env_posix.cc 52.8 KB
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//  Copyright (c) 2013, Facebook, Inc.  All rights reserved.
//  This source code is licensed under the BSD-style license found in the
//  LICENSE file in the root directory of this source tree. An additional grant
//  of patent rights can be found in the PATENTS file in the same directory.
//
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// Copyright (c) 2011 The LevelDB Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file. See the AUTHORS file for names of contributors.

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#include <chrono>
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#include <deque>
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#include <set>
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#include <dirent.h>
#include <errno.h>
#include <fcntl.h>
#include <pthread.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
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#include <sys/ioctl.h>
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#include <sys/mman.h>
#include <sys/stat.h>
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#ifdef OS_LINUX
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#include <sys/statfs.h>
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#include <sys/syscall.h>
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#endif
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#include <sys/time.h>
#include <sys/types.h>
#include <time.h>
#include <unistd.h>
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#if defined(OS_LINUX)
#include <linux/fs.h>
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#endif
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#include <signal.h>
#include <algorithm>
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#include "rocksdb/env.h"
#include "rocksdb/slice.h"
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#include "port/port.h"
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#include "util/coding.h"
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#include "util/logging.h"
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#include "util/posix_logger.h"
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#include "util/random.h"
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#include "util/iostats_context_imp.h"
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#include "util/rate_limiter.h"
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#include "util/thread_status_updater.h"
#include "util/thread_status_util.h"
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// Get nano time for mach systems
#ifdef __MACH__
#include <mach/clock.h>
#include <mach/mach.h>
#endif

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#if !defined(TMPFS_MAGIC)
#define TMPFS_MAGIC 0x01021994
#endif
#if !defined(XFS_SUPER_MAGIC)
#define XFS_SUPER_MAGIC 0x58465342
#endif
#if !defined(EXT4_SUPER_MAGIC)
#define EXT4_SUPER_MAGIC 0xEF53
#endif

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// For non linux platform, the following macros are used only as place
// holder.
#ifndef OS_LINUX
#define POSIX_FADV_NORMAL 0 /* [MC1] no further special treatment */
#define POSIX_FADV_RANDOM 1 /* [MC1] expect random page refs */
#define POSIX_FADV_SEQUENTIAL 2 /* [MC1] expect sequential page refs */
#define POSIX_FADV_WILLNEED 3 /* [MC1] will need these pages */
#define POSIX_FADV_DONTNEED 4 /* [MC1] dont need these pages */
#endif

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// This is only set from db_stress.cc and for testing only.
// If non-zero, kill at various points in source code with probability 1/this
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int rocksdb_kill_odds = 0;
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namespace rocksdb {
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namespace {

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// A wrapper for fadvise, if the platform doesn't support fadvise,
// it will simply return Status::NotSupport.
int Fadvise(int fd, off_t offset, size_t len, int advice) {
#ifdef OS_LINUX
  return posix_fadvise(fd, offset, len, advice);
#else
  return 0;  // simply do nothing.
#endif
}

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ThreadStatusUpdater* CreateThreadStatusUpdater() {
  return new ThreadStatusUpdater();
}

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// list of pathnames that are locked
static std::set<std::string> lockedFiles;
static port::Mutex mutex_lockedFiles;

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static Status IOError(const std::string& context, int err_number) {
  return Status::IOError(context, strerror(err_number));
}

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#ifdef NDEBUG
// empty in release build
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#define TEST_KILL_RANDOM(rocksdb_kill_odds)
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#else

// Kill the process with probablity 1/odds for testing.
static void TestKillRandom(int odds, const std::string& srcfile,
                           int srcline) {
  time_t curtime = time(nullptr);
  Random r((uint32_t)curtime);

  assert(odds > 0);
  bool crash = r.OneIn(odds);
  if (crash) {
    fprintf(stdout, "Crashing at %s:%d\n", srcfile.c_str(), srcline);
    fflush(stdout);
    kill(getpid(), SIGTERM);
  }
}

// To avoid crashing always at some frequently executed codepaths (during
// kill random test), use this factor to reduce odds
#define REDUCE_ODDS 2
#define REDUCE_ODDS2 4

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#define TEST_KILL_RANDOM(rocksdb_kill_odds) {   \
  if (rocksdb_kill_odds > 0) { \
    TestKillRandom(rocksdb_kill_odds, __FILE__, __LINE__);     \
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  } \
}

#endif

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#if defined(OS_LINUX)
namespace {
  static size_t GetUniqueIdFromFile(int fd, char* id, size_t max_size) {
    if (max_size < kMaxVarint64Length*3) {
      return 0;
    }

    struct stat buf;
    int result = fstat(fd, &buf);
    if (result == -1) {
      return 0;
    }

    long version = 0;
    result = ioctl(fd, FS_IOC_GETVERSION, &version);
    if (result == -1) {
      return 0;
    }
    uint64_t uversion = (uint64_t)version;

    char* rid = id;
    rid = EncodeVarint64(rid, buf.st_dev);
    rid = EncodeVarint64(rid, buf.st_ino);
    rid = EncodeVarint64(rid, uversion);
    assert(rid >= id);
    return static_cast<size_t>(rid-id);
  }
}
#endif

