src/os/bsd/vm/perfMemory_bsd.cpp

Fri, 31 Oct 2014 17:09:14 -0700

author
asaha
date
Fri, 31 Oct 2014 17:09:14 -0700
changeset 7709
5ca2ea5eeff0
parent 7074
833b0f92429a
parent 7707
60a992c821f8
child 7711
fb677d6aebea
permissions
-rw-r--r--

Merge

never@3156 1 /*
drchase@6680 2 * Copyright (c) 2001, 2014, Oracle and/or its affiliates. All rights reserved.
never@3156 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
never@3156 4 *
never@3156 5 * This code is free software; you can redistribute it and/or modify it
never@3156 6 * under the terms of the GNU General Public License version 2 only, as
never@3156 7 * published by the Free Software Foundation.
never@3156 8 *
never@3156 9 * This code is distributed in the hope that it will be useful, but WITHOUT
never@3156 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
never@3156 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
never@3156 12 * version 2 for more details (a copy is included in the LICENSE file that
never@3156 13 * accompanied this code).
never@3156 14 *
never@3156 15 * You should have received a copy of the GNU General Public License version
never@3156 16 * 2 along with this work; if not, write to the Free Software Foundation,
never@3156 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
never@3156 18 *
never@3156 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
never@3156 20 * or visit www.oracle.com if you need additional information or have any
never@3156 21 * questions.
never@3156 22 *
never@3156 23 */
never@3156 24
never@3156 25 #include "precompiled.hpp"
never@3156 26 #include "classfile/vmSymbols.hpp"
never@3156 27 #include "memory/allocation.inline.hpp"
never@3156 28 #include "memory/resourceArea.hpp"
never@3156 29 #include "oops/oop.inline.hpp"
never@3156 30 #include "os_bsd.inline.hpp"
never@3156 31 #include "runtime/handles.inline.hpp"
never@3156 32 #include "runtime/perfMemory.hpp"
zgu@4193 33 #include "services/memTracker.hpp"
never@3156 34 #include "utilities/exceptions.hpp"
never@3156 35
never@3156 36 // put OS-includes here
never@3156 37 # include <sys/types.h>
never@3156 38 # include <sys/mman.h>
never@3156 39 # include <errno.h>
never@3156 40 # include <stdio.h>
never@3156 41 # include <unistd.h>
never@3156 42 # include <sys/stat.h>
never@3156 43 # include <signal.h>
never@3156 44 # include <pwd.h>
never@3156 45
never@3156 46 static char* backing_store_file_name = NULL; // name of the backing store
never@3156 47 // file, if successfully created.
never@3156 48
never@3156 49 // Standard Memory Implementation Details
never@3156 50
never@3156 51 // create the PerfData memory region in standard memory.
never@3156 52 //
never@3156 53 static char* create_standard_memory(size_t size) {
never@3156 54
never@3156 55 // allocate an aligned chuck of memory
never@3156 56 char* mapAddress = os::reserve_memory(size);
never@3156 57
never@3156 58 if (mapAddress == NULL) {
never@3156 59 return NULL;
never@3156 60 }
never@3156 61
never@3156 62 // commit memory
dcubed@5255 63 if (!os::commit_memory(mapAddress, size, !ExecMem)) {
never@3156 64 if (PrintMiscellaneous && Verbose) {
never@3156 65 warning("Could not commit PerfData memory\n");
never@3156 66 }
never@3156 67 os::release_memory(mapAddress, size);
never@3156 68 return NULL;
never@3156 69 }
never@3156 70
never@3156 71 return mapAddress;
never@3156 72 }
never@3156 73
never@3156 74 // delete the PerfData memory region
never@3156 75 //
never@3156 76 static void delete_standard_memory(char* addr, size_t size) {
never@3156 77
never@3156 78 // there are no persistent external resources to cleanup for standard
never@3156 79 // memory. since DestroyJavaVM does not support unloading of the JVM,
never@3156 80 // cleanup of the memory resource is not performed. The memory will be
never@3156 81 // reclaimed by the OS upon termination of the process.
never@3156 82 //
never@3156 83 return;
never@3156 84 }
never@3156 85
never@3156 86 // save the specified memory region to the given file
never@3156 87 //
never@3156 88 // Note: this function might be called from signal handler (by os::abort()),
never@3156 89 // don't allocate heap memory.
never@3156 90 //
never@3156 91 static void save_memory_to_file(char* addr, size_t size) {
never@3156 92
never@3156 93 const char* destfile = PerfMemory::get_perfdata_file_path();
never@3156 94 assert(destfile[0] != '\0', "invalid PerfData file path");
never@3156 95
never@3156 96 int result;
never@3156 97
never@3156 98 RESTARTABLE(::open(destfile, O_CREAT|O_WRONLY|O_TRUNC, S_IREAD|S_IWRITE),
never@3156 99 result);;
never@3156 100 if (result == OS_ERR) {
never@3156 101 if (PrintMiscellaneous && Verbose) {
never@3156 102 warning("Could not create Perfdata save file: %s: %s\n",
never@3156 103 destfile, strerror(errno));
never@3156 104 }
never@3156 105 } else {
never@3156 106 int fd = result;
never@3156 107
never@3156 108 for (size_t remaining = size; remaining > 0;) {
never@3156 109
never@3156 110 RESTARTABLE(::write(fd, addr, remaining), result);
never@3156 111 if (result == OS_ERR) {
never@3156 112 if (PrintMiscellaneous && Verbose) {
never@3156 113 warning("Could not write Perfdata save file: %s: %s\n",
never@3156 114 destfile, strerror(errno));
never@3156 115 }
never@3156 116 break;
never@3156 117 }
never@3156 118
never@3156 119 remaining -= (size_t)result;
never@3156 120 addr += result;
never@3156 121 }
never@3156 122
rdurbin@5264 123 result = ::close(fd);
never@3156 124 if (PrintMiscellaneous && Verbose) {
never@3156 125 if (result == OS_ERR) {
never@3156 126 warning("Could not close %s: %s\n", destfile, strerror(errno));
never@3156 127 }
never@3156 128 }
never@3156 129 }
zgu@3900 130 FREE_C_HEAP_ARRAY(char, destfile, mtInternal);
never@3156 131 }
never@3156 132
never@3156 133
never@3156 134 // Shared Memory Implementation Details
never@3156 135
never@3156 136 // Note: the solaris and bsd shared memory implementation uses the mmap
never@3156 137 // interface with a backing store file to implement named shared memory.
never@3156 138 // Using the file system as the name space for shared memory allows a
never@3156 139 // common name space to be supported across a variety of platforms. It
never@3156 140 // also provides a name space that Java applications can deal with through
never@3156 141 // simple file apis.
never@3156 142 //
never@3156 143 // The solaris and bsd implementations store the backing store file in
never@3156 144 // a user specific temporary directory located in the /tmp file system,
never@3156 145 // which is always a local file system and is sometimes a RAM based file
never@3156 146 // system.
never@3156 147
never@3156 148 // return the user specific temporary directory name.
never@3156 149 //
never@3156 150 // the caller is expected to free the allocated memory.
never@3156 151 //
never@3156 152 static char* get_user_tmp_dir(const char* user) {
never@3156 153
never@3156 154 const char* tmpdir = os::get_temp_directory();
never@3156 155 const char* perfdir = PERFDATA_NAME;
never@3156 156 size_t nbytes = strlen(tmpdir) + strlen(perfdir) + strlen(user) + 3;
zgu@3900 157 char* dirname = NEW_C_HEAP_ARRAY(char, nbytes, mtInternal);
never@3156 158
never@3156 159 // construct the path name to user specific tmp directory
never@3156 160 snprintf(dirname, nbytes, "%s/%s_%s", tmpdir, perfdir, user);
never@3156 161
never@3156 162 return dirname;
never@3156 163 }
never@3156 164
never@3156 165 // convert the given file name into a process id. if the file
never@3156 166 // does not meet the file naming constraints, return 0.
