ostream.cpp revision 3557:4ee06e614636
1/*
2 * Copyright (c) 1997, 2012, 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 "compiler/compileLog.hpp"
27#include "oops/oop.inline.hpp"
28#include "runtime/arguments.hpp"
29#include "utilities/defaultStream.hpp"
30#include "utilities/ostream.hpp"
31#include "utilities/top.hpp"
32#include "utilities/xmlstream.hpp"
33#ifdef TARGET_OS_FAMILY_linux
34# include "os_linux.inline.hpp"
35#endif
36#ifdef TARGET_OS_FAMILY_solaris
37# include "os_solaris.inline.hpp"
38#endif
39#ifdef TARGET_OS_FAMILY_windows
40# include "os_windows.inline.hpp"
41#endif
42#ifdef TARGET_OS_FAMILY_bsd
43# include "os_bsd.inline.hpp"
44#endif
45
46extern "C" void jio_print(const char* s); // Declarationtion of jvm method
47
48outputStream::outputStream(int width) {
49  _width       = width;
50  _position    = 0;
51  _newlines    = 0;
52  _precount    = 0;
53  _indentation = 0;
54}
55
56outputStream::outputStream(int width, bool has_time_stamps) {
57  _width       = width;
58  _position    = 0;
59  _newlines    = 0;
60  _precount    = 0;
61  _indentation = 0;
62  if (has_time_stamps)  _stamp.update();
63}
64
65void outputStream::update_position(const char* s, size_t len) {
66  for (size_t i = 0; i < len; i++) {
67    char ch = s[i];
68    if (ch == '\n') {
69      _newlines += 1;
70      _precount += _position + 1;
71      _position = 0;
72    } else if (ch == '\t') {
73      int tw = 8 - (_position & 7);
74      _position += tw;
75      _precount -= tw-1;  // invariant:  _precount + _position == total count
76    } else {
77      _position += 1;
78    }
79  }
80}
81
82// Execute a vsprintf, using the given buffer if necessary.
83// Return a pointer to the formatted string.
84const char* outputStream::do_vsnprintf(char* buffer, size_t buflen,
85                                       const char* format, va_list ap,
86                                       bool add_cr,
87                                       size_t& result_len) {
88  const char* result;
89  if (add_cr)  buflen--;
90  if (!strchr(format, '%')) {
91    // constant format string
92    result = format;
93    result_len = strlen(result);
94    if (add_cr && result_len >= buflen)  result_len = buflen-1;  // truncate
95  } else if (format[0] == '%' && format[1] == 's' && format[2] == '\0') {
96    // trivial copy-through format string
97    result = va_arg(ap, const char*);
98    result_len = strlen(result);
99    if (add_cr && result_len >= buflen)  result_len = buflen-1;  // truncate
100  } else if (vsnprintf(buffer, buflen, format, ap) >= 0) {
101    result = buffer;
102    result_len = strlen(result);
103  } else {
104    DEBUG_ONLY(warning("increase O_BUFLEN in ostream.hpp -- output truncated");)
105    result = buffer;
106    result_len = buflen - 1;
107    buffer[result_len] = 0;
108  }
109  if (add_cr) {
110    if (result != buffer) {
111      strncpy(buffer, result, buflen);
112      result = buffer;
113    }
114    buffer[result_len++] = '\n';
115    buffer[result_len] = 0;
116  }
117  return result;
118}
119
120void outputStream::print(const char* format, ...) {
121  char buffer[O_BUFLEN];
122  va_list ap;
123  va_start(ap, format);
124  size_t len;
125  const char* str = do_vsnprintf(buffer, O_BUFLEN, format, ap, false, len);
126  write(str, len);
127  va_end(ap);
128}
129
130void outputStream::print_cr(const char* format, ...) {
131  char buffer[O_BUFLEN];
132  va_list ap;
133  va_start(ap, format);
134  size_t len;
135  const char* str = do_vsnprintf(buffer, O_BUFLEN, format, ap, true, len);
136  write(str, len);
137  va_end(ap);
138}
139
140void outputStream::vprint(const char *format, va_list argptr) {
141  char buffer[O_BUFLEN];
142  size_t len;
143  const char* str = do_vsnprintf(buffer, O_BUFLEN, format, argptr, false, len);
144  write(str, len);
145}
146
147void outputStream::vprint_cr(const char* format, va_list argptr) {
148  char buffer[O_BUFLEN];
149  size_t len;
150  const char* str = do_vsnprintf(buffer, O_BUFLEN, format, argptr, true, len);
151  write(str, len);
152}
153
154void outputStream::fill_to(int col) {
155  int need_fill = col - position();
156  sp(need_fill);
157}
158
159void outputStream::move_to(int col, int slop, int min_space) {
160  if (position() >= col + slop)
161    cr();
162  int need_fill = col - position();
163  if (need_fill < min_space)
164    need_fill = min_space;
165  sp(need_fill);
166}
167
168void outputStream::put(char ch) {
169  assert(ch != 0, "please fix call site");
170  char buf[] = { ch, '\0' };
171  write(buf, 1);
172}
173
174#define SP_USE_TABS false
175
176void outputStream::sp(int count) {
177  if (count < 0)  return;
178  if (SP_USE_TABS && count >= 8) {
179    int target = position() + count;
180    while (count >= 8) {
181      this->write("\t", 1);
182      count -= 8;
183    }
184    count = target - position();
185  }
186  while (count > 0) {
187    int nw = (count > 8) ? 8 : count;
188    this->write("        ", nw);
189    count -= nw;
190  }
191}
192
193void outputStream::cr() {
194  this->write("\n", 1);
195}
196
197void outputStream::stamp() {
198  if (! _stamp.is_updated()) {
199    _stamp.update(); // start at 0 on first call to stamp()
200  }
201
202  // outputStream::stamp() may get called by ostream_abort(), use snprintf
203  // to avoid allocating large stack buffer in print().