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class PosixSequentialFile: public SequentialFile {
 private:
  std::string filename_;
  FILE* file_;
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  int fd_;
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  bool use_os_buffer_;
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 public:
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  PosixSequentialFile(const std::string& fname, FILE* f,
      const EnvOptions& options)
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      : filename_(fname), file_(f), fd_(fileno(f)),
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        use_os_buffer_(options.use_os_buffer) {
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  }
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  virtual ~PosixSequentialFile() { fclose(file_); }

  virtual Status Read(size_t n, Slice* result, char* scratch) {
    Status s;
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    size_t r = 0;
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    do {
      r = fread_unlocked(scratch, 1, n, file_);
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    } while (r == 0 && ferror(file_) && errno == EINTR);
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    IOSTATS_ADD(bytes_read, r);
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    *result = Slice(scratch, r);
    if (r < n) {
      if (feof(file_)) {
        // We leave status as ok if we hit the end of the file
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        // We also clear the error so that the reads can continue
        // if a new data is written to the file
        clearerr(file_);
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      } else {
        // A partial read with an error: return a non-ok status
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        s = IOError(filename_, errno);
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      }
    }
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    if (!use_os_buffer_) {
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      // we need to fadvise away the entire range of pages because
      // we do not want readahead pages to be cached.
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      Fadvise(fd_, 0, 0, POSIX_FADV_DONTNEED); // free OS pages
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    }
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    return s;
  }
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  virtual Status Skip(uint64_t n) {
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    if (fseek(file_, static_cast<long int>(n), SEEK_CUR)) {
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      return IOError(filename_, errno);
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    }
    return Status::OK();
  }
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  virtual Status InvalidateCache(size_t offset, size_t length) {
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#ifndef OS_LINUX
    return Status::OK();
#else
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    // free OS pages
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    int ret = Fadvise(fd_, offset, length, POSIX_FADV_DONTNEED);
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    if (ret == 0) {
      return Status::OK();
    }
    return IOError(filename_, errno);
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#endif
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  }
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};

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// pread() based random-access
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class PosixRandomAccessFile: public RandomAccessFile {
 private:
  std::string filename_;
  int fd_;
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  bool use_os_buffer_;
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 public:
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  PosixRandomAccessFile(const std::string& fname, int fd,
                        const EnvOptions& options)
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      : filename_(fname), fd_(fd), use_os_buffer_(options.use_os_buffer) {
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    assert(!options.use_mmap_reads || sizeof(void*) < 8);
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  }
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  virtual ~PosixRandomAccessFile() { close(fd_); }

  virtual Status Read(uint64_t offset, size_t n, Slice* result,
                      char* scratch) const {
    Status s;
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    ssize_t r = -1;
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    size_t left = n;
    char* ptr = scratch;
    while (left > 0) {
      r = pread(fd_, ptr, left, static_cast<off_t>(offset));
      if (r <= 0) {
        if (errno == EINTR) {
          continue;
        }
        break;
      }
      ptr += r;
      offset += r;
      left -= r;
    }

    IOSTATS_ADD_IF_POSITIVE(bytes_read, n - left);
    *result = Slice(scratch, (r < 0) ? 0 : n - left);
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    if (r < 0) {
      // An error: return a non-ok status
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      s = IOError(filename_, errno);
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    }
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    if (!use_os_buffer_) {
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      // we need to fadvise away the entire range of pages because
      // we do not want readahead pages to be cached.
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      Fadvise(fd_, 0, 0, POSIX_FADV_DONTNEED); // free OS pages
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    }
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    return s;
  }
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#ifdef OS_LINUX
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  virtual size_t GetUniqueId(char* id, size_t max_size) const {
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    return GetUniqueIdFromFile(fd_, id, max_size);
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  }
#endif
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  virtual void Hint(AccessPattern pattern) {
    switch(pattern) {
      case NORMAL:
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        Fadvise(fd_, 0, 0, POSIX_FADV_NORMAL);
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        break;
      case RANDOM:
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        Fadvise(fd_, 0, 0, POSIX_FADV_RANDOM);
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        break;
      case SEQUENTIAL:
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        Fadvise(fd_, 0, 0, POSIX_FADV_SEQUENTIAL);
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        break;
      case WILLNEED:
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        Fadvise(fd_, 0, 0, POSIX_FADV_WILLNEED);
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        break;
      case DONTNEED:
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        Fadvise(fd_, 0, 0, POSIX_FADV_DONTNEED);
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        break;
      default:
        assert(false);
        break;
    }
  }

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  virtual Status InvalidateCache(size_t offset, size_t length) {
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#ifndef OS_LINUX
    return Status::OK();
#else
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    // free OS pages
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    int ret = Fadvise(fd_, offset, length, POSIX_FADV_DONTNEED);
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    if (ret == 0) {
      return Status::OK();
    }
    return IOError(filename_, errno);
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#endif
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  }
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};

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// mmap() based random-access
class PosixMmapReadableFile: public RandomAccessFile {
 private:
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  int fd_;
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  std::string filename_;
  void* mmapped_region_;
  size_t length_;

 public:
  // base[0,length-1] contains the mmapped contents of the file.
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  PosixMmapReadableFile(const int fd, const std::string& fname,
                        void* base, size_t length,
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                        const EnvOptions& options)
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      : fd_(fd), filename_(fname), mmapped_region_(base), length_(length) {
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    fd_ = fd_ + 0;  // suppress the warning for used variables
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    assert(options.use_mmap_reads);
    assert(options.use_os_buffer);
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  }
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  virtual ~PosixMmapReadableFile() {
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    int ret = munmap(mmapped_region_, length_);
    if (ret != 0) {
      fprintf(stdout, "failed to munmap %p length %zu \n",
              mmapped_region_, length_);
    }
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  }
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  virtual Status Read(uint64_t offset, size_t n, Slice* result,
                      char* scratch) const {
    Status s;
    if (offset + n > length_) {
      *result = Slice();
      s = IOError(filename_, EINVAL);
    } else {
      *result = Slice(reinterpret_cast<char*>(mmapped_region_) + offset, n);
    }
    return s;
  }
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  virtual Status InvalidateCache(size_t offset, size_t length) {
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#ifndef OS_LINUX
    return Status::OK();
#else
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    // free OS pages
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    int ret = Fadvise(fd_, offset, length, POSIX_FADV_DONTNEED);
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    if (ret == 0) {
      return Status::OK();
    }
    return IOError(filename_, errno);
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#endif
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  }
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};