never@3156 167 //
never@3156 168 static pid_t filename_to_pid(const char* filename) {
never@3156 169
never@3156 170 // a filename that doesn't begin with a digit is not a
never@3156 171 // candidate for conversion.
never@3156 172 //
never@3156 173 if (!isdigit(*filename)) {
never@3156 174 return 0;
never@3156 175 }
never@3156 176
never@3156 177 // check if file name can be converted to an integer without
never@3156 178 // any leftover characters.
never@3156 179 //
never@3156 180 char* remainder = NULL;
never@3156 181 errno = 0;
never@3156 182 pid_t pid = (pid_t)strtol(filename, &remainder, 10);
never@3156 183
never@3156 184 if (errno != 0) {
never@3156 185 return 0;
never@3156 186 }
never@3156 187
never@3156 188 // check for left over characters. If any, then the filename is
never@3156 189 // not a candidate for conversion.
never@3156 190 //
never@3156 191 if (remainder != NULL && *remainder != '\0') {
never@3156 192 return 0;
never@3156 193 }
never@3156 194
never@3156 195 // successful conversion, return the pid
never@3156 196 return pid;
never@3156 197 }
never@3156 198
never@3156 199
hseigel@7707 200 // Check if the given statbuf is considered a secure directory for
hseigel@7707 201 // the backing store files. Returns true if the directory is considered
hseigel@7707 202 // a secure location. Returns false if the statbuf is a symbolic link or
hseigel@7707 203 // if an error occurred.
hseigel@7707 204 //
hseigel@7707 205 static bool is_statbuf_secure(struct stat *statp) {
hseigel@7707 206 if (S_ISLNK(statp->st_mode) || !S_ISDIR(statp->st_mode)) {
hseigel@7707 207 // The path represents a link or some non-directory file type,
hseigel@7707 208 // which is not what we expected. Declare it insecure.
hseigel@7707 209 //
hseigel@7707 210 return false;
hseigel@7707 211 }
hseigel@7707 212 // We have an existing directory, check if the permissions are safe.
hseigel@7707 213 //
hseigel@7707 214 if ((statp->st_mode & (S_IWGRP|S_IWOTH)) != 0) {
hseigel@7707 215 // The directory is open for writing and could be subjected
hseigel@7707 216 // to a symlink or a hard link attack. Declare it insecure.
hseigel@7707 217 //
hseigel@7707 218 return false;
hseigel@7707 219 }
hseigel@7707 220 // See if the uid of the directory matches the effective uid of the process.
hseigel@7707 221 //
hseigel@7707 222 if (statp->st_uid != geteuid()) {
hseigel@7707 223 // The directory was not created by this user, declare it insecure.
hseigel@7707 224 //
hseigel@7707 225 return false;
hseigel@7707 226 }
hseigel@7707 227 return true;
hseigel@7707 228 }
hseigel@7707 229
hseigel@7707 230
hseigel@7707 231 // Check if the given path is considered a secure directory for
never@3156 232 // the backing store files. Returns true if the directory exists
never@3156 233 // and is considered a secure location. Returns false if the path
never@3156 234 // is a symbolic link or if an error occurred.
never@3156 235 //
never@3156 236 static bool is_directory_secure(const char* path) {
never@3156 237 struct stat statbuf;
never@3156 238 int result = 0;
never@3156 239
never@3156 240 RESTARTABLE(::lstat(path, &statbuf), result);
never@3156 241 if (result == OS_ERR) {
never@3156 242 return false;
never@3156 243 }
never@3156 244
hseigel@7707 245 // The path exists, see if it is secure.
hseigel@7707 246 return is_statbuf_secure(&statbuf);
hseigel@7707 247 }
hseigel@7707 248
hseigel@7707 249
hseigel@7707 250 // Check if the given directory file descriptor is considered a secure
hseigel@7707 251 // directory for the backing store files. Returns true if the directory
hseigel@7707 252 // exists and is considered a secure location. Returns false if the path
hseigel@7707 253 // is a symbolic link or if an error occurred.
hseigel@7707 254 //
hseigel@7707 255 static bool is_dirfd_secure(int dir_fd) {
hseigel@7707 256 struct stat statbuf;
hseigel@7707 257 int result = 0;
hseigel@7707 258
hseigel@7707 259 RESTARTABLE(::fstat(dir_fd, &statbuf), result);
hseigel@7707 260 if (result == OS_ERR) {
never@3156 261 return false;
never@3156 262 }
hseigel@7707 263
hseigel@7707 264 // The path exists, now check its mode.
hseigel@7707 265 return is_statbuf_secure(&statbuf);
hseigel@7707 266 }
hseigel@7707 267
hseigel@7707 268
hseigel@7707 269 // Check to make sure fd1 and fd2 are referencing the same file system object.
hseigel@7707 270 //
hseigel@7707 271 static bool is_same_fsobject(int fd1, int fd2) {
hseigel@7707 272 struct stat statbuf1;
hseigel@7707 273 struct stat statbuf2;
hseigel@7707 274 int result = 0;
hseigel@7707 275
hseigel@7707 276 RESTARTABLE(::fstat(fd1, &statbuf1), result);
hseigel@7707 277 if (result == OS_ERR) {
hseigel@7707 278 return false;
hseigel@7707 279 }
hseigel@7707 280 RESTARTABLE(::fstat(fd2, &statbuf2), result);
hseigel@7707 281 if (result == OS_ERR) {
hseigel@7707 282 return false;
hseigel@7707 283 }
hseigel@7707 284
hseigel@7707 285 if ((statbuf1.st_ino == statbuf2.st_ino) &&
hseigel@7707 286 (statbuf1.st_dev == statbuf2.st_dev)) {
hseigel@7707 287 return true;
hseigel@7707 288 } else {
hseigel@7707 289 return false;
hseigel@7707 290 }
hseigel@7707 291 }
hseigel@7707 292
hseigel@7707 293
hseigel@7707 294 // Open the directory of the given path and validate it.
hseigel@7707 295 // Return a DIR * of the open directory.
hseigel@7707 296 //
hseigel@7707 297 static DIR *open_directory_secure(const char* dirname) {
hseigel@7707 298 // Open the directory using open() so that it can be verified
hseigel@7707 299 // to be secure by calling is_dirfd_secure(), opendir() and then check
hseigel@7707 300 // to see if they are the same file system object. This method does not
hseigel@7707 301 // introduce a window of opportunity for the directory to be attacked that
hseigel@7707 302 // calling opendir() and is_directory_secure() does.
hseigel@7707 303 int result;
hseigel@7707 304 DIR *dirp = NULL;
hseigel@7707 305 RESTARTABLE(::open(dirname, O_RDONLY|O_NOFOLLOW), result);
hseigel@7707 306 if (result == OS_ERR) {
hseigel@7707 307 // Directory doesn't exist or is a symlink, so there is nothing to cleanup.
hseigel@7707 308 if (PrintMiscellaneous && Verbose) {
hseigel@7707 309 if (errno == ELOOP) {
hseigel@7707 310 warning("directory %s is a symlink and is not secure\n", dirname);
hseigel@7707 311 } else {
hseigel@7707 312 warning("could not open directory %s: %s\n", dirname, strerror(errno));
hseigel@7707 313 }
never@3156 314 }
hseigel@7707 315 return dirp;
hseigel@7707 316 }
hseigel@7707 317 int fd = result;
hseigel@7707 318
hseigel@7707 319 // Determine if the open directory is secure.