204  char buf[40];
205  jio_snprintf(buf, sizeof(buf), "%.3f", _stamp.seconds());
206  print_raw(buf);
207}
208
209void outputStream::stamp(bool guard,
210                         const char* prefix,
211                         const char* suffix) {
212  if (!guard) {
213    return;
214  }
215  print_raw(prefix);
216  stamp();
217  print_raw(suffix);
218}
219
220void outputStream::date_stamp(bool guard,
221                              const char* prefix,
222                              const char* suffix) {
223  if (!guard) {
224    return;
225  }
226  print_raw(prefix);
227  static const char error_time[] = "yyyy-mm-ddThh:mm:ss.mmm+zzzz";
228  static const int buffer_length = 32;
229  char buffer[buffer_length];
230  const char* iso8601_result = os::iso8601_time(buffer, buffer_length);
231  if (iso8601_result != NULL) {
232    print_raw(buffer);
233  } else {
234    print_raw(error_time);
235  }
236  print_raw(suffix);
237  return;
238}
239
240outputStream& outputStream::indent() {
241  while (_position < _indentation) sp();
242  return *this;
243}
244
245void outputStream::print_jlong(jlong value) {
246  // N.B. Same as INT64_FORMAT
247  print(os::jlong_format_specifier(), value);
248}
249
250void outputStream::print_julong(julong value) {
251  // N.B. Same as UINT64_FORMAT
252  print(os::julong_format_specifier(), value);
253}
254
255/**
256 * This prints out hex data in a 'windbg' or 'xxd' form, where each line is:
257 *   <hex-address>: 8 * <hex-halfword> <ascii translation (optional)>
258 * example:
259 * 0000000: 7f44 4f46 0102 0102 0000 0000 0000 0000  .DOF............
260 * 0000010: 0000 0000 0000 0040 0000 0020 0000 0005  .......@... ....
261 * 0000020: 0000 0000 0000 0040 0000 0000 0000 015d  .......@.......]
262 * ...
263 *
264 * indent is applied to each line.  Ends with a CR.
265 */
266void outputStream::print_data(void* data, size_t len, bool with_ascii) {
267  size_t limit = (len + 16) / 16 * 16;
268  for (size_t i = 0; i < limit; ++i) {
269    if (i % 16 == 0) {
270      indent().print("%07x:", i);
271    }
272    if (i % 2 == 0) {
273      print(" ");
274    }
275    if (i < len) {
276      print("%02x", ((unsigned char*)data)[i]);
277    } else {
278      print("  ");
279    }
280    if ((i + 1) % 16 == 0) {
281      if (with_ascii) {
282        print("  ");
283        for (size_t j = 0; j < 16; ++j) {
284          size_t idx = i + j - 15;
285          if (idx < len) {
286            char c = ((char*)data)[idx];
287            print("%c", c >= 32 && c <= 126 ? c : '.');
288          }
289        }
290      }
291      print_cr("");
292    }
293  }
294}
295
296stringStream::stringStream(size_t initial_size) : outputStream() {
297  buffer_length = initial_size;
298  buffer        = NEW_RESOURCE_ARRAY(char, buffer_length);
299  buffer_pos    = 0;
300  buffer_fixed  = false;
301}
302
303// useful for output to fixed chunks of memory, such as performance counters
304stringStream::stringStream(char* fixed_buffer, size_t fixed_buffer_size) : outputStream() {
305  buffer_length = fixed_buffer_size;
306  buffer        = fixed_buffer;
307  buffer_pos    = 0;
308  buffer_fixed  = true;
309}
310
311void stringStream::write(const char* s, size_t len) {
312  size_t write_len = len;               // number of non-null bytes to write
313  size_t end = buffer_pos + len + 1;    // position after write and final '\0'
314  if (end > buffer_length) {
315    if (buffer_fixed) {
316      // if buffer cannot resize, silently truncate
317      end = buffer_length;
318      write_len = end - buffer_pos - 1; // leave room for the final '\0'
319    } else {
320      // For small overruns, double the buffer.  For larger ones,
321      // increase to the requested size.