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// We preallocate up to an extra megabyte and use memcpy to append new
// data to the file.  This is safe since we either properly close the
// file before reading from it, or for log files, the reading code
// knows enough to skip zero suffixes.
class PosixMmapFile : public WritableFile {
 private:
  std::string filename_;
  int fd_;
  size_t page_size_;
  size_t map_size_;       // How much extra memory to map at a time
  char* base_;            // The mapped region
  char* limit_;           // Limit of the mapped region
  char* dst_;             // Where to write next  (in range [base_,limit_])
  char* last_sync_;       // Where have we synced up to
  uint64_t file_offset_;  // Offset of base_ in file
  // Have we done an munmap of unsynced data?
  bool pending_sync_;
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#ifdef ROCKSDB_FALLOCATE_PRESENT
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  bool fallocate_with_keep_size_;
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#endif
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  // Roundup x to a multiple of y
  static size_t Roundup(size_t x, size_t y) {
    return ((x + y - 1) / y) * y;
  }

  size_t TruncateToPageBoundary(size_t s) {
    s -= (s & (page_size_ - 1));
    assert((s % page_size_) == 0);
    return s;
  }

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  bool UnmapCurrentRegion() {
    bool result = true;
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    TEST_KILL_RANDOM(rocksdb_kill_odds);
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    if (base_ != nullptr) {
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      if (last_sync_ < limit_) {
        // Defer syncing this data until next Sync() call, if any
        pending_sync_ = true;
      }
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      if (munmap(base_, limit_ - base_) != 0) {
        result = false;
      }
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      file_offset_ += limit_ - base_;
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      base_ = nullptr;
      limit_ = nullptr;
      last_sync_ = nullptr;
      dst_ = nullptr;
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      // Increase the amount we map the next time, but capped at 1MB
      if (map_size_ < (1<<20)) {
        map_size_ *= 2;
      }
    }
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    return result;
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  }

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  Status MapNewRegion() {
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#ifdef ROCKSDB_FALLOCATE_PRESENT
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    assert(base_ == nullptr);
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    TEST_KILL_RANDOM(rocksdb_kill_odds);
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    // we can't fallocate with FALLOC_FL_KEEP_SIZE here
    int alloc_status = fallocate(fd_, 0, file_offset_, map_size_);
    if (alloc_status != 0) {
      // fallback to posix_fallocate
      alloc_status = posix_fallocate(fd_, file_offset_, map_size_);
    }
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    if (alloc_status != 0) {
      return Status::IOError("Error allocating space to file : " + filename_ +
        "Error : " + strerror(alloc_status));
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    }
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    TEST_KILL_RANDOM(rocksdb_kill_odds);
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    void* ptr = mmap(nullptr, map_size_, PROT_READ | PROT_WRITE, MAP_SHARED,
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                     fd_, file_offset_);
    if (ptr == MAP_FAILED) {
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      return Status::IOError("MMap failed on " + filename_);
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    }
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    TEST_KILL_RANDOM(rocksdb_kill_odds);
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    base_ = reinterpret_cast<char*>(ptr);
    limit_ = base_ + map_size_;
    dst_ = base_;
    last_sync_ = base_;
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    return Status::OK();
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#else
    return Status::NotSupported("This platform doesn't support fallocate()");
#endif
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  }

 public:
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  PosixMmapFile(const std::string& fname, int fd, size_t page_size,
                const EnvOptions& options)
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      : filename_(fname),
        fd_(fd),
        page_size_(page_size),
        map_size_(Roundup(65536, page_size)),
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        base_(nullptr),
        limit_(nullptr),
        dst_(nullptr),
        last_sync_(nullptr),
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        file_offset_(0),
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        pending_sync_(false) {
#ifdef ROCKSDB_FALLOCATE_PRESENT
    fallocate_with_keep_size_ = options.fallocate_with_keep_size;
#endif
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    assert((page_size & (page_size - 1)) == 0);
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    assert(options.use_mmap_writes);
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  }


  ~PosixMmapFile() {
    if (fd_ >= 0) {
      PosixMmapFile::Close();
    }
  }

  virtual Status Append(const Slice& data) {
    const char* src = data.data();
    size_t left = data.size();
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    TEST_KILL_RANDOM(rocksdb_kill_odds * REDUCE_ODDS);
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    PrepareWrite(static_cast<size_t>(GetFileSize()), left);
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    while (left > 0) {
      assert(base_ <= dst_);
      assert(dst_ <= limit_);
      size_t avail = limit_ - dst_;
      if (avail == 0) {
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        if (UnmapCurrentRegion()) {
          Status s = MapNewRegion();
          if (!s.ok()) {
            return s;
          }
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          TEST_KILL_RANDOM(rocksdb_kill_odds);
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        }
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      }

      size_t n = (left <= avail) ? left : avail;
      memcpy(dst_, src, n);
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      IOSTATS_ADD(bytes_written, n);
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      dst_ += n;
      src += n;
      left -= n;
    }
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    TEST_KILL_RANDOM(rocksdb_kill_odds);
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    return Status::OK();
  }

  virtual Status Close() {
    Status s;
    size_t unused = limit_ - dst_;
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    TEST_KILL_RANDOM(rocksdb_kill_odds);
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    if (!UnmapCurrentRegion()) {
      s = IOError(filename_, errno);
    } else if (unused > 0) {
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      // Trim the extra space at the end of the file
      if (ftruncate(fd_, file_offset_ - unused) < 0) {
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        s = IOError(filename_, errno);
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      }
    }