hseigel@7707 320 if (!is_dirfd_secure(fd)) {
hseigel@7707 321 // The directory is not a secure directory.
hseigel@7707 322 os::close(fd);
hseigel@7707 323 return dirp;
hseigel@7707 324 }
hseigel@7707 325
hseigel@7707 326 // Open the directory.
hseigel@7707 327 dirp = ::opendir(dirname);
hseigel@7707 328 if (dirp == NULL) {
hseigel@7707 329 // The directory doesn't exist, close fd and return.
hseigel@7707 330 os::close(fd);
hseigel@7707 331 return dirp;
hseigel@7707 332 }
hseigel@7707 333
hseigel@7707 334 // Check to make sure fd and dirp are referencing the same file system object.
hseigel@7707 335 if (!is_same_fsobject(fd, dirfd(dirp))) {
hseigel@7707 336 // The directory is not secure.
hseigel@7707 337 os::close(fd);
hseigel@7707 338 os::closedir(dirp);
hseigel@7707 339 dirp = NULL;
hseigel@7707 340 return dirp;
hseigel@7707 341 }
hseigel@7707 342
hseigel@7707 343 // Close initial open now that we know directory is secure
hseigel@7707 344 os::close(fd);
hseigel@7707 345
hseigel@7707 346 return dirp;
hseigel@7707 347 }
hseigel@7707 348
hseigel@7707 349 // NOTE: The code below uses fchdir(), open() and unlink() because
hseigel@7707 350 // fdopendir(), openat() and unlinkat() are not supported on all
hseigel@7707 351 // versions. Once the support for fdopendir(), openat() and unlinkat()
hseigel@7707 352 // is available on all supported versions the code can be changed
hseigel@7707 353 // to use these functions.
hseigel@7707 354
hseigel@7707 355 // Open the directory of the given path, validate it and set the
hseigel@7707 356 // current working directory to it.
hseigel@7707 357 // Return a DIR * of the open directory and the saved cwd fd.
hseigel@7707 358 //
hseigel@7707 359 static DIR *open_directory_secure_cwd(const char* dirname, int *saved_cwd_fd) {
hseigel@7707 360
hseigel@7707 361 // Open the directory.
hseigel@7707 362 DIR* dirp = open_directory_secure(dirname);
hseigel@7707 363 if (dirp == NULL) {
hseigel@7707 364 // Directory doesn't exist or is insecure, so there is nothing to cleanup.
hseigel@7707 365 return dirp;
hseigel@7707 366 }
hseigel@7707 367 int fd = dirfd(dirp);
hseigel@7707 368
hseigel@7707 369 // Open a fd to the cwd and save it off.
hseigel@7707 370 int result;
hseigel@7707 371 RESTARTABLE(::open(".", O_RDONLY), result);
hseigel@7707 372 if (result == OS_ERR) {
hseigel@7707 373 *saved_cwd_fd = -1;
hseigel@7707 374 } else {
hseigel@7707 375 *saved_cwd_fd = result;
hseigel@7707 376 }
hseigel@7707 377
hseigel@7707 378 // Set the current directory to dirname by using the fd of the directory.
hseigel@7707 379 result = fchdir(fd);
hseigel@7707 380
hseigel@7707 381 return dirp;
hseigel@7707 382 }
hseigel@7707 383
hseigel@7707 384 // Close the directory and restore the current working directory.
hseigel@7707 385 //
hseigel@7707 386 static void close_directory_secure_cwd(DIR* dirp, int saved_cwd_fd) {
hseigel@7707 387
hseigel@7707 388 int result;
hseigel@7707 389 // If we have a saved cwd change back to it and close the fd.
hseigel@7707 390 if (saved_cwd_fd != -1) {
hseigel@7707 391 result = fchdir(saved_cwd_fd);
hseigel@7707 392 ::close(saved_cwd_fd);
hseigel@7707 393 }
hseigel@7707 394
hseigel@7707 395 // Close the directory.
hseigel@7707 396 os::closedir(dirp);
hseigel@7707 397 }
hseigel@7707 398
hseigel@7707 399 // Check if the given file descriptor is considered a secure.
hseigel@7707 400 //
hseigel@7707 401 static bool is_file_secure(int fd, const char *filename) {
hseigel@7707 402
hseigel@7707 403 int result;
hseigel@7707 404 struct stat statbuf;
hseigel@7707 405
hseigel@7707 406 // Determine if the file is secure.
hseigel@7707 407 RESTARTABLE(::fstat(fd, &statbuf), result);
hseigel@7707 408 if (result == OS_ERR) {
hseigel@7707 409 if (PrintMiscellaneous && Verbose) {
hseigel@7707 410 warning("fstat failed on %s: %s\n", filename, strerror(errno));
hseigel@7707 411 }
hseigel@7707 412 return false;
hseigel@7707 413 }
hseigel@7707 414 if (statbuf.st_nlink > 1) {
hseigel@7707 415 // A file with multiple links is not expected.
hseigel@7707 416 if (PrintMiscellaneous && Verbose) {
hseigel@7707 417 warning("file %s has multiple links\n", filename);
hseigel@7707 418 }
hseigel@7707 419 return false;
never@3156 420 }
never@3156 421 return true;
never@3156 422 }
never@3156 423
never@3156 424 // return the user name for the given user id
never@3156 425 //
never@3156 426 // the caller is expected to free the allocated memory.
never@3156 427 //
never@3156 428 static char* get_user_name(uid_t uid) {
never@3156 429
never@3156 430 struct passwd pwent;
never@3156 431
never@3156 432 // determine the max pwbuf size from sysconf, and hardcode
never@3156 433 // a default if this not available through sysconf.
never@3156 434 //
never@3156 435 long bufsize = sysconf(_SC_GETPW_R_SIZE_MAX);
never@3156 436 if (bufsize == -1)
never@3156 437 bufsize = 1024;
never@3156 438
zgu@3900 439 char* pwbuf = NEW_C_HEAP_ARRAY(char, bufsize, mtInternal);
never@3156 440
never@3156 441 // POSIX interface to getpwuid_r is used on LINUX
never@3156 442 struct passwd* p;
never@3156 443 int result = getpwuid_r(uid, &pwent, pwbuf, (size_t)bufsize, &p);
never@3156 444
never@3156 445 if (result != 0 || p == NULL || p->pw_name == NULL || *(p->pw_name) == '\0') {
never@3156 446 if (PrintMiscellaneous && Verbose) {
never@3156 447 if (result != 0) {
never@3156 448 warning("Could not retrieve passwd entry: %s\n",
never@3156 449 strerror(result));
never@3156 450 }
never@3156 451 else if (p == NULL) {
never@3156 452 // this check is added to protect against an observed problem
never@3156 453 // with getpwuid_r() on RedHat 9 where getpwuid_r returns 0,
never@3156 454 // indicating success, but has p == NULL. This was observed when
never@3156 455 // inserting a file descriptor exhaustion fault prior to the call
never@3156 456 // getpwuid_r() call. In this case, error is set to the appropriate
never@3156 457 // error condition, but this is undocumented behavior. This check
never@3156 458 // is safe under any condition, but the use of errno in the output
never@3156 459 // message may result in an erroneous message.
never@3156 460 // Bug Id 89052 was opened with RedHat.
never@3156 461 //
never@3156 462 warning("Could not retrieve passwd entry: %s\n",
never@3156 463 strerror(errno));
never@3156 464 }
never@3156 465 else {
never@3156 466 warning("Could not determine user name: %s\n",
never@3156 467 p->pw_name == NULL ? "pw_name = NULL" :
never@3156 468 "pw_name zero length");
never@3156 469 }
never@3156 470 }
zgu@3900 471 FREE_C_HEAP_ARRAY(char, pwbuf, mtInternal);
never@3156 472 return NULL;
never@3156 473 }
never@3156 474
zgu@3900 475 char* user_name = NEW_C_HEAP_ARRAY(char, strlen(p->pw_name) + 1, mtInternal);
never@3156 476 strcpy(user_name, p->pw_name);
never@3156 477
zgu@3900 478 FREE_C_HEAP_ARRAY(char, pwbuf, mtInternal);
never@3156 479 return user_name;
never@3156 480 }
never@3156 481
never@3156 482 // return the name of the user that owns the process identified by vmid.