322      if (end < buffer_length * 2) {
323        end = buffer_length * 2;
324      }
325      char* oldbuf = buffer;
326      buffer = NEW_RESOURCE_ARRAY(char, end);
327      strncpy(buffer, oldbuf, buffer_pos);
328      buffer_length = end;
329    }
330  }
331  // invariant: buffer is always null-terminated
332  guarantee(buffer_pos + write_len + 1 <= buffer_length, "stringStream oob");
333  buffer[buffer_pos + write_len] = 0;
334  strncpy(buffer + buffer_pos, s, write_len);
335  buffer_pos += write_len;
336
337  // Note that the following does not depend on write_len.
338  // This means that position and count get updated
339  // even when overflow occurs.
340  update_position(s, len);
341}
342
343char* stringStream::as_string() {
344  char* copy = NEW_RESOURCE_ARRAY(char, buffer_pos+1);
345  strncpy(copy, buffer, buffer_pos);
346  copy[buffer_pos] = 0;  // terminating null
347  return copy;
348}
349
350stringStream::~stringStream() {}
351
352xmlStream*   xtty;
353outputStream* tty;
354outputStream* gclog_or_tty;
355extern Mutex* tty_lock;
356
357fileStream::fileStream(const char* file_name) {
358  _file = fopen(file_name, "w");
359  _need_close = true;
360}
361
362fileStream::fileStream(const char* file_name, const char* opentype) {
363  _file = fopen(file_name, opentype);
364  _need_close = true;
365}
366
367void fileStream::write(const char* s, size_t len) {
368  if (_file != NULL)  {
369    // Make an unused local variable to avoid warning from gcc 4.x compiler.
370    size_t count = fwrite(s, 1, len, _file);
371  }
372  update_position(s, len);
373}
374
375long fileStream::fileSize() {
376  long size = -1;
377  if (_file != NULL) {
378    long pos  = ::ftell(_file);
379    if (::fseek(_file, 0, SEEK_END) == 0) {
380      size = ::ftell(_file);
381    }
382    ::fseek(_file, pos, SEEK_SET);
383  }
384  return size;
385}
386
387char* fileStream::readln(char *data, int count ) {
388  char * ret = ::fgets(data, count, _file);
389  //Get rid of annoying \n char
390  data[::strlen(data)-1] = '\0';
391  return ret;
392}
393
394fileStream::~fileStream() {
395  if (_file != NULL) {
396    if (_need_close) fclose(_file);
397    _file      = NULL;
398  }
399}
400
401void fileStream::flush() {
402  fflush(_file);
403}
404
405fdStream::fdStream(const char* file_name) {
406  _fd = open(file_name, O_WRONLY | O_CREAT | O_TRUNC, 0666);
407  _need_close = true;
408}
409
410fdStream::~fdStream() {
411  if (_fd != -1) {
412    if (_need_close) close(_fd);
413    _fd = -1;
414  }
415}
416
417void fdStream::write(const char* s, size_t len) {
418  if (_fd != -1) {
419    // Make an unused local variable to avoid warning from gcc 4.x compiler.
420    size_t count = ::write(_fd, s, (int)len);
421  }
422  update_position(s, len);
423}
424
425rotatingFileStream::~rotatingFileStream() {
426  if (_file != NULL) {
427    if (_need_close) fclose(_file);
428    _file      = NULL;
429    FREE_C_HEAP_ARRAY(char, _file_name, mtInternal);
430    _file_name = NULL;
431  }
432}
433
434rotatingFileStream::rotatingFileStream(const char* file_name) {
435  _cur_file_num = 0;
436  _bytes_writen = 0L;
437  _file_name = NEW_C_HEAP_ARRAY(char, strlen(file_name)+10, mtInternal);
438  jio_snprintf(_file_name, strlen(file_name)+10, "%s.%d", file_name, _cur_file_num);
439  _file = fopen(_file_name, "w");
440  _need_close = true;
441}
442
443rotatingFileStream::rotatingFileStream(const char* file_name, const char* opentype) {
444  _cur_file_num = 0;
445  _bytes_writen = 0L;
446  _file_name = NEW_C_HEAP_ARRAY(char, strlen(file_name)+10, mtInternal);
447  jio_snprintf(_file_name, strlen(file_name)+10, "%s.%d", file_name, _cur_file_num);
448  _file = fopen(_file_name, opentype);
449  _need_close = true;
450}
451
452void rotatingFileStream::write(const char* s, size_t len) {
453  if (_file != NULL)  {
454    // Make an unused local variable to avoid warning from gcc 4.x compiler.