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    TEST_KILL_RANDOM(rocksdb_kill_odds);
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    if (close(fd_) < 0) {
      if (s.ok()) {
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        s = IOError(filename_, errno);
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      }
    }

    fd_ = -1;
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    base_ = nullptr;
    limit_ = nullptr;
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    return s;
  }

  virtual Status Flush() {
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    TEST_KILL_RANDOM(rocksdb_kill_odds);
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    return Status::OK();
  }

  virtual Status Sync() {
    Status s;

    if (pending_sync_) {
      // Some unmapped data was not synced
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      TEST_KILL_RANDOM(rocksdb_kill_odds);
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      pending_sync_ = false;
      if (fdatasync(fd_) < 0) {
563
        s = IOError(filename_, errno);
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      }
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      TEST_KILL_RANDOM(rocksdb_kill_odds * REDUCE_ODDS);
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    }

    if (dst_ > last_sync_) {
      // Find the beginnings of the pages that contain the first and last
      // bytes to be synced.
      size_t p1 = TruncateToPageBoundary(last_sync_ - base_);
      size_t p2 = TruncateToPageBoundary(dst_ - base_ - 1);
      last_sync_ = dst_;
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      TEST_KILL_RANDOM(rocksdb_kill_odds);
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      if (msync(base_ + p1, p2 - p1 + page_size_, MS_SYNC) < 0) {
576
        s = IOError(filename_, errno);
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      }
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      TEST_KILL_RANDOM(rocksdb_kill_odds);
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    }

    return s;
  }
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  /**
   * Flush data as well as metadata to stable storage.
   */
  virtual Status Fsync() {
    if (pending_sync_) {
      // Some unmapped data was not synced
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      TEST_KILL_RANDOM(rocksdb_kill_odds);
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      pending_sync_ = false;
      if (fsync(fd_) < 0) {
        return IOError(filename_, errno);
      }
595
      TEST_KILL_RANDOM(rocksdb_kill_odds);
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    }
    // This invocation to Sync will not issue the call to
    // fdatasync because pending_sync_ has already been cleared.
    return Sync();
  }
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  /**
   * Get the size of valid data in the file. This will not match the
   * size that is returned from the filesystem because we use mmap
   * to extend file by map_size every time.
   */
  virtual uint64_t GetFileSize() {
    size_t used = dst_ - base_;
    return file_offset_ + used;
  }
611

612
  virtual Status InvalidateCache(size_t offset, size_t length) {
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#ifndef OS_LINUX
    return Status::OK();
#else
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    // free OS pages
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    int ret = Fadvise(fd_, offset, length, POSIX_FADV_DONTNEED);
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    if (ret == 0) {
      return Status::OK();
    }
    return IOError(filename_, errno);
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#endif
623 624
  }

625
#ifdef ROCKSDB_FALLOCATE_PRESENT
626
  virtual Status Allocate(off_t offset, off_t len) {
627
    TEST_KILL_RANDOM(rocksdb_kill_odds);
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    int alloc_status = fallocate(
        fd_, fallocate_with_keep_size_ ? FALLOC_FL_KEEP_SIZE : 0, offset, len);
    if (alloc_status == 0) {
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      return Status::OK();
    } else {
      return IOError(filename_, errno);
    }
  }
636
#endif
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};

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// Use posix write to write data to a file.
class PosixWritableFile : public WritableFile {
 private:
  const std::string filename_;
  int fd_;
  size_t cursize_;      // current size of cached data in buf_
  size_t capacity_;     // max size of buf_
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  unique_ptr<char[]> buf_;           // a buffer to cache writes
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  uint64_t filesize_;
  bool pending_sync_;
  bool pending_fsync_;
650
  uint64_t last_sync_size_;
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  uint64_t bytes_per_sync_;
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#ifdef ROCKSDB_FALLOCATE_PRESENT
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  bool fallocate_with_keep_size_;
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#endif
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  RateLimiter* rate_limiter_;
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 public:
658
  PosixWritableFile(const std::string& fname, int fd, size_t capacity,
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                    const EnvOptions& options)
      : filename_(fname),
        fd_(fd),
        cursize_(0),
        capacity_(capacity),
        buf_(new char[capacity]),
        filesize_(0),
        pending_sync_(false),
        pending_fsync_(false),
        last_sync_size_(0),
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        bytes_per_sync_(options.bytes_per_sync),
        rate_limiter_(options.rate_limiter) {
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#ifdef ROCKSDB_FALLOCATE_PRESENT
    fallocate_with_keep_size_ = options.fallocate_with_keep_size;
#endif
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    assert(!options.use_mmap_writes);
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  }

  ~PosixWritableFile() {
    if (fd_ >= 0) {
      PosixWritableFile::Close();
    }
  }

  virtual Status Append(const Slice& data) {
684
    const char* src = data.data();
685 686 687 688 689
    size_t left = data.size();
    Status s;
    pending_sync_ = true;
    pending_fsync_ = true;

690
    TEST_KILL_RANDOM(rocksdb_kill_odds * REDUCE_ODDS2);
691

692
    PrepareWrite(static_cast<size_t>(GetFileSize()), left);
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    // if there is no space in the cache, then flush
    if (cursize_ + left > capacity_) {
      s = Flush();
      if (!s.ok()) {
        return s;
      }
      // Increase the buffer size, but capped at 1MB
      if (capacity_ < (1<<20)) {
        capacity_ *= 2;
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        buf_.reset(new char[capacity_]);
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      }
      assert(cursize_ == 0);
    }

    // if the write fits into the cache, then write to cache
    // otherwise do a write() syscall to write to OS buffers.
    if (cursize_ + left <= capacity_) {
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      memcpy(buf_.get()+cursize_, src, left);
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      cursize_ += left;
    } else {
      while (left != 0) {
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        ssize_t done = write(fd_, src, RequestToken(left));
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        if (done < 0) {
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          if (errno == EINTR) {
            continue;
          }
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          return IOError(filename_, errno);
        }
721
        IOSTATS_ADD(bytes_written, done);
722
        TEST_KILL_RANDOM(rocksdb_kill_odds);
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        left -= done;
        src += done;
      }
    }
    filesize_ += data.size();
    return Status::OK();
  }

  virtual Status Close() {
    Status s;
    s = Flush(); // flush cache to OS
    if (!s.ok()) {
736
      return s;
737
    }
738