never@3156 483 //
never@3156 484 // This method uses a slow directory search algorithm to find the backing
never@3156 485 // store file for the specified vmid and returns the user name, as determined
never@3156 486 // by the user name suffix of the hsperfdata_<username> directory name.
never@3156 487 //
never@3156 488 // the caller is expected to free the allocated memory.
never@3156 489 //
never@3156 490 static char* get_user_name_slow(int vmid, TRAPS) {
never@3156 491
never@3156 492 // short circuit the directory search if the process doesn't even exist.
never@3156 493 if (kill(vmid, 0) == OS_ERR) {
never@3156 494 if (errno == ESRCH) {
never@3156 495 THROW_MSG_0(vmSymbols::java_lang_IllegalArgumentException(),
never@3156 496 "Process not found");
never@3156 497 }
never@3156 498 else /* EPERM */ {
never@3156 499 THROW_MSG_0(vmSymbols::java_io_IOException(), strerror(errno));
never@3156 500 }
never@3156 501 }
never@3156 502
never@3156 503 // directory search
never@3156 504 char* oldest_user = NULL;
never@3156 505 time_t oldest_ctime = 0;
never@3156 506
never@3156 507 const char* tmpdirname = os::get_temp_directory();
never@3156 508
hseigel@7707 509 // open the temp directory
hseigel@7707 510 DIR* tmpdirp = open_directory_secure(tmpdirname);
never@3156 511 if (tmpdirp == NULL) {
hseigel@7707 512 // Cannot open the directory to get the user name, return.
never@3156 513 return NULL;
never@3156 514 }
never@3156 515
never@3156 516 // for each entry in the directory that matches the pattern hsperfdata_*,
never@3156 517 // open the directory and check if the file for the given vmid exists.
never@3156 518 // The file with the expected name and the latest creation date is used
never@3156 519 // to determine the user name for the process id.
never@3156 520 //
never@3156 521 struct dirent* dentry;
zgu@3900 522 char* tdbuf = NEW_C_HEAP_ARRAY(char, os::readdir_buf_size(tmpdirname), mtInternal);
never@3156 523 errno = 0;
never@3156 524 while ((dentry = os::readdir(tmpdirp, (struct dirent *)tdbuf)) != NULL) {
never@3156 525
never@3156 526 // check if the directory entry is a hsperfdata file
never@3156 527 if (strncmp(dentry->d_name, PERFDATA_NAME, strlen(PERFDATA_NAME)) != 0) {
never@3156 528 continue;
never@3156 529 }
never@3156 530
never@3156 531 char* usrdir_name = NEW_C_HEAP_ARRAY(char,
zgu@3900 532 strlen(tmpdirname) + strlen(dentry->d_name) + 2, mtInternal);
never@3156 533 strcpy(usrdir_name, tmpdirname);
never@3156 534 strcat(usrdir_name, "/");
never@3156 535 strcat(usrdir_name, dentry->d_name);
never@3156 536
hseigel@7707 537 // open the user directory
hseigel@7707 538 DIR* subdirp = open_directory_secure(usrdir_name);
never@3156 539
never@3156 540 if (subdirp == NULL) {
zgu@3900 541 FREE_C_HEAP_ARRAY(char, usrdir_name, mtInternal);
never@3156 542 continue;
never@3156 543 }
never@3156 544
never@3156 545 struct dirent* udentry;
zgu@3900 546 char* udbuf = NEW_C_HEAP_ARRAY(char, os::readdir_buf_size(usrdir_name), mtInternal);
never@3156 547 errno = 0;
never@3156 548 while ((udentry = os::readdir(subdirp, (struct dirent *)udbuf)) != NULL) {
never@3156 549
never@3156 550 if (filename_to_pid(udentry->d_name) == vmid) {
never@3156 551 struct stat statbuf;
never@3156 552 int result;
never@3156 553
never@3156 554 char* filename = NEW_C_HEAP_ARRAY(char,
zgu@3900 555 strlen(usrdir_name) + strlen(udentry->d_name) + 2, mtInternal);
never@3156 556
never@3156 557 strcpy(filename, usrdir_name);
never@3156 558 strcat(filename, "/");
never@3156 559 strcat(filename, udentry->d_name);
never@3156 560
never@3156 561 // don't follow symbolic links for the file
never@3156 562 RESTARTABLE(::lstat(filename, &statbuf), result);
never@3156 563 if (result == OS_ERR) {
zgu@3900 564 FREE_C_HEAP_ARRAY(char, filename, mtInternal);
never@3156 565 continue;
never@3156 566 }
never@3156 567
never@3156 568 // skip over files that are not regular files.
never@3156 569 if (!S_ISREG(statbuf.st_mode)) {
zgu@3900 570 FREE_C_HEAP_ARRAY(char, filename, mtInternal);
never@3156 571 continue;
never@3156 572 }
never@3156 573
never@3156 574 // compare and save filename with latest creation time
never@3156 575 if (statbuf.st_size > 0 && statbuf.st_ctime > oldest_ctime) {
never@3156 576
never@3156 577 if (statbuf.st_ctime > oldest_ctime) {
never@3156 578 char* user = strchr(dentry->d_name, '_') + 1;
never@3156 579
zgu@3900 580 if (oldest_user != NULL) FREE_C_HEAP_ARRAY(char, oldest_user, mtInternal);
zgu@3900 581 oldest_user = NEW_C_HEAP_ARRAY(char, strlen(user)+1, mtInternal);
never@3156 582
never@3156 583 strcpy(oldest_user, user);
never@3156 584 oldest_ctime = statbuf.st_ctime;
never@3156 585 }
never@3156 586 }
never@3156 587
zgu@3900 588 FREE_C_HEAP_ARRAY(char, filename, mtInternal);
never@3156 589 }
never@3156 590 }
never@3156 591 os::closedir(subdirp);
zgu@3900 592 FREE_C_HEAP_ARRAY(char, udbuf, mtInternal);
zgu@3900 593 FREE_C_HEAP_ARRAY(char, usrdir_name, mtInternal);
never@3156 594 }
never@3156 595 os::closedir(tmpdirp);
zgu@3900 596 FREE_C_HEAP_ARRAY(char, tdbuf, mtInternal);
never@3156 597
never@3156 598 return(oldest_user);
never@3156 599 }
never@3156 600
never@3156 601 // return the name of the user that owns the JVM indicated by the given vmid.
never@3156 602 //
never@3156 603 static char* get_user_name(int vmid, TRAPS) {
never@3156 604 return get_user_name_slow(vmid, CHECK_NULL);
never@3156 605 }
never@3156 606
never@3156 607 // return the file name of the backing store file for the named
never@3156 608 // shared memory region for the given user name and vmid.
never@3156 609 //
never@3156 610 // the caller is expected to free the allocated memory.
never@3156 611 //
never@3156 612 static char* get_sharedmem_filename(const char* dirname, int vmid) {
never@3156 613
never@3156 614 // add 2 for the file separator and a null terminator.