455    size_t count = fwrite(s, 1, len, _file);
456    Atomic::add((jlong)count, &_bytes_writen);
457  }
458  update_position(s, len);
459}
460
461// rotate_log must be called from VMThread at safepoint. In case need change parameters
462// for gc log rotation from thread other than VMThread, a sub type of VM_Operation
463// should be created and be submitted to VMThread's operation queue. DO NOT call this
464// function directly. Currently, it is safe to rotate log at safepoint through VMThread.
465// That is, no mutator threads and concurrent GC threads run parallel with VMThread to
466// write to gc log file at safepoint. If in future, changes made for mutator threads or
467// concurrent GC threads to run parallel with VMThread at safepoint, write and rotate_log
468// must be synchronized.
469void rotatingFileStream::rotate_log() {
470  if (_bytes_writen < (jlong)GCLogFileSize) return;
471#ifdef ASSERT
472  Thread *thread = Thread::current();
473  assert(thread == NULL ||
474         (thread->is_VM_thread() && SafepointSynchronize::is_at_safepoint()),
475         "Must be VMThread at safepoint");
476#endif
477  if (NumberOfGCLogFiles == 1) {
478    // rotate in same file
479    rewind();
480    _bytes_writen = 0L;
481    return;
482  }
483
484  // rotate file in names file.0, file.1, file.2, ..., file.<MaxGCLogFileNumbers-1>
485  // close current file, rotate to next file
486  if (_file != NULL) {
487    _cur_file_num ++;
488    if (_cur_file_num >= NumberOfGCLogFiles) _cur_file_num = 0;
489    jio_snprintf(_file_name, strlen(Arguments::gc_log_filename()) + 10, "%s.%d",
490             Arguments::gc_log_filename(), _cur_file_num);
491    fclose(_file);
492    _file = NULL;
493  }
494  _file = fopen(_file_name, "w");
495  if (_file != NULL) {
496    _bytes_writen = 0L;
497    _need_close = true;
498  } else {
499    tty->print_cr("failed to open rotation log file %s due to %s\n",
500                  _file_name, strerror(errno));
501    _need_close = false;
502  }
503}
504
505defaultStream* defaultStream::instance = NULL;
506int defaultStream::_output_fd = 1;
507int defaultStream::_error_fd  = 2;
508FILE* defaultStream::_output_stream = stdout;
509FILE* defaultStream::_error_stream  = stderr;
510
511#define LOG_MAJOR_VERSION 160
512#define LOG_MINOR_VERSION 1
513
514void defaultStream::init() {
515  _inited = true;
516  if (LogVMOutput || LogCompilation) {
517    init_log();
518  }
519}
520
521bool defaultStream::has_log_file() {
522  // lazily create log file (at startup, LogVMOutput is false even
523  // if +LogVMOutput is used, because the flags haven't been parsed yet)
524  // For safer printing during fatal error handling, do not init logfile
525  // if a VM error has been reported.
526  if (!_inited && !is_error_reported())  init();
527  return _log_file != NULL;
528}
529
530static const char* make_log_name(const char* log_name, const char* force_directory) {
531  const char* basename = log_name;
532  char file_sep = os::file_separator()[0];
533  const char* cp;
534  for (cp = log_name; *cp != '\0'; cp++) {
535    if (*cp == '/' || *cp == file_sep) {
536      basename = cp+1;
537    }
538  }
539  const char* nametail = log_name;
540
541  // Compute buffer length
542  size_t buffer_length;
543  if (force_directory != NULL) {
544    buffer_length = strlen(force_directory) + strlen(os::file_separator()) +
545                    strlen(basename) + 1;
546  } else {
547    buffer_length = strlen(log_name) + 1;
548  }
549
550  const char* star = strchr(basename, '*');
551  int star_pos = (star == NULL) ? -1 : (star - nametail);
552  int skip = 1;
553  if (star == NULL) {
554    // Try %p
555    star = strstr(basename, "%p");
556    if (star != NULL) {
557      skip = 2;
558    }
559  }
560  star_pos = (star == NULL) ? -1 : (star - nametail);
561
562  char pid[32];
563  if (star_pos >= 0) {
564    jio_snprintf(pid, sizeof(pid), "%u", os::current_process_id());
565    buffer_length += strlen(pid);
566  }
567
568  // Create big enough buffer.