739
    TEST_KILL_RANDOM(rocksdb_kill_odds);
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741 742 743 744 745
    size_t block_size;
    size_t last_allocated_block;
    GetPreallocationStatus(&block_size, &last_allocated_block);
    if (last_allocated_block > 0) {
      // trim the extra space preallocated at the end of the file
746 747
      // NOTE(ljin): we probably don't want to surface failure as an IOError,
      // but it will be nice to log these errors.
748 749
      int dummy __attribute__((unused));
      dummy = ftruncate(fd_, filesize_);
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#ifdef ROCKSDB_FALLOCATE_PRESENT
      // in some file systems, ftruncate only trims trailing space if the
      // new file size is smaller than the current size. Calling fallocate
      // with FALLOC_FL_PUNCH_HOLE flag to explicitly release these unused
      // blocks. FALLOC_FL_PUNCH_HOLE is supported on at least the following
      // filesystems:
      //   XFS (since Linux 2.6.38)
      //   ext4 (since Linux 3.0)
      //   Btrfs (since Linux 3.7)
      //   tmpfs (since Linux 3.5)
      // We ignore error since failure of this operation does not affect
      // correctness.
      fallocate(fd_, FALLOC_FL_KEEP_SIZE | FALLOC_FL_PUNCH_HOLE,
                filesize_, block_size * last_allocated_block - filesize_);
#endif
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    }

767
    if (close(fd_) < 0) {
768
      s = IOError(filename_, errno);
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    }
    fd_ = -1;
    return s;
  }

  // write out the cached data to the OS cache
  virtual Status Flush() {
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    TEST_KILL_RANDOM(rocksdb_kill_odds * REDUCE_ODDS2);
777
    size_t left = cursize_;
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    char* src = buf_.get();
779
    while (left != 0) {
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      ssize_t done = write(fd_, src, RequestToken(left));
781
      if (done < 0) {
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        if (errno == EINTR) {
          continue;
        }
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        return IOError(filename_, errno);
      }
787
      IOSTATS_ADD(bytes_written, done);
788
      TEST_KILL_RANDOM(rocksdb_kill_odds * REDUCE_ODDS2);
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      left -= done;
      src += done;
    }
    cursize_ = 0;
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    // sync OS cache to disk for every bytes_per_sync_
    // TODO: give log file and sst file different options (log
    // files could be potentially cached in OS for their whole
    // life time, thus we might not want to flush at all).
    if (bytes_per_sync_ &&
        filesize_ - last_sync_size_ >= bytes_per_sync_) {
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      RangeSync(last_sync_size_, filesize_ - last_sync_size_);
      last_sync_size_ = filesize_;
    }

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    return Status::OK();
  }

  virtual Status Sync() {
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    Status s = Flush();
    if (!s.ok()) {
      return s;
    }
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    TEST_KILL_RANDOM(rocksdb_kill_odds);
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    if (pending_sync_ && fdatasync(fd_) < 0) {
      return IOError(filename_, errno);
    }
816
    TEST_KILL_RANDOM(rocksdb_kill_odds);
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    pending_sync_ = false;
    return Status::OK();
  }

  virtual Status Fsync() {
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    Status s = Flush();
    if (!s.ok()) {
      return s;
    }
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    TEST_KILL_RANDOM(rocksdb_kill_odds);
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    if (pending_fsync_ && fsync(fd_) < 0) {
      return IOError(filename_, errno);
    }
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    TEST_KILL_RANDOM(rocksdb_kill_odds);
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    pending_fsync_ = false;
    pending_sync_ = false;
    return Status::OK();
  }

  virtual uint64_t GetFileSize() {
    return filesize_;
  }
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840
  virtual Status InvalidateCache(size_t offset, size_t length) {
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#ifndef OS_LINUX
    return Status::OK();
#else
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    // free OS pages
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    int ret = Fadvise(fd_, offset, length, POSIX_FADV_DONTNEED);
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    if (ret == 0) {
      return Status::OK();
    }
    return IOError(filename_, errno);
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#endif
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  }

853
#ifdef ROCKSDB_FALLOCATE_PRESENT
854
  virtual Status Allocate(off_t offset, off_t len) {
855
    TEST_KILL_RANDOM(rocksdb_kill_odds);
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    int alloc_status = fallocate(
        fd_, fallocate_with_keep_size_ ? FALLOC_FL_KEEP_SIZE : 0, offset, len);
    if (alloc_status == 0) {
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      return Status::OK();
    } else {
      return IOError(filename_, errno);
    }
  }
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  virtual Status RangeSync(off_t offset, off_t nbytes) {
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    if (sync_file_range(fd_, offset, nbytes, SYNC_FILE_RANGE_WRITE) == 0) {
      return Status::OK();
    } else {
      return IOError(filename_, errno);
    }
  }
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  virtual size_t GetUniqueId(char* id, size_t max_size) const {
    return GetUniqueIdFromFile(fd_, id, max_size);
  }
875
#endif
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 private:
  inline size_t RequestToken(size_t bytes) {
    if (rate_limiter_ && io_priority_ < Env::IO_TOTAL) {
      bytes = std::min(bytes,
          static_cast<size_t>(rate_limiter_->GetSingleBurstBytes()));
      rate_limiter_->Request(bytes, io_priority_);
    }
    return bytes;
  }
886 887
};

