duke@435 235 #ifdef COMPILER1
duke@435 236 C1_FLAGS(C1_DEVELOP_FLAG_STRUCT, C1_PD_DEVELOP_FLAG_STRUCT, C1_PRODUCT_FLAG_STRUCT, C1_PD_PRODUCT_FLAG_STRUCT, C1_NOTPRODUCT_FLAG_STRUCT)
duke@435 237 #endif
duke@435 238 #ifdef COMPILER2
never@1515 239 C2_FLAGS(C2_DEVELOP_FLAG_STRUCT, C2_PD_DEVELOP_FLAG_STRUCT, C2_PRODUCT_FLAG_STRUCT, C2_PD_PRODUCT_FLAG_STRUCT, C2_DIAGNOSTIC_FLAG_STRUCT, C2_EXPERIMENTAL_FLAG_STRUCT, C2_NOTPRODUCT_FLAG_STRUCT)
duke@435 240 #endif
twisti@2047 241 #ifdef SHARK
twisti@2047 242 SHARK_FLAGS(SHARK_DEVELOP_FLAG_STRUCT, SHARK_PD_DEVELOP_FLAG_STRUCT, SHARK_PRODUCT_FLAG_STRUCT, SHARK_PD_PRODUCT_FLAG_STRUCT, SHARK_DIAGNOSTIC_FLAG_STRUCT, SHARK_NOTPRODUCT_FLAG_STRUCT)
twisti@2047 243 #endif
duke@435 244 {0, NULL, NULL}
duke@435 245 };
duke@435 246
duke@435 247 Flag* Flag::flags = flagTable;
duke@435 248 size_t Flag::numFlags = (sizeof(flagTable) / sizeof(Flag));
duke@435 249
duke@435 250 inline bool str_equal(const char* s, char* q, size_t len) {
duke@435 251 // s is null terminated, q is not!
duke@435 252 if (strlen(s) != (unsigned int) len) return false;
duke@435 253 return strncmp(s, q, len) == 0;
duke@435 254 }
duke@435 255
duke@435 256 Flag* Flag::find_flag(char* name, size_t length) {
duke@435 257 for (Flag* current = &flagTable[0]; current->name; current++) {
duke@435 258 if (str_equal(current->name, name, length)) {
duke@435 259 if (!(current->is_unlocked() || current->is_unlocker())) {
ysr@785 260 // disable use of diagnostic or experimental flags until they
ysr@785 261 // are explicitly unlocked
duke@435 262 return NULL;
duke@435 263 }
duke@435 264 return current;
duke@435 265 }
duke@435 266 }
duke@435 267 return NULL;
duke@435 268 }
duke@435 269
duke@435 270 // Returns the address of the index'th element
duke@435 271 static Flag* address_of_flag(CommandLineFlagWithType flag) {
duke@435 272 assert((size_t)flag < Flag::numFlags, "bad command line flag index");
duke@435 273 return &Flag::flags[flag];
duke@435 274 }
duke@435 275
duke@435 276 bool CommandLineFlagsEx::is_default(CommandLineFlag flag) {
duke@435 277 assert((size_t)flag < Flag::numFlags, "bad command line flag index");
duke@435 278 Flag* f = &Flag::flags[flag];
duke@435 279 return (f->origin == DEFAULT);
duke@435 280 }
duke@435 281
jmasa@448 282 bool CommandLineFlagsEx::is_ergo(CommandLineFlag flag) {
jmasa@448 283 assert((size_t)flag < Flag::numFlags, "bad command line flag index");
jmasa@448 284 Flag* f = &Flag::flags[flag];
jmasa@448 285 return (f->origin == ERGONOMIC);
jmasa@448 286 }
jmasa@448 287
jmasa@448 288 bool CommandLineFlagsEx::is_cmdline(CommandLineFlag flag) {
jmasa@448 289 assert((size_t)flag < Flag::numFlags, "bad command line flag index");
jmasa@448 290 Flag* f = &Flag::flags[flag];
jmasa@448 291 return (f->origin == COMMAND_LINE);
jmasa@448 292 }
jmasa@448 293
duke@435 294 bool CommandLineFlags::wasSetOnCmdline(const char* name, bool* value) {
duke@435 295 Flag* result = Flag::find_flag((char*)name, strlen(name));
duke@435 296 if (result == NULL) return false;
duke@435 297 *value = (result->origin == COMMAND_LINE);
duke@435 298 return true;
duke@435 299 }
duke@435 300
duke@435 301 bool CommandLineFlags::boolAt(char* name, size_t len, bool* value) {
duke@435 302 Flag* result = Flag::find_flag(name, len);
duke@435 303 if (result == NULL) return false;
duke@435 304 if (!result->is_bool()) return false;
duke@435 305 *value = result->get_bool();