569  char *buf = NEW_C_HEAP_ARRAY(char, buffer_length, mtInternal);
570
571  strcpy(buf, "");
572  if (force_directory != NULL) {
573    strcat(buf, force_directory);
574    strcat(buf, os::file_separator());
575    nametail = basename;       // completely skip directory prefix
576  }
577
578  if (star_pos >= 0) {
579    // convert foo*bar.log or foo%pbar.log to foo123bar.log
580    int buf_pos = (int) strlen(buf);
581    strncpy(&buf[buf_pos], nametail, star_pos);
582    strcpy(&buf[buf_pos + star_pos], pid);
583    nametail += star_pos + skip;  // skip prefix and pid format
584  }
585
586  strcat(buf, nametail);      // append rest of name, or all of name
587  return buf;
588}
589
590void defaultStream::init_log() {
591  // %%% Need a MutexLocker?
592  const char* log_name = LogFile != NULL ? LogFile : "hotspot.log";
593  const char* try_name = make_log_name(log_name, NULL);
594  fileStream* file = new(ResourceObj::C_HEAP, mtInternal) fileStream(try_name);
595  if (!file->is_open()) {
596    // Try again to open the file.
597    char warnbuf[O_BUFLEN*2];
598    jio_snprintf(warnbuf, sizeof(warnbuf),
599                 "Warning:  Cannot open log file: %s\n", try_name);
600    // Note:  This feature is for maintainer use only.  No need for L10N.
601    jio_print(warnbuf);
602    FREE_C_HEAP_ARRAY(char, try_name, mtInternal);
603    try_name = make_log_name("hs_pid%p.log", os::get_temp_directory());
604    jio_snprintf(warnbuf, sizeof(warnbuf),
605                 "Warning:  Forcing option -XX:LogFile=%s\n", try_name);
606    jio_print(warnbuf);
607    delete file;
608    file = new(ResourceObj::C_HEAP, mtInternal) fileStream(try_name);
609    FREE_C_HEAP_ARRAY(char, try_name, mtInternal);
610  }
611  if (file->is_open()) {
612    _log_file = file;
613    xmlStream* xs = new(ResourceObj::C_HEAP, mtInternal) xmlStream(file);
614    _outer_xmlStream = xs;
615    if (this == tty)  xtty = xs;
616    // Write XML header.
617    xs->print_cr("<?xml version='1.0' encoding='UTF-8'?>");
618    // (For now, don't bother to issue a DTD for this private format.)
619    jlong time_ms = os::javaTimeMillis() - tty->time_stamp().milliseconds();
620    // %%% Should be: jlong time_ms = os::start_time_milliseconds(), if
621    // we ever get round to introduce that method on the os class
622    xs->head("hotspot_log version='%d %d'"
623             " process='%d' time_ms='"INT64_FORMAT"'",
624             LOG_MAJOR_VERSION, LOG_MINOR_VERSION,
625             os::current_process_id(), time_ms);
626    // Write VM version header immediately.
627    xs->head("vm_version");
628    xs->head("name"); xs->text("%s", VM_Version::vm_name()); xs->cr();
629    xs->tail("name");
630    xs->head("release"); xs->text("%s", VM_Version::vm_release()); xs->cr();
631    xs->tail("release");
632    xs->head("info"); xs->text("%s", VM_Version::internal_vm_info_string()); xs->cr();
633    xs->tail("info");
634    xs->tail("vm_version");
635    // Record information about the command-line invocation.
636    xs->head("vm_arguments");  // Cf. Arguments::print_on()
637    if (Arguments::num_jvm_flags() > 0) {
638      xs->head("flags");
639      Arguments::print_jvm_flags_on(xs->text());
640      xs->tail("flags");
641    }
642    if (Arguments::num_jvm_args() > 0) {
643      xs->head("args");
644      Arguments::print_jvm_args_on(xs->text());
645      xs->tail("args");
646    }
647    if (Arguments::java_command() != NULL) {
648      xs->head("command"); xs->text()->print_cr("%s", Arguments::java_command());
649      xs->tail("command");
650    }
651    if (Arguments::sun_java_launcher() != NULL) {
652      xs->head("launcher"); xs->text()->print_cr("%s", Arguments::sun_java_launcher());
653      xs->tail("launcher");
654    }
655    if (Arguments::system_properties() !=  NULL) {
656      xs->head("properties");
657      // Print it as a java-style property list.
658      // System properties don't generally contain newlines, so don't bother with unparsing.
659      for (SystemProperty* p = Arguments::system_properties(); p != NULL; p = p->next()) {
660        xs->text()->print_cr("%s=%s", p->key(), p->value());
661      }
662      xs->tail("properties");
663    }
664    xs->tail("vm_arguments");
665    // tty output per se is grouped under the <tty>...</tty> element.
666    xs->head("tty");
667    // All further non-markup text gets copied to the tty:
668    xs->_text = this;  // requires friend declaration!