888 889 890 891 892 893
class PosixRandomRWFile : public RandomRWFile {
 private:
  const std::string filename_;
  int fd_;
  bool pending_sync_;
  bool pending_fsync_;
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#ifdef ROCKSDB_FALLOCATE_PRESENT
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  bool fallocate_with_keep_size_;
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#endif
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 public:
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  PosixRandomRWFile(const std::string& fname, int fd, const EnvOptions& options)
      : filename_(fname),
        fd_(fd),
        pending_sync_(false),
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        pending_fsync_(false) {
#ifdef ROCKSDB_FALLOCATE_PRESENT
    fallocate_with_keep_size_ = options.fallocate_with_keep_size;
#endif
907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925
    assert(!options.use_mmap_writes && !options.use_mmap_reads);
  }

  ~PosixRandomRWFile() {
    if (fd_ >= 0) {
      Close();
    }
  }

  virtual Status Write(uint64_t offset, const Slice& data) {
    const char* src = data.data();
    size_t left = data.size();
    Status s;
    pending_sync_ = true;
    pending_fsync_ = true;

    while (left != 0) {
      ssize_t done = pwrite(fd_, src, left, offset);
      if (done < 0) {
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        if (errno == EINTR) {
          continue;
        }
929 930
        return IOError(filename_, errno);
      }
931
      IOSTATS_ADD(bytes_written, done);
932 933 934 935 936 937 938 939 940 941 942 943

      left -= done;
      src += done;
      offset += done;
    }

    return Status::OK();
  }

  virtual Status Read(uint64_t offset, size_t n, Slice* result,
                      char* scratch) const {
    Status s;
944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960
    ssize_t r = -1;
    size_t left = n;
    char* ptr = scratch;
    while (left > 0) {
      r = pread(fd_, ptr, left, static_cast<off_t>(offset));
      if (r <= 0) {
        if (errno == EINTR) {
          continue;
        }
        break;
      }
      ptr += r;
      offset += r;
      left -= r;
    }
    IOSTATS_ADD_IF_POSITIVE(bytes_read, n - left);
    *result = Slice(scratch, (r < 0) ? 0 : n - left);
961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992
    if (r < 0) {
      s = IOError(filename_, errno);
    }
    return s;
  }

  virtual Status Close() {
    Status s = Status::OK();
    if (fd_ >= 0 && close(fd_) < 0) {
      s = IOError(filename_, errno);
    }
    fd_ = -1;
    return s;
  }

  virtual Status Sync() {
    if (pending_sync_ && fdatasync(fd_) < 0) {
      return IOError(filename_, errno);
    }
    pending_sync_ = false;
    return Status::OK();
  }

  virtual Status Fsync() {
    if (pending_fsync_ && fsync(fd_) < 0) {
      return IOError(filename_, errno);
    }
    pending_fsync_ = false;
    pending_sync_ = false;
    return Status::OK();
  }

993
#ifdef ROCKSDB_FALLOCATE_PRESENT
994
  virtual Status Allocate(off_t offset, off_t len) {
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    TEST_KILL_RANDOM(rocksdb_kill_odds);
    int alloc_status = fallocate(
        fd_, fallocate_with_keep_size_ ? FALLOC_FL_KEEP_SIZE : 0, offset, len);
    if (alloc_status == 0) {
999 1000 1001 1002 1003 1004 1005 1006
      return Status::OK();
    } else {
      return IOError(filename_, errno);
    }
  }
#endif
};

1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024
class PosixDirectory : public Directory {
 public:
  explicit PosixDirectory(int fd) : fd_(fd) {}
  ~PosixDirectory() {
    close(fd_);
  }

  virtual Status Fsync() {
    if (fsync(fd_) == -1) {
      return IOError("directory", errno);
    }
    return Status::OK();
  }

 private:
  int fd_;
};

1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046
static int LockOrUnlock(const std::string& fname, int fd, bool lock) {
  mutex_lockedFiles.Lock();
  if (lock) {
    // If it already exists in the lockedFiles set, then it is already locked,
    // and fail this lock attempt. Otherwise, insert it into lockedFiles.
    // This check is needed because fcntl() does not detect lock conflict
    // if the fcntl is issued by the same thread that earlier acquired
    // this lock.
    if (lockedFiles.insert(fname).second == false) {
      mutex_lockedFiles.Unlock();
      errno = ENOLCK;
      return -1;
    }
  } else {
    // If we are unlocking, then verify that we had locked it earlier,
    // it should already exist in lockedFiles. Remove it from lockedFiles.
    if (lockedFiles.erase(fname) != 1) {
      mutex_lockedFiles.Unlock();
      errno = ENOLCK;
      return -1;
    }
  }
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  errno = 0;
  struct flock f;
  memset(&f, 0, sizeof(f));
  f.l_type = (lock ? F_WRLCK : F_UNLCK);
  f.l_whence = SEEK_SET;
  f.l_start = 0;
  f.l_len = 0;        // Lock/unlock entire file
1054 1055 1056 1057 1058 1059 1060
  int value = fcntl(fd, F_SETLK, &f);
  if (value == -1 && lock) {
    // if there is an error in locking, then remove the pathname from lockedfiles
    lockedFiles.erase(fname);
  }
  mutex_lockedFiles.Unlock();
  return value;
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}

class PosixFileLock : public FileLock {
 public:
  int fd_;
1066
  std::string filename;
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};

1069 1070 1071
void PthreadCall(const char* label, int result) {
  if (result != 0) {
    fprintf(stderr, "pthread %s: %s\n", label, strerror(result));
1072
    abort();
1073 1074 1075
  }
}

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class PosixEnv : public Env {
 public:
  PosixEnv();
1079