duke@435 306 return true;
duke@435 307 }
duke@435 308
duke@435 309 bool CommandLineFlags::boolAtPut(char* name, size_t len, bool* value, FlagValueOrigin origin) {
duke@435 310 Flag* result = Flag::find_flag(name, len);
duke@435 311 if (result == NULL) return false;
duke@435 312 if (!result->is_bool()) return false;
duke@435 313 bool old_value = result->get_bool();
duke@435 314 result->set_bool(*value);
duke@435 315 *value = old_value;
duke@435 316 result->origin = origin;
duke@435 317 return true;
duke@435 318 }
duke@435 319
duke@435 320 void CommandLineFlagsEx::boolAtPut(CommandLineFlagWithType flag, bool value, FlagValueOrigin origin) {
duke@435 321 Flag* faddr = address_of_flag(flag);
duke@435 322 guarantee(faddr != NULL && faddr->is_bool(), "wrong flag type");
duke@435 323 faddr->set_bool(value);
duke@435 324 faddr->origin = origin;
duke@435 325 }
duke@435 326
duke@435 327 bool CommandLineFlags::intxAt(char* name, size_t len, intx* value) {
duke@435 328 Flag* result = Flag::find_flag(name, len);
duke@435 329 if (result == NULL) return false;
duke@435 330 if (!result->is_intx()) return false;
duke@435 331 *value = result->get_intx();
duke@435 332 return true;
duke@435 333 }
duke@435 334
duke@435 335 bool CommandLineFlags::intxAtPut(char* name, size_t len, intx* value, FlagValueOrigin origin) {
duke@435 336 Flag* result = Flag::find_flag(name, len);
duke@435 337 if (result == NULL) return false;
duke@435 338 if (!result->is_intx()) return false;
duke@435 339 intx old_value = result->get_intx();
duke@435 340 result->set_intx(*value);
duke@435 341 *value = old_value;
duke@435 342 result->origin = origin;
duke@435 343 return true;
duke@435 344 }
duke@435 345
duke@435 346 void CommandLineFlagsEx::intxAtPut(CommandLineFlagWithType flag, intx value, FlagValueOrigin origin) {
duke@435 347 Flag* faddr = address_of_flag(flag);
duke@435 348 guarantee(faddr != NULL && faddr->is_intx(), "wrong flag type");
duke@435 349 faddr->set_intx(value);
duke@435 350 faddr->origin = origin;
duke@435 351 }
duke@435 352
duke@435 353 bool CommandLineFlags::uintxAt(char* name, size_t len, uintx* value) {
duke@435 354 Flag* result = Flag::find_flag(name, len);
duke@435 355 if (result == NULL) return false;
duke@435 356 if (!result->is_uintx()) return false;
duke@435 357 *value = result->get_uintx();
duke@435 358 return true;
duke@435 359 }
duke@435 360
duke@435 361 bool CommandLineFlags::uintxAtPut(char* name, size_t len, uintx* value, FlagValueOrigin origin) {
duke@435 362 Flag* result = Flag::find_flag(name, len);
duke@435 363 if (result == NULL) return false;
duke@435 364 if (!result->is_uintx()) return false;
duke@435 365 uintx old_value = result->get_uintx();
duke@435 366 result->set_uintx(*value);
duke@435 367 *value = old_value;
duke@435 368 result->origin = origin;
duke@435 369 return true;
duke@435 370 }
duke@435 371
duke@435 372 void CommandLineFlagsEx::uintxAtPut(CommandLineFlagWithType flag, uintx value, FlagValueOrigin origin) {
duke@435 373 Flag* faddr = address_of_flag(flag);
duke@435 374 guarantee(faddr != NULL && faddr->is_uintx(), "wrong flag type");
duke@435 375 faddr->set_uintx(value);
duke@435 376 faddr->origin = origin;
duke@435 377 }
duke@435 378
phh@1499 379 bool CommandLineFlags::uint64_tAt(char* name, size_t len, uint64_t* value) {
phh@1499 380 Flag* result = Flag::find_flag(name, len);
phh@1499 381 if (result == NULL) return false;