669  } else {
670    delete(file);
671    // and leave xtty as NULL
672    LogVMOutput = false;
673    DisplayVMOutput = true;
674    LogCompilation = false;
675  }
676}
677
678// finish_log() is called during normal VM shutdown. finish_log_on_error() is
679// called by ostream_abort() after a fatal error.
680//
681void defaultStream::finish_log() {
682  xmlStream* xs = _outer_xmlStream;
683  xs->done("tty");
684
685  // Other log forks are appended here, at the End of Time:
686  CompileLog::finish_log(xs->out());  // write compile logging, if any, now
687
688  xs->done("hotspot_log");
689  xs->flush();
690
691  fileStream* file = _log_file;
692  _log_file = NULL;
693
694  delete _outer_xmlStream;
695  _outer_xmlStream = NULL;
696
697  file->flush();
698  delete file;
699}
700
701void defaultStream::finish_log_on_error(char *buf, int buflen) {
702  xmlStream* xs = _outer_xmlStream;
703
704  if (xs && xs->out()) {
705
706    xs->done_raw("tty");
707
708    // Other log forks are appended here, at the End of Time:
709    CompileLog::finish_log_on_error(xs->out(), buf, buflen);  // write compile logging, if any, now
710
711    xs->done_raw("hotspot_log");
712    xs->flush();
713
714    fileStream* file = _log_file;
715    _log_file = NULL;
716    _outer_xmlStream = NULL;
717
718    if (file) {
719      file->flush();
720
721      // Can't delete or close the file because delete and fclose aren't
722      // async-safe. We are about to die, so leave it to the kernel.
723      // delete file;
724    }
725  }
726}
727
728intx defaultStream::hold(intx writer_id) {
729  bool has_log = has_log_file();  // check before locking
730  if (// impossible, but who knows?
731      writer_id == NO_WRITER ||
732
733      // bootstrap problem
734      tty_lock == NULL ||
735
736      // can't grab a lock or call Thread::current() if TLS isn't initialized
737      ThreadLocalStorage::thread() == NULL ||
738
739      // developer hook
740      !SerializeVMOutput ||
741
742      // VM already unhealthy
743      is_error_reported() ||
744
745      // safepoint == global lock (for VM only)
746      (SafepointSynchronize::is_synchronizing() &&
747       Thread::current()->is_VM_thread())
748      ) {
749    // do not attempt to lock unless we know the thread and the VM is healthy
750    return NO_WRITER;
751  }
752  if (_writer == writer_id) {
753    // already held, no need to re-grab the lock
754    return NO_WRITER;
755  }
756  tty_lock->lock_without_safepoint_check();
757  // got the lock
758  if (writer_id != _last_writer) {
759    if (has_log) {
760      _log_file->bol();
761      // output a hint where this output is coming from:
762      _log_file->print_cr("<writer thread='"INTX_FORMAT"'/>", writer_id);
763    }
764    _last_writer = writer_id;
765  }
766  _writer = writer_id;
767  return writer_id;
768}
769
770void defaultStream::release(intx holder) {
771  if (holder == NO_WRITER) {
772    // nothing to release:  either a recursive lock, or we scribbled (too bad)
773    return;
774  }
775  if (_writer != holder) {
776    return;  // already unlocked, perhaps via break_tty_lock_for_safepoint
777  }
778  _writer = NO_WRITER;
779  tty_lock->unlock();
780}
781
782
783// Yuck:  jio_print does not accept char*/len.
784static void call_jio_print(const char* s, size_t len) {
785  char buffer[O_BUFLEN+100];
786  if (len > sizeof(buffer)-1) {
787    warning("increase O_BUFLEN in ostream.cpp -- output truncated");
788    len = sizeof(buffer)-1;
789  }
790  strncpy(buffer, s, len);
791  buffer[len] = '\0';
792  jio_print(buffer);
793}
794
795
796void defaultStream::write(const char* s, size_t len) {
797  intx thread_id = os::current_thread_id();
798  intx holder = hold(thread_id);
799
800  if (DisplayVMOutput &&
801      (_outer_xmlStream == NULL || !_outer_xmlStream->inside_attrs())) {
802    // print to output stream. It can be redirected by a vfprintf hook
803    if (s[len] == '\0') {
804      jio_print(s);
805    } else {
806      call_jio_print(s, len);
807    }
808  }
809
810  // print to log file
811  if (has_log_file()) {
812    int nl0 = _newlines;
813    xmlTextStream::write(s, len);
814    // flush the log file too, if there were any newlines
815    if (nl0 != _newlines){
816      flush();
817    }
818  } else {
819    update_position(s, len);
820  }
821
822  release(holder);
823}
824
825intx ttyLocker::hold_tty() {
826  if (defaultStream::instance == NULL)  return defaultStream::NO_WRITER;
827  intx thread_id = os::current_thread_id();
828  return defaultStream::instance->hold(thread_id);
829}
830
831void ttyLocker::release_tty(intx holder) {
832  if (holder == defaultStream::NO_WRITER)  return;
833  defaultStream::instance->release(holder);
834}
835
836bool ttyLocker::release_tty_if_locked() {
837  intx thread_id = os::current_thread_id();
838  if (defaultStream::instance->writer() == thread_id) {
839    // release the lock and return true so callers know if was
840    // previously held.