1080
  virtual ~PosixEnv() {
1081 1082 1083
    for (const auto tid : threads_to_join_) {
      pthread_join(tid, nullptr);
    }
1084 1085 1086 1087 1088 1089
    for (int pool_id = 0; pool_id < Env::Priority::TOTAL; ++pool_id) {
      thread_pools_[pool_id].JoinAllThreads();
    }
    // All threads must be joined before the deletion of
    // thread_status_updater_.
    delete thread_status_updater_;
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  }

1092
  void SetFD_CLOEXEC(int fd, const EnvOptions* options) {
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    if ((options == nullptr || options->set_fd_cloexec) && fd > 0) {
1094 1095 1096 1097
      fcntl(fd, F_SETFD, fcntl(fd, F_GETFD) | FD_CLOEXEC);
    }
  }

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  virtual Status NewSequentialFile(const std::string& fname,
1099 1100
                                   unique_ptr<SequentialFile>* result,
                                   const EnvOptions& options) {
1101
    result->reset();
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    FILE* f = nullptr;
    do {
      f = fopen(fname.c_str(), "r");
    } while (f == nullptr && errno == EINTR);
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    if (f == nullptr) {
      *result = nullptr;
1108
      return IOError(fname, errno);
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    } else {
1110 1111
      int fd = fileno(f);
      SetFD_CLOEXEC(fd, &options);
1112
      result->reset(new PosixSequentialFile(fname, f, options));
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      return Status::OK();
    }
  }

  virtual Status NewRandomAccessFile(const std::string& fname,
1118 1119
                                     unique_ptr<RandomAccessFile>* result,
                                     const EnvOptions& options) {
1120
    result->reset();
1121
    Status s;
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    int fd = open(fname.c_str(), O_RDONLY);
1123
    SetFD_CLOEXEC(fd, &options);
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    if (fd < 0) {
1125
      s = IOError(fname, errno);
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    } else if (options.use_mmap_reads && sizeof(void*) >= 8) {
1127 1128 1129 1130 1131 1132
      // Use of mmap for random reads has been removed because it
      // kills performance when storage is fast.
      // Use mmap when virtual address-space is plentiful.
      uint64_t size;
      s = GetFileSize(fname, &size);
      if (s.ok()) {
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        void* base = mmap(nullptr, size, PROT_READ, MAP_SHARED, fd, 0);
1134
        if (base != MAP_FAILED) {
1135 1136
          result->reset(new PosixMmapReadableFile(fd, fname, base,
                                                  size, options));
1137 1138 1139 1140 1141
        } else {
          s = IOError(fname, errno);
        }
      }
      close(fd);
1142
    } else {
1143
      result->reset(new PosixRandomAccessFile(fname, fd, options));
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    }
1145
    return s;
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  }

  virtual Status NewWritableFile(const std::string& fname,
1149 1150
                                 unique_ptr<WritableFile>* result,
                                 const EnvOptions& options) {
1151
    result->reset();
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    Status s;
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    int fd = -1;
    do {
      fd = open(fname.c_str(), O_CREAT | O_RDWR | O_TRUNC, 0644);
    } while (fd < 0 && errno == EINTR);
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    if (fd < 0) {
1158
      s = IOError(fname, errno);
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    } else {
1160
      SetFD_CLOEXEC(fd, &options);
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      if (options.use_mmap_writes) {
1162 1163
        if (!checkedDiskForMmap_) {
          // this will be executed once in the program's lifetime.
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          // do not use mmapWrite on non ext-3/xfs/tmpfs systems.
1165 1166 1167 1168
          if (!SupportsFastAllocate(fname)) {
            forceMmapOff = true;
          }
          checkedDiskForMmap_ = true;
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        }
      }
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      if (options.use_mmap_writes && !forceMmapOff) {
1172
        result->reset(new PosixMmapFile(fname, fd, page_size_, options));
1173
      } else {
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        // disable mmap writes
        EnvOptions no_mmap_writes_options = options;
        no_mmap_writes_options.use_mmap_writes = false;

        result->reset(
            new PosixWritableFile(fname, fd, 65536, no_mmap_writes_options)
        );
1181
      }
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    }
    return s;
  }

1186 1187 1188 1189
  virtual Status NewRandomRWFile(const std::string& fname,
                                 unique_ptr<RandomRWFile>* result,
                                 const EnvOptions& options) {
    result->reset();
1190 1191 1192 1193
    // no support for mmap yet
    if (options.use_mmap_writes || options.use_mmap_reads) {
      return Status::NotSupported("No support for mmap read/write yet");
    }
1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204
    Status s;
    const int fd = open(fname.c_str(), O_CREAT | O_RDWR, 0644);
    if (fd < 0) {
      s = IOError(fname, errno);
    } else {
      SetFD_CLOEXEC(fd, &options);
      result->reset(new PosixRandomRWFile(fname, fd, options));
    }
    return s;
  }

1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216
  virtual Status NewDirectory(const std::string& name,
                              unique_ptr<Directory>* result) {
    result->reset();
    const int fd = open(name.c_str(), 0);
    if (fd < 0) {
      return IOError(name, errno);
    } else {
      result->reset(new PosixDirectory(fd));
    }
    return Status::OK();
  }

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  virtual bool FileExists(const std::string& fname) {
    return access(fname.c_str(), F_OK) == 0;
  }

  virtual Status GetChildren(const std::string& dir,
                             std::vector<std::string>* result) {
    result->clear();
    DIR* d = opendir(dir.c_str());
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    if (d == nullptr) {
1226
      return IOError(dir, errno);
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    }
    struct dirent* entry;
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    while ((entry = readdir(d)) != nullptr) {
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      result->push_back(entry->d_name);
    }
    closedir(d);
    return Status::OK();
  }

  virtual Status DeleteFile(const std::string& fname) {
    Status result;
    if (unlink(fname.c_str()) != 0) {
1239
      result = IOError(fname, errno);
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    }
    return result;
  };

  virtual Status CreateDir(const std::string& name) {
    Status result;
    if (mkdir(name.c_str(), 0755) != 0) {
1247
      result = IOError(name, errno);
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    }
    return result;
  };