phh@1499 382 if (!result->is_uint64_t()) return false;
phh@1499 383 *value = result->get_uint64_t();
phh@1499 384 return true;
phh@1499 385 }
phh@1499 386
phh@1499 387 bool CommandLineFlags::uint64_tAtPut(char* name, size_t len, uint64_t* value, FlagValueOrigin origin) {
phh@1499 388 Flag* result = Flag::find_flag(name, len);
phh@1499 389 if (result == NULL) return false;
phh@1499 390 if (!result->is_uint64_t()) return false;
phh@1499 391 uint64_t old_value = result->get_uint64_t();
phh@1499 392 result->set_uint64_t(*value);
phh@1499 393 *value = old_value;
phh@1499 394 result->origin = origin;
phh@1499 395 return true;
phh@1499 396 }
phh@1499 397
phh@1499 398 void CommandLineFlagsEx::uint64_tAtPut(CommandLineFlagWithType flag, uint64_t value, FlagValueOrigin origin) {
phh@1499 399 Flag* faddr = address_of_flag(flag);
phh@1499 400 guarantee(faddr != NULL && faddr->is_uint64_t(), "wrong flag type");
phh@1499 401 faddr->set_uint64_t(value);
phh@1499 402 faddr->origin = origin;
phh@1499 403 }
phh@1499 404
duke@435 405 bool CommandLineFlags::doubleAt(char* name, size_t len, double* value) {
duke@435 406 Flag* result = Flag::find_flag(name, len);
duke@435 407 if (result == NULL) return false;
duke@435 408 if (!result->is_double()) return false;
duke@435 409 *value = result->get_double();
duke@435 410 return true;
duke@435 411 }
duke@435 412
duke@435 413 bool CommandLineFlags::doubleAtPut(char* name, size_t len, double* value, FlagValueOrigin origin) {
duke@435 414 Flag* result = Flag::find_flag(name, len);
duke@435 415 if (result == NULL) return false;
duke@435 416 if (!result->is_double()) return false;
duke@435 417 double old_value = result->get_double();
duke@435 418 result->set_double(*value);
duke@435 419 *value = old_value;
duke@435 420 result->origin = origin;
duke@435 421 return true;
duke@435 422 }
duke@435 423
duke@435 424 void CommandLineFlagsEx::doubleAtPut(CommandLineFlagWithType flag, double value, FlagValueOrigin origin) {
duke@435 425 Flag* faddr = address_of_flag(flag);
duke@435 426 guarantee(faddr != NULL && faddr->is_double(), "wrong flag type");
duke@435 427 faddr->set_double(value);
duke@435 428 faddr->origin = origin;
duke@435 429 }
duke@435 430
duke@435 431 bool CommandLineFlags::ccstrAt(char* name, size_t len, ccstr* value) {
duke@435 432 Flag* result = Flag::find_flag(name, len);
duke@435 433 if (result == NULL) return false;
duke@435 434 if (!result->is_ccstr()) return false;
duke@435 435 *value = result->get_ccstr();
duke@435 436 return true;
duke@435 437 }
duke@435 438
duke@435 439 // Contract: Flag will make private copy of the incoming value.
duke@435 440 // Outgoing value is always malloc-ed, and caller MUST call free.
duke@435 441 bool CommandLineFlags::ccstrAtPut(char* name, size_t len, ccstr* value, FlagValueOrigin origin) {
duke@435 442 Flag* result = Flag::find_flag(name, len);
duke@435 443 if (result == NULL) return false;
duke@435 444 if (!result->is_ccstr()) return false;
duke@435 445 ccstr old_value = result->get_ccstr();
never@805 446 char* new_value = NULL;
never@805 447 if (*value != NULL) {
never@805 448 new_value = NEW_C_HEAP_ARRAY(char, strlen(*value)+1);
never@805 449 strcpy(new_value, *value);
never@805 450 }
duke@435 451 result->set_ccstr(new_value);
duke@435 452 if (result->origin == DEFAULT && old_value != NULL) {
duke@435 453 // Prior value is NOT heap allocated, but was a literal constant.