never@3156 615 size_t nbytes = strlen(dirname) + UINT_CHARS + 2;
never@3156 616
zgu@3900 617 char* name = NEW_C_HEAP_ARRAY(char, nbytes, mtInternal);
never@3156 618 snprintf(name, nbytes, "%s/%d", dirname, vmid);
never@3156 619
never@3156 620 return name;
never@3156 621 }
never@3156 622
never@3156 623
never@3156 624 // remove file
never@3156 625 //
never@3156 626 // this method removes the file specified by the given path
never@3156 627 //
never@3156 628 static void remove_file(const char* path) {
never@3156 629
never@3156 630 int result;
never@3156 631
never@3156 632 // if the file is a directory, the following unlink will fail. since
never@3156 633 // we don't expect to find directories in the user temp directory, we
never@3156 634 // won't try to handle this situation. even if accidentially or
never@3156 635 // maliciously planted, the directory's presence won't hurt anything.
never@3156 636 //
never@3156 637 RESTARTABLE(::unlink(path), result);
never@3156 638 if (PrintMiscellaneous && Verbose && result == OS_ERR) {
never@3156 639 if (errno != ENOENT) {
never@3156 640 warning("Could not unlink shared memory backing"
never@3156 641 " store file %s : %s\n", path, strerror(errno));
never@3156 642 }
never@3156 643 }
never@3156 644 }
never@3156 645
never@3156 646
never@3156 647 // cleanup stale shared memory resources
never@3156 648 //
never@3156 649 // This method attempts to remove all stale shared memory files in
never@3156 650 // the named user temporary directory. It scans the named directory
never@3156 651 // for files matching the pattern ^$[0-9]*$. For each file found, the
never@3156 652 // process id is extracted from the file name and a test is run to
never@3156 653 // determine if the process is alive. If the process is not alive,
never@3156 654 // any stale file resources are removed.
never@3156 655 //
never@3156 656 static void cleanup_sharedmem_resources(const char* dirname) {
never@3156 657
hseigel@7707 658 int saved_cwd_fd;
hseigel@7707 659 // open the directory and set the current working directory to it
hseigel@7707 660 DIR* dirp = open_directory_secure_cwd(dirname, &saved_cwd_fd);
never@3156 661 if (dirp == NULL) {
hseigel@7707 662 // directory doesn't exist or is insecure, so there is nothing to cleanup
never@3156 663 return;
never@3156 664 }
never@3156 665
never@3156 666 // for each entry in the directory that matches the expected file
never@3156 667 // name pattern, determine if the file resources are stale and if
never@3156 668 // so, remove the file resources. Note, instrumented HotSpot processes
never@3156 669 // for this user may start and/or terminate during this search and
never@3156 670 // remove or create new files in this directory. The behavior of this
never@3156 671 // loop under these conditions is dependent upon the implementation of
never@3156 672 // opendir/readdir.
never@3156 673 //
never@3156 674 struct dirent* entry;
zgu@3900 675 char* dbuf = NEW_C_HEAP_ARRAY(char, os::readdir_buf_size(dirname), mtInternal);
hseigel@7707 676
never@3156 677 errno = 0;
never@3156 678 while ((entry = os::readdir(dirp, (struct dirent *)dbuf)) != NULL) {
never@3156 679
never@3156 680 pid_t pid = filename_to_pid(entry->d_name);
never@3156 681
never@3156 682 if (pid == 0) {
never@3156 683
never@3156 684 if (strcmp(entry->d_name, ".") != 0 && strcmp(entry->d_name, "..") != 0) {
never@3156 685
never@3156 686 // attempt to remove all unexpected files, except "." and ".."
hseigel@7707 687 unlink(entry->d_name);
never@3156 688 }
never@3156 689
never@3156 690 errno = 0;
never@3156 691 continue;
never@3156 692 }
never@3156 693
never@3156 694 // we now have a file name that converts to a valid integer
never@3156 695 // that could represent a process id . if this process id
never@3156 696 // matches the current process id or the process is not running,
never@3156 697 // then remove the stale file resources.
never@3156 698 //
never@3156 699 // process liveness is detected by sending signal number 0 to
never@3156 700 // the process id (see kill(2)). if kill determines that the
never@3156 701 // process does not exist, then the file resources are removed.
never@3156 702 // if kill determines that that we don't have permission to
never@3156 703 // signal the process, then the file resources are assumed to
never@3156 704 // be stale and are removed because the resources for such a
never@3156 705 // process should be in a different user specific directory.
never@3156 706 //
never@3156 707 if ((pid == os::current_process_id()) ||
never@3156 708 (kill(pid, 0) == OS_ERR && (errno == ESRCH || errno == EPERM))) {
never@3156 709
hseigel@7707 710 unlink(entry->d_name);
never@3156 711 }
never@3156 712 errno = 0;
never@3156 713 }
hseigel@7707 714
hseigel@7707 715 // close the directory and reset the current working directory
hseigel@7707 716 close_directory_secure_cwd(dirp, saved_cwd_fd);
hseigel@7707 717
zgu@3900 718 FREE_C_HEAP_ARRAY(char, dbuf, mtInternal);
never@3156 719 }
never@3156 720
never@3156 721 // make the user specific temporary directory. Returns true if
never@3156 722 // the directory exists and is secure upon return. Returns false
never@3156 723 // if the directory exists but is either a symlink, is otherwise
never@3156 724 // insecure, or if an error occurred.
never@3156 725 //
never@3156 726 static bool make_user_tmp_dir(const char* dirname) {
never@3156 727
never@3156 728 // create the directory with 0755 permissions. note that the directory
never@3156 729 // will be owned by euid::egid, which may not be the same as uid::gid.
never@3156 730 //
never@3156 731 if (mkdir(dirname, S_IRWXU|S_IRGRP|S_IXGRP|S_IROTH|S_IXOTH) == OS_ERR) {
never@3156 732 if (errno == EEXIST) {
never@3156 733 // The directory already exists and was probably created by another
never@3156 734 // JVM instance. However, this could also be the result of a
never@3156 735 // deliberate symlink. Verify that the existing directory is safe.
never@3156 736 //
never@3156 737 if (!is_directory_secure(dirname)) {
never@3156 738 // directory is not secure
never@3156 739 if (PrintMiscellaneous && Verbose) {
never@3156 740 warning("%s directory is insecure\n", dirname);
never@3156 741 }
never@3156 742 return false;
never@3156 743 }
never@3156 744 }
never@3156 745 else {
never@3156 746 // we encountered some other failure while attempting
never@3156 747 // to create the directory
never@3156 748 //
never@3156 749 if (PrintMiscellaneous && Verbose) {
never@3156 750 warning("could not create directory %s: %s\n",
never@3156 751 dirname, strerror(errno));
never@3156 752 }
never@3156 753 return false;
never@3156 754 }
never@3156 755 }
never@3156 756 return true;
never@3156 757 }
never@3156 758
never@3156 759 // create the shared memory file resources
never@3156 760 //
never@3156 761 // This method creates the shared memory file with the given size
never@3156 762 // This method also creates the user specific temporary directory, if
never@3156 763 // it does not yet exist.
never@3156 764 //
never@3156 765 static int create_sharedmem_resources(const char* dirname, const char* filename, size_t size) {
never@3156 766
never@3156 767 // make the user temporary directory
never@3156 768 if (!make_user_tmp_dir(dirname)) {
never@3156 769 // could not make/find the directory or the found directory
never@3156 770 // was not secure
never@3156 771 return -1;
never@3156 772 }
never@3156 773
hseigel@7707 774 int saved_cwd_fd;
hseigel@7707 775 // open the directory and set the current working directory to it
hseigel@7707 776 DIR* dirp = open_directory_secure_cwd(dirname, &saved_cwd_fd);
hseigel@7707 777 if (dirp == NULL) {
hseigel@7707 778 // Directory doesn't exist or is insecure, so cannot create shared
hseigel@7707 779 // memory file.
hseigel@7707 780 return -1;
hseigel@7707 781 }
hseigel@7707 782
hseigel@7707 783 // Open the filename in the current directory.