841    release_tty(thread_id);
842    return true;
843  }
844  return false;
845}
846
847void ttyLocker::break_tty_lock_for_safepoint(intx holder) {
848  if (defaultStream::instance != NULL &&
849      defaultStream::instance->writer() == holder) {
850    if (xtty != NULL) {
851      xtty->print_cr("<!-- safepoint while printing -->");
852    }
853    defaultStream::instance->release(holder);
854  }
855  // (else there was no lock to break)
856}
857
858void ostream_init() {
859  if (defaultStream::instance == NULL) {
860    defaultStream::instance = new(ResourceObj::C_HEAP, mtInternal) defaultStream();
861    tty = defaultStream::instance;
862
863    // We want to ensure that time stamps in GC logs consider time 0
864    // the time when the JVM is initialized, not the first time we ask
865    // for a time stamp. So, here, we explicitly update the time stamp
866    // of tty.
867    tty->time_stamp().update_to(1);
868  }
869}
870
871void ostream_init_log() {
872  // For -Xloggc:<file> option - called in runtime/thread.cpp
873  // Note : this must be called AFTER ostream_init()
874
875  gclog_or_tty = tty; // default to tty
876  if (Arguments::gc_log_filename() != NULL) {
877    fileStream * gclog  = UseGCLogFileRotation ?
878                          new(ResourceObj::C_HEAP, mtInternal)
879                             rotatingFileStream(Arguments::gc_log_filename()) :
880                          new(ResourceObj::C_HEAP, mtInternal)
881                             fileStream(Arguments::gc_log_filename());
882    if (gclog->is_open()) {
883      // now we update the time stamp of the GC log to be synced up
884      // with tty.
885      gclog->time_stamp().update_to(tty->time_stamp().ticks());
886    }
887    gclog_or_tty = gclog;
888  }
889
890  // If we haven't lazily initialized the logfile yet, do it now,
891  // to avoid the possibility of lazy initialization during a VM
892  // crash, which can affect the stability of the fatal error handler.
893  defaultStream::instance->has_log_file();
894}
895
896// ostream_exit() is called during normal VM exit to finish log files, flush
897// output and free resource.
898void ostream_exit() {
899  static bool ostream_exit_called = false;
900  if (ostream_exit_called)  return;
901  ostream_exit_called = true;
902  if (gclog_or_tty != tty) {
903      delete gclog_or_tty;
904  }
905  {
906      // we temporaly disable PrintMallocFree here
907      // as otherwise it'll lead to using of almost deleted
908      // tty or defaultStream::instance in logging facility
909      // of HeapFree(), see 6391258
910      DEBUG_ONLY(FlagSetting fs(PrintMallocFree, false);)
911      if (tty != defaultStream::instance) {
912          delete tty;
913      }
914      if (defaultStream::instance != NULL) {
915          delete defaultStream::instance;
916      }
917  }
918  tty = NULL;
919  xtty = NULL;
920  gclog_or_tty = NULL;
921  defaultStream::instance = NULL;
922}
923
924// ostream_abort() is called by os::abort() when VM is about to die.