duke@435 454 char* old_value_to_free = NEW_C_HEAP_ARRAY(char, strlen(old_value)+1);
duke@435 455 strcpy(old_value_to_free, old_value);
duke@435 456 old_value = old_value_to_free;
duke@435 457 }
duke@435 458 *value = old_value;
duke@435 459 result->origin = origin;
duke@435 460 return true;
duke@435 461 }
duke@435 462
duke@435 463 // Contract: Flag will make private copy of the incoming value.
duke@435 464 void CommandLineFlagsEx::ccstrAtPut(CommandLineFlagWithType flag, ccstr value, FlagValueOrigin origin) {
duke@435 465 Flag* faddr = address_of_flag(flag);
duke@435 466 guarantee(faddr != NULL && faddr->is_ccstr(), "wrong flag type");
duke@435 467 ccstr old_value = faddr->get_ccstr();
duke@435 468 char* new_value = NEW_C_HEAP_ARRAY(char, strlen(value)+1);
duke@435 469 strcpy(new_value, value);
duke@435 470 faddr->set_ccstr(new_value);
duke@435 471 if (faddr->origin != DEFAULT && old_value != NULL) {
duke@435 472 // Prior value is heap allocated so free it.
duke@435 473 FREE_C_HEAP_ARRAY(char, old_value);
duke@435 474 }
duke@435 475 faddr->origin = origin;
duke@435 476 }
duke@435 477
duke@435 478 extern "C" {
duke@435 479 static int compare_flags(const void* void_a, const void* void_b) {
duke@435 480 return strcmp((*((Flag**) void_a))->name, (*((Flag**) void_b))->name);
duke@435 481 }
duke@435 482 }
duke@435 483
duke@435 484 void CommandLineFlags::printSetFlags() {
duke@435 485 // Print which flags were set on the command line
duke@435 486 // note: this method is called before the thread structure is in place
duke@435 487 // which means resource allocation cannot be used.
duke@435 488
duke@435 489 // Compute size
duke@435 490 int length= 0;
duke@435 491 while (flagTable[length].name != NULL) length++;
duke@435 492
duke@435 493 // Sort
duke@435 494 Flag** array = NEW_C_HEAP_ARRAY(Flag*, length);
duke@435 495 for (int index = 0; index < length; index++) {
duke@435 496 array[index] = &flagTable[index];
duke@435 497 }
duke@435 498 qsort(array, length, sizeof(Flag*), compare_flags);
duke@435 499
duke@435 500 // Print
duke@435 501 for (int i = 0; i < length; i++) {
duke@435 502 if (array[i]->origin /* naked field! */) {
duke@435 503 array[i]->print_as_flag(tty);
duke@435 504 tty->print(" ");
duke@435 505 }
duke@435 506 }
duke@435 507 tty->cr();
duke@435 508 FREE_C_HEAP_ARRAY(Flag*, array);
duke@435 509 }
duke@435 510
duke@435 511 #ifndef PRODUCT
duke@435 512
duke@435 513
duke@435 514 void CommandLineFlags::verify() {
duke@435 515 assert(Arguments::check_vm_args_consistency(), "Some flag settings conflict");
duke@435 516 }
duke@435 517
kvn@1585 518 #endif // PRODUCT
kvn@1585 519
ikrylov@2123 520 void CommandLineFlags::printFlags(bool withComments) {
duke@435 521 // Print the flags sorted by name
duke@435 522 // note: this method is called before the thread structure is in place
duke@435 523 // which means resource allocation cannot be used.
duke@435 524
duke@435 525 // Compute size
duke@435 526 int length= 0;
duke@435 527 while (flagTable[length].name != NULL) length++;
duke@435 528
duke@435 529 // Sort
duke@435 530 Flag** array = NEW_C_HEAP_ARRAY(Flag*, length);
duke@435 531 for (int index = 0; index < length; index++) {
duke@435 532 array[index] = &flagTable[index];
duke@435 533 }
duke@435 534 qsort(array, length, sizeof(Flag*), compare_flags);
duke@435 535
duke@435 536 // Print
duke@435 537 tty->print_cr("[Global flags]");
duke@435 538 for (int i = 0; i < length; i++) {
duke@435 539 if (array[i]->is_unlocked()) {
ikrylov@2123 540 array[i]->print_on(tty, withComments);
duke@435 541 }
duke@435 542 }
duke@435 543 FREE_C_HEAP_ARRAY(Flag*, array);
duke@435 544 }

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