hseigel@7707 784 // Cannot use O_TRUNC here; truncation of an existing file has to happen
hseigel@7707 785 // after the is_file_secure() check below.
never@3156 786 int result;
hseigel@7707 787 RESTARTABLE(::open(filename, O_RDWR|O_CREAT|O_NOFOLLOW, S_IREAD|S_IWRITE), result);
never@3156 788 if (result == OS_ERR) {
never@3156 789 if (PrintMiscellaneous && Verbose) {
hseigel@7707 790 if (errno == ELOOP) {
hseigel@7707 791 warning("file %s is a symlink and is not secure\n", filename);
hseigel@7707 792 } else {
hseigel@7707 793 warning("could not create file %s: %s\n", filename, strerror(errno));
hseigel@7707 794 }
never@3156 795 }
hseigel@7707 796 // close the directory and reset the current working directory
hseigel@7707 797 close_directory_secure_cwd(dirp, saved_cwd_fd);
hseigel@7707 798
never@3156 799 return -1;
never@3156 800 }
hseigel@7707 801 // close the directory and reset the current working directory
hseigel@7707 802 close_directory_secure_cwd(dirp, saved_cwd_fd);
never@3156 803
never@3156 804 // save the file descriptor
never@3156 805 int fd = result;
never@3156 806
hseigel@7707 807 // check to see if the file is secure
hseigel@7707 808 if (!is_file_secure(fd, filename)) {
hseigel@7707 809 ::close(fd);
hseigel@7707 810 return -1;
hseigel@7707 811 }
hseigel@7707 812
hseigel@7707 813 // truncate the file to get rid of any existing data
hseigel@7707 814 RESTARTABLE(::ftruncate(fd, (off_t)0), result);
hseigel@7707 815 if (result == OS_ERR) {
hseigel@7707 816 if (PrintMiscellaneous && Verbose) {
hseigel@7707 817 warning("could not truncate shared memory file: %s\n", strerror(errno));
hseigel@7707 818 }
hseigel@7707 819 ::close(fd);
hseigel@7707 820 return -1;
hseigel@7707 821 }
never@3156 822 // set the file size
never@3156 823 RESTARTABLE(::ftruncate(fd, (off_t)size), result);
never@3156 824 if (result == OS_ERR) {
never@3156 825 if (PrintMiscellaneous && Verbose) {
never@3156 826 warning("could not set shared memory file size: %s\n", strerror(errno));
never@3156 827 }
rdurbin@5264 828 ::close(fd);
never@3156 829 return -1;
never@3156 830 }
never@3156 831
never@3156 832 // Verify that we have enough disk space for this file.
never@3156 833 // We'll get random SIGBUS crashes on memory accesses if
never@3156 834 // we don't.
never@3156 835
never@3156 836 for (size_t seekpos = 0; seekpos < size; seekpos += os::vm_page_size()) {
never@3156 837 int zero_int = 0;
never@3156 838 result = (int)os::seek_to_file_offset(fd, (jlong)(seekpos));
never@3156 839 if (result == -1 ) break;
never@3156 840 RESTARTABLE(::write(fd, &zero_int, 1), result);
never@3156 841 if (result != 1) {
never@3156 842 if (errno == ENOSPC) {
never@3156 843 warning("Insufficient space for shared memory file:\n %s\nTry using the -Djava.io.tmpdir= option to select an alternate temp location.\n", filename);
never@3156 844 }
never@3156 845 break;
never@3156 846 }
never@3156 847 }
never@3156 848
never@3156 849 if (result != -1) {
never@3156 850 return fd;
never@3156 851 } else {
rdurbin@5264 852 ::close(fd);
never@3156 853 return -1;
never@3156 854 }
never@3156 855 }
never@3156 856
never@3156 857 // open the shared memory file for the given user and vmid. returns
never@3156 858 // the file descriptor for the open file or -1 if the file could not
never@3156 859 // be opened.
never@3156 860 //
never@3156 861 static int open_sharedmem_file(const char* filename, int oflags, TRAPS) {
never@3156 862
never@3156 863 // open the file
never@3156 864 int result;
never@3156 865 RESTARTABLE(::open(filename, oflags), result);
never@3156 866 if (result == OS_ERR) {
never@3156 867 if (errno == ENOENT) {
ccheung@4893 868 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(),
ccheung@4893 869 "Process not found", OS_ERR);
never@3156 870 }
never@3156 871 else if (errno == EACCES) {
ccheung@4893 872 THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(),
ccheung@4893 873 "Permission denied", OS_ERR);
never@3156 874 }
never@3156 875 else {
ccheung@4893 876 THROW_MSG_(vmSymbols::java_io_IOException(), strerror(errno), OS_ERR);
never@3156 877 }
never@3156 878 }
hseigel@7707 879 int fd = result;
never@3156 880
hseigel@7707 881 // check to see if the file is secure
hseigel@7707 882 if (!is_file_secure(fd, filename)) {
hseigel@7707 883 ::close(fd);
hseigel@7707 884 return -1;
hseigel@7707 885 }
hseigel@7707 886
hseigel@7707 887 return fd;
never@3156 888 }
never@3156 889
never@3156 890 // create a named shared memory region. returns the address of the
never@3156 891 // memory region on success or NULL on failure. A return value of
never@3156 892 // NULL will ultimately disable the shared memory feature.
never@3156 893 //
never@3156 894 // On Solaris and Bsd, the name space for shared memory objects
never@3156 895 // is the file system name space.
never@3156 896 //
never@3156 897 // A monitoring application attaching to a JVM does not need to know
never@3156 898 // the file system name of the shared memory object. However, it may
never@3156 899 // be convenient for applications to discover the existence of newly
never@3156 900 // created and terminating JVMs by watching the file system name space
never@3156 901 // for files being created or removed.
never@3156 902 //
never@3156 903 static char* mmap_create_shared(size_t size) {
never@3156 904
never@3156 905 int result;
never@3156 906 int fd;
never@3156 907 char* mapAddress;
never@3156 908
never@3156 909 int vmid = os::current_process_id();
never@3156 910
never@3156 911 char* user_name = get_user_name(geteuid());
never@3156 912
never@3156 913 if (user_name == NULL)
never@3156 914 return NULL;
never@3156 915
never@3156 916 char* dirname = get_user_tmp_dir(user_name);
never@3156 917 char* filename = get_sharedmem_filename(dirname, vmid);
never@3156 918
hseigel@7707 919 // get the short filename
hseigel@7707 920 char* short_filename = strrchr(filename, '/');
hseigel@7707 921 if (short_filename == NULL) {
hseigel@7707 922 short_filename = filename;
hseigel@7707 923 } else {
hseigel@7707 924 short_filename++;
hseigel@7707 925 }
hseigel@7707 926
never@3156 927 // cleanup any stale shared memory files
never@3156 928 cleanup_sharedmem_resources(dirname);
never@3156 929
never@3156 930 assert(((size > 0) && (size % os::vm_page_size() == 0)),
never@3156 931 "unexpected PerfMemory region size");
never@3156 932
hseigel@7707 933 fd = create_sharedmem_resources(dirname, short_filename, size);
never@3156 934
zgu@3900 935 FREE_C_HEAP_ARRAY(char, user_name, mtInternal);
zgu@3900 936 FREE_C_HEAP_ARRAY(char, dirname, mtInternal);
never@3156 937
never@3156 938 if (fd == -1) {
zgu@3900 939 FREE_C_HEAP_ARRAY(char, filename, mtInternal);
never@3156 940 return NULL;
never@3156 941 }
never@3156 942
never@3156 943 mapAddress = (char*)::mmap((char*)0, size, PROT_READ|PROT_WRITE, MAP_SHARED, fd, 0);
never@3156 944
rdurbin@5264 945 result = ::close(fd);
never@3156 946 assert(result != OS_ERR, "could not close file");
never@3156 947
never@3156 948 if (mapAddress == MAP_FAILED) {
never@3156 949 if (PrintMiscellaneous && Verbose) {
never@3156 950 warning("mmap failed - %s\n", strerror(errno));
never@3156 951 }
never@3156 952 remove_file(filename);
zgu@3900 953 FREE_C_HEAP_ARRAY(char, filename, mtInternal);
never@3156 954 return NULL;
never@3156 955 }
never@3156 956
never@3156 957 // save the file name for use in delete_shared_memory()
never@3156 958 backing_store_file_name = filename;
never@3156 959
never@3156 960 // clear the shared memory region
never@3156 961 (void)::memset((void*) mapAddress, 0, size);
never@3156 962
zgu@4193 963 // it does not go through os api, the operation has to record from here
zgu@7074 964 MemTracker::record_virtual_memory_reserve_and_commit((address)mapAddress, size, CURRENT_PC, mtInternal);
zgu@4193 965
never@3156 966 return mapAddress;
never@3156 967 }
never@3156 968
never@3156 969 // release a named shared memory region
never@3156 970 //
never@3156 971 static void unmap_shared(char* addr, size_t bytes) {
never@3156 972 os::release_memory(addr, bytes);
never@3156 973 }
never@3156 974
never@3156 975 // create the PerfData memory region in shared memory.