925void ostream_abort() {
926  // Here we can't delete gclog_or_tty and tty, just flush their output
927  if (gclog_or_tty) gclog_or_tty->flush();
928  if (tty) tty->flush();
929
930  if (defaultStream::instance != NULL) {
931    static char buf[4096];
932    defaultStream::instance->finish_log_on_error(buf, sizeof(buf));
933  }
934}
935
936staticBufferStream::staticBufferStream(char* buffer, size_t buflen,
937                                       outputStream *outer_stream) {
938  _buffer = buffer;
939  _buflen = buflen;
940  _outer_stream = outer_stream;
941  // compile task prints time stamp relative to VM start
942  _stamp.update_to(1);
943}
944
945void staticBufferStream::write(const char* c, size_t len) {
946  _outer_stream->print_raw(c, (int)len);
947}
948
949void staticBufferStream::flush() {
950  _outer_stream->flush();
951}
952
953void staticBufferStream::print(const char* format, ...) {
954  va_list ap;
955  va_start(ap, format);
956  size_t len;
957  const char* str = do_vsnprintf(_buffer, _buflen, format, ap, false, len);
958  write(str, len);
959  va_end(ap);
960}
961
962void staticBufferStream::print_cr(const char* format, ...) {
963  va_list ap;
964  va_start(ap, format);
965  size_t len;
966  const char* str = do_vsnprintf(_buffer, _buflen, format, ap, true, len);
967  write(str, len);
968  va_end(ap);
969}
970
971void staticBufferStream::vprint(const char *format, va_list argptr) {
972  size_t len;
973  const char* str = do_vsnprintf(_buffer, _buflen, format, argptr, false, len);
974  write(str, len);
975}
976
977void staticBufferStream::vprint_cr(const char* format, va_list argptr) {
978  size_t len;
979  const char* str = do_vsnprintf(_buffer, _buflen, format, argptr, true, len);
980  write(str, len);
981}
982
983bufferedStream::bufferedStream(size_t initial_size, size_t bufmax) : outputStream() {
984  buffer_length = initial_size;
985  buffer        = NEW_C_HEAP_ARRAY(char, buffer_length, mtInternal);
986  buffer_pos    = 0;
987  buffer_fixed  = false;
988  buffer_max    = bufmax;
989}
990
991bufferedStream::bufferedStream(char* fixed_buffer, size_t fixed_buffer_size, size_t bufmax) : outputStream() {
992  buffer_length = fixed_buffer_size;
993  buffer        = fixed_buffer;
994  buffer_pos    = 0;
995  buffer_fixed  = true;
996  buffer_max    = bufmax;
997}
998
999void bufferedStream::write(const char* s, size_t len) {
1000
1001  if(buffer_pos + len > buffer_max) {
1002    flush();
1003  }
1004
1005  size_t end = buffer_pos + len;
1006  if (end >= buffer_length) {
1007    if (buffer_fixed) {
1008      // if buffer cannot resize, silently truncate
1009      len = buffer_length - buffer_pos - 1;
1010    } else {
1011      // For small overruns, double the buffer.  For larger ones,
1012      // increase to the requested size.
1013      if (end < buffer_length * 2) {
1014        end = buffer_length * 2;
1015      }
1016      buffer = REALLOC_C_HEAP_ARRAY(char, buffer, end, mtInternal);
1017      buffer_length = end;
1018    }
1019  }
1020  memcpy(buffer + buffer_pos, s, len);
1021  buffer_pos += len;
1022  update_position(s, len);
1023}
1024
1025char* bufferedStream::as_string() {
1026  char* copy = NEW_RESOURCE_ARRAY(char, buffer_pos+1);
1027  strncpy(copy, buffer, buffer_pos);
1028  copy[buffer_pos] = 0;  // terminating null
1029  return copy;
1030}
1031
1032bufferedStream::~bufferedStream() {
1033  if (!buffer_fixed) {
1034    FREE_C_HEAP_ARRAY(char, buffer, mtInternal);
1035  }
1036}
1037
1038#ifndef PRODUCT
1039
1040#if defined(SOLARIS) || defined(LINUX) || defined(_ALLBSD_SOURCE)
1041#include <sys/types.h>
1042#include <sys/socket.h>
1043#include <netinet/in.h>
1044#include <arpa/inet.h>
1045#endif
1046
1047// Network access
1048networkStream::networkStream() : bufferedStream(1024*10, 1024*10) {
1049
1050  _socket = -1;
1051
1052  int result = os::socket(AF_INET, SOCK_STREAM, 0);
1053  if (result <= 0) {
1054    assert(false, "Socket could not be created!");
1055  } else {
1056    _socket = result;
1057  }
1058}
1059
1060int networkStream::read(char *buf, size_t len) {
1061  return os::recv(_socket, buf, (int)len, 0);
1062}
1063
1064void networkStream::flush() {
1065  if (size() != 0) {
1066    int result = os::raw_send(_socket, (char *)base(), size(), 0);
1067    assert(result != -1, "connection error");
1068    assert(result == (int)size(), "didn't send enough data");
1069  }
1070  reset();
1071}
1072
1073networkStream::~networkStream() {
1074  close();
1075}
1076
1077void networkStream::close() {
1078  if (_socket != -1) {
1079    flush();
1080    os::socket_close(_socket);
1081    _socket = -1;
1082  }
1083}
1084
1085bool networkStream::connect(const char *ip, short port) {
1086
1087  struct sockaddr_in server;
1088  server.sin_family = AF_INET;
1089  server.sin_port = htons(port);
1090
1091  server.sin_addr.s_addr = inet_addr(ip);
1092  if (server.sin_addr.s_addr == (uint32_t)-1) {
1093    struct hostent* host = os::get_host_by_name((char*)ip);
1094    if (host != NULL) {
1095      memcpy(&server.sin_addr, host->h_addr_list[0], host->h_length);
1096    } else {
1097      return false;
1098    }
1099  }
1100
1101
1102  int result = os::connect(_socket, (struct sockaddr*)&server, sizeof(struct sockaddr_in));
1103  return (result >= 0);
1104}
1105
1106#endif
1107