never@3156 976 //
never@3156 977 static char* create_shared_memory(size_t size) {
never@3156 978
never@3156 979 // create the shared memory region.
never@3156 980 return mmap_create_shared(size);
never@3156 981 }
never@3156 982
never@3156 983 // delete the shared PerfData memory region
never@3156 984 //
never@3156 985 static void delete_shared_memory(char* addr, size_t size) {
never@3156 986
never@3156 987 // cleanup the persistent shared memory resources. since DestroyJavaVM does
never@3156 988 // not support unloading of the JVM, unmapping of the memory resource is
never@3156 989 // not performed. The memory will be reclaimed by the OS upon termination of
never@3156 990 // the process. The backing store file is deleted from the file system.
never@3156 991
never@3156 992 assert(!PerfDisableSharedMem, "shouldn't be here");
never@3156 993
never@3156 994 if (backing_store_file_name != NULL) {
never@3156 995 remove_file(backing_store_file_name);
never@3156 996 // Don't.. Free heap memory could deadlock os::abort() if it is called
never@3156 997 // from signal handler. OS will reclaim the heap memory.
never@3156 998 // FREE_C_HEAP_ARRAY(char, backing_store_file_name);
never@3156 999 backing_store_file_name = NULL;
never@3156 1000 }
never@3156 1001 }
never@3156 1002
never@3156 1003 // return the size of the file for the given file descriptor
never@3156 1004 // or 0 if it is not a valid size for a shared memory file
never@3156 1005 //
never@3156 1006 static size_t sharedmem_filesize(int fd, TRAPS) {
never@3156 1007
never@3156 1008 struct stat statbuf;
never@3156 1009 int result;
never@3156 1010
never@3156 1011 RESTARTABLE(::fstat(fd, &statbuf), result);
never@3156 1012 if (result == OS_ERR) {
never@3156 1013 if (PrintMiscellaneous && Verbose) {
never@3156 1014 warning("fstat failed: %s\n", strerror(errno));
never@3156 1015 }
never@3156 1016 THROW_MSG_0(vmSymbols::java_io_IOException(),
never@3156 1017 "Could not determine PerfMemory size");
never@3156 1018 }
never@3156 1019
never@3156 1020 if ((statbuf.st_size == 0) ||
never@3156 1021 ((size_t)statbuf.st_size % os::vm_page_size() != 0)) {
never@3156 1022 THROW_MSG_0(vmSymbols::java_lang_Exception(),
never@3156 1023 "Invalid PerfMemory size");
never@3156 1024 }
never@3156 1025
never@3156 1026 return (size_t)statbuf.st_size;
never@3156 1027 }
never@3156 1028
never@3156 1029 // attach to a named shared memory region.
never@3156 1030 //
never@3156 1031 static void mmap_attach_shared(const char* user, int vmid, PerfMemory::PerfMemoryMode mode, char** addr, size_t* sizep, TRAPS) {
never@3156 1032
never@3156 1033 char* mapAddress;
never@3156 1034 int result;
never@3156 1035 int fd;
ccheung@4893 1036 size_t size = 0;
never@3156 1037 const char* luser = NULL;
never@3156 1038
never@3156 1039 int mmap_prot;
never@3156 1040 int file_flags;
never@3156 1041
never@3156 1042 ResourceMark rm;
never@3156 1043
never@3156 1044 // map the high level access mode to the appropriate permission
never@3156 1045 // constructs for the file and the shared memory mapping.
never@3156 1046 if (mode == PerfMemory::PERF_MODE_RO) {
never@3156 1047 mmap_prot = PROT_READ;
hseigel@7707 1048 file_flags = O_RDONLY | O_NOFOLLOW;
never@3156 1049 }
never@3156 1050 else if (mode == PerfMemory::PERF_MODE_RW) {
never@3156 1051 #ifdef LATER
never@3156 1052 mmap_prot = PROT_READ | PROT_WRITE;
hseigel@7707 1053 file_flags = O_RDWR | O_NOFOLLOW;
never@3156 1054 #else
never@3156 1055 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(),
never@3156 1056 "Unsupported access mode");
never@3156 1057 #endif
never@3156 1058 }
never@3156 1059 else {
never@3156 1060 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(),
never@3156 1061 "Illegal access mode");
never@3156 1062 }
never@3156 1063
never@3156 1064 if (user == NULL || strlen(user) == 0) {
never@3156 1065 luser = get_user_name(vmid, CHECK);
never@3156 1066 }
never@3156 1067 else {
never@3156 1068 luser = user;
never@3156 1069 }
never@3156 1070
never@3156 1071 if (luser == NULL) {
never@3156 1072 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(),
never@3156 1073 "Could not map vmid to user Name");
never@3156 1074 }
never@3156 1075
never@3156 1076 char* dirname = get_user_tmp_dir(luser);
never@3156 1077
never@3156 1078 // since we don't follow symbolic links when creating the backing
never@3156 1079 // store file, we don't follow them when attaching either.
never@3156 1080 //
never@3156 1081 if (!is_directory_secure(dirname)) {
zgu@3900 1082 FREE_C_HEAP_ARRAY(char, dirname, mtInternal);
never@3156 1083 THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(),
never@3156 1084 "Process not found");
never@3156 1085 }
never@3156 1086
never@3156 1087 char* filename = get_sharedmem_filename(dirname, vmid);
never@3156 1088
never@3156 1089 // copy heap memory to resource memory. the open_sharedmem_file
never@3156 1090 // method below need to use the filename, but could throw an
never@3156 1091 // exception. using a resource array prevents the leak that
never@3156 1092 // would otherwise occur.
never@3156 1093 char* rfilename = NEW_RESOURCE_ARRAY(char, strlen(filename) + 1);
never@3156 1094 strcpy(rfilename, filename);
never@3156 1095
never@3156 1096 // free the c heap resources that are no longer needed
zgu@3900 1097 if (luser != user) FREE_C_HEAP_ARRAY(char, luser, mtInternal);
zgu@3900 1098 FREE_C_HEAP_ARRAY(char, dirname, mtInternal);
zgu@3900 1099 FREE_C_HEAP_ARRAY(char, filename, mtInternal);
never@3156 1100
never@3156 1101 // open the shared memory file for the give vmid
never@3156 1102 fd = open_sharedmem_file(rfilename, file_flags, CHECK);
never@3156 1103 assert(fd != OS_ERR, "unexpected value");
never@3156 1104
never@3156 1105 if (*sizep == 0) {
never@3156 1106 size = sharedmem_filesize(fd, CHECK);
ccheung@4893 1107 } else {
ccheung@4893 1108 size = *sizep;
never@3156 1109 }
never@3156 1110
ccheung@4893 1111 assert(size > 0, "unexpected size <= 0");
ccheung@4893 1112
never@3156 1113 mapAddress = (char*)::mmap((char*)0, size, mmap_prot, MAP_SHARED, fd, 0);
never@3156 1114
never@3156 1115 // attempt to close the file - restart if it gets interrupted,
never@3156 1116 // but ignore other failures
rdurbin@5264 1117 result = ::close(fd);
never@3156 1118 assert(result != OS_ERR, "could not close file");
never@3156 1119
never@3156 1120 if (mapAddress == MAP_FAILED) {
never@3156 1121 if (PrintMiscellaneous && Verbose) {
never@3156 1122 warning("mmap failed: %s\n", strerror(errno));
never@3156 1123 }
never@3156 1124 THROW_MSG(vmSymbols::java_lang_OutOfMemoryError(),
never@3156 1125 "Could not map PerfMemory");
never@3156 1126 }
never@3156 1127
zgu@4193 1128 // it does not go through os api, the operation has to record from here
zgu@7074 1129 MemTracker::record_virtual_memory_reserve_and_commit((address)mapAddress, size, CURRENT_PC, mtInternal);
zgu@4193 1130
never@3156 1131 *addr = mapAddress;
never@3156 1132 *sizep = size;
never@3156 1133
never@3156 1134 if (PerfTraceMemOps) {
never@3156 1135 tty->print("mapped " SIZE_FORMAT " bytes for vmid %d at "
drchase@6680 1136 INTPTR_FORMAT "\n", size, vmid, p2i((void*)mapAddress));
never@3156 1137 }
never@3156 1138 }
never@3156 1139
never@3156 1140
never@3156 1141
never@3156 1142
never@3156 1143 // create the PerfData memory region
never@3156 1144 //
never@3156 1145 // This method creates the memory region used to store performance
never@3156 1146 // data for the JVM. The memory may be created in standard or
never@3156 1147 // shared memory.
never@3156 1148 //
never@3156 1149 void PerfMemory::create_memory_region(size_t size) {
never@3156 1150
never@3156 1151 if (PerfDisableSharedMem) {
never@3156 1152 // do not share the memory for the performance data.
never@3156 1153 _start = create_standard_memory(size);
never@3156 1154 }
never@3156 1155 else {
never@3156 1156 _start = create_shared_memory(size);
never@3156 1157 if (_start == NULL) {
never@3156 1158
never@3156 1159 // creation of the shared memory region failed, attempt
never@3156 1160 // to create a contiguous, non-shared memory region instead.
never@3156 1161 //
never@3156 1162 if (PrintMiscellaneous && Verbose) {
never@3156 1163 warning("Reverting to non-shared PerfMemory region.\n");
never@3156 1164 }
never@3156 1165 PerfDisableSharedMem = true;
never@3156 1166 _start = create_standard_memory(size);
never@3156 1167 }
never@3156 1168 }
never@3156 1169
never@3156 1170 if (_start != NULL) _capacity = size;
never@3156 1171
never@3156 1172 }
never@3156 1173
never@3156 1174 // delete the PerfData memory region
never@3156 1175 //
never@3156 1176 // This method deletes the memory region used to store performance
never@3156 1177 // data for the JVM. The memory region indicated by the <address, size>
never@3156 1178 // tuple will be inaccessible after a call to this method.
never@3156 1179 //
never@3156 1180 void PerfMemory::delete_memory_region() {
never@3156 1181
never@3156 1182 assert((start() != NULL && capacity() > 0), "verify proper state");
never@3156 1183
never@3156 1184 // If user specifies PerfDataSaveFile, it will save the performance data
never@3156 1185 // to the specified file name no matter whether PerfDataSaveToFile is specified
never@3156 1186 // or not. In other word, -XX:PerfDataSaveFile=.. overrides flag
never@3156 1187 // -XX:+PerfDataSaveToFile.
never@3156 1188 if (PerfDataSaveToFile || PerfDataSaveFile != NULL) {
never@3156 1189 save_memory_to_file(start(), capacity());
never@3156 1190 }
never@3156 1191
never@3156 1192 if (PerfDisableSharedMem) {
never@3156 1193 delete_standard_memory(start(), capacity());
never@3156 1194 }
never@3156 1195 else {
never@3156 1196 delete_shared_memory(start(), capacity());
never@3156 1197 }
never@3156 1198 }
never@3156 1199
never@3156 1200 // attach to the PerfData memory region for another JVM
never@3156 1201 //
never@3156 1202 // This method returns an <address, size> tuple that points to
never@3156 1203 // a memory buffer that is kept reasonably synchronized with
never@3156 1204 // the PerfData memory region for the indicated JVM. This
never@3156 1205 // buffer may be kept in synchronization via shared memory
never@3156 1206 // or some other mechanism that keeps the buffer updated.
never@3156 1207 //
never@3156 1208 // If the JVM chooses not to support the attachability feature,
never@3156 1209 // this method should throw an UnsupportedOperation exception.
never@3156 1210 //
never@3156 1211 // This implementation utilizes named shared memory to map
never@3156 1212 // the indicated process's PerfData memory region into this JVMs
never@3156 1213 // address space.
never@3156 1214 //
never@3156 1215 void PerfMemory::attach(const char* user, int vmid, PerfMemoryMode mode, char** addrp, size_t* sizep, TRAPS) {
never@3156 1216
never@3156 1217 if (vmid == 0 || vmid == os::current_process_id()) {
never@3156 1218 *addrp = start();
never@3156 1219 *sizep = capacity();
never@3156 1220 return;
never@3156 1221 }
never@3156 1222
never@3156 1223 mmap_attach_shared(user, vmid, mode, addrp, sizep, CHECK);
never@3156 1224 }
never@3156 1225
never@3156 1226 // detach from the PerfData memory region of another JVM
never@3156 1227 //
never@3156 1228 // This method detaches the PerfData memory region of another
never@3156 1229 // JVM, specified as an <address, size> tuple of a buffer
never@3156 1230 // in this process's address space. This method may perform
never@3156 1231 // arbitrary actions to accomplish the detachment. The memory
never@3156 1232 // region specified by <address, size> will be inaccessible after
never@3156 1233 // a call to this method.
never@3156 1234 //
never@3156 1235 // If the JVM chooses not to support the attachability feature,
never@3156 1236 // this method should throw an UnsupportedOperation exception.
never@3156 1237 //
never@3156 1238 // This implementation utilizes named shared memory to detach
never@3156 1239 // the indicated process's PerfData memory region from this
never@3156 1240 // process's address space.
never@3156 1241 //
never@3156 1242 void PerfMemory::detach(char* addr, size_t bytes, TRAPS) {
never@3156 1243
never@3156 1244 assert(addr != 0, "address sanity check");
never@3156 1245 assert(bytes > 0, "capacity sanity check");
never@3156 1246
never@3156 1247 if (PerfMemory::contains(addr) || PerfMemory::contains(addr + bytes - 1)) {
never@3156 1248 // prevent accidental detachment of this process's PerfMemory region
never@3156 1249 return;
never@3156 1250 }
never@3156 1251
never@3156 1252 unmap_shared(addr, bytes);
never@3156 1253 }
never@3156 1254
never@3156 1255 char* PerfMemory::backing_store_filename() {
never@3156 1256 return backing_store_file_name;
never@3156 1257 }

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