1252 1253 1254 1255 1256
  virtual Status CreateDirIfMissing(const std::string& name) {
    Status result;
    if (mkdir(name.c_str(), 0755) != 0) {
      if (errno != EEXIST) {
        result = IOError(name, errno);
1257 1258 1259 1260
      } else if (!DirExists(name)) { // Check that name is actually a
                                     // directory.
        // Message is taken from mkdir
        result = Status::IOError("`"+name+"' exists but is not a directory");
1261 1262 1263 1264 1265
      }
    }
    return result;
  };

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  virtual Status DeleteDir(const std::string& name) {
    Status result;
    if (rmdir(name.c_str()) != 0) {
1269
      result = IOError(name, errno);
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    }
    return result;
  };

  virtual Status GetFileSize(const std::string& fname, uint64_t* size) {
    Status s;
    struct stat sbuf;
    if (stat(fname.c_str(), &sbuf) != 0) {
      *size = 0;
1279
      s = IOError(fname, errno);
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    } else {
      *size = sbuf.st_size;
    }
    return s;
  }

1286 1287 1288 1289 1290 1291 1292 1293 1294
  virtual Status GetFileModificationTime(const std::string& fname,
                                         uint64_t* file_mtime) {
    struct stat s;
    if (stat(fname.c_str(), &s) !=0) {
      return IOError(fname, errno);
    }
    *file_mtime = static_cast<uint64_t>(s.st_mtime);
    return Status::OK();
  }
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  virtual Status RenameFile(const std::string& src, const std::string& target) {
    Status result;
    if (rename(src.c_str(), target.c_str()) != 0) {
1298
      result = IOError(src, errno);
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    }
    return result;
  }

1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313
  virtual Status LinkFile(const std::string& src, const std::string& target) {
    Status result;
    if (link(src.c_str(), target.c_str()) != 0) {
      if (errno == EXDEV) {
        return Status::NotSupported("No cross FS links allowed");
      }
      result = IOError(src, errno);
    }
    return result;
  }

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  virtual Status LockFile(const std::string& fname, FileLock** lock) {
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    *lock = nullptr;
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    Status result;
    int fd = open(fname.c_str(), O_RDWR | O_CREAT, 0644);
    if (fd < 0) {
1319
      result = IOError(fname, errno);
1320
    } else if (LockOrUnlock(fname, fd, true) == -1) {
1321
      result = IOError("lock " + fname, errno);
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      close(fd);
    } else {
1324
      SetFD_CLOEXEC(fd, nullptr);
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      PosixFileLock* my_lock = new PosixFileLock;
      my_lock->fd_ = fd;
1327
      my_lock->filename = fname;
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      *lock = my_lock;
    }
    return result;
  }

  virtual Status UnlockFile(FileLock* lock) {
    PosixFileLock* my_lock = reinterpret_cast<PosixFileLock*>(lock);
    Status result;
1336
    if (LockOrUnlock(my_lock->filename, my_lock->fd_, false) == -1) {
1337
      result = IOError("unlock", errno);
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    }
    close(my_lock->fd_);
    delete my_lock;
    return result;
  }

1344
  virtual void Schedule(void (*function)(void*), void* arg, Priority pri = LOW);
1345

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  virtual void StartThread(void (*function)(void* arg), void* arg);

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  virtual void WaitForJoin();

1350 1351
  virtual unsigned int GetThreadPoolQueueLen(Priority pri = LOW) const override;

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  virtual Status GetTestDirectory(std::string* result) {
    const char* env = getenv("TEST_TMPDIR");
    if (env && env[0] != '\0') {
      *result = env;
    } else {
      char buf[100];
1358
      snprintf(buf, sizeof(buf), "/tmp/rocksdbtest-%d", int(geteuid()));
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      *result = buf;
    }
    // Directory may already exist
    CreateDir(*result);
    return Status::OK();
  }

1366 1367 1368 1369 1370 1371
  virtual Status GetThreadList(
      std::vector<ThreadStatus>* thread_list) override {
    assert(thread_status_updater_);
    return thread_status_updater_->GetThreadList(thread_list);
  }

1372
  static uint64_t gettid(pthread_t tid) {
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    uint64_t thread_id = 0;
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    memcpy(&thread_id, &tid, std::min(sizeof(thread_id), sizeof(tid)));
1375 1376
    return thread_id;
  }
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1378 1379 1380 1381 1382
  static uint64_t gettid() {
    pthread_t tid = pthread_self();
    return gettid(tid);
  }

1383 1384
  virtual Status NewLogger(const std::string& fname,
                           shared_ptr<Logger>* result) {
1385
    FILE* f = fopen(fname.c_str(), "w");
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    if (f == nullptr) {
1387
      result->reset();
1388 1389
      return IOError(fname, errno);
    } else {
1390 1391
      int fd = fileno(f);
      SetFD_CLOEXEC(fd, nullptr);
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      result->reset(new PosixLogger(f, &PosixEnv::gettid, this));
1393
      return Status::OK();
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    }
  }

  virtual uint64_t NowMicros() {
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    return std::chrono::duration_cast<std::chrono::microseconds>(
        std::chrono::system_clock::now().time_since_epoch()).count();
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  }

1402
  virtual uint64_t NowNanos() {
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    return std::chrono::duration_cast<std::chrono::nanoseconds>(
        std::chrono::steady_clock::now().time_since_epoch()).count();
1405 1406
  }

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  virtual void SleepForMicroseconds(int micros) {
    usleep(micros);
  }

1411
  virtual Status GetHostName(char* name, uint64_t len) {
1412
    int ret = gethostname(name, static_cast<size_t>(len));
1413 1414 1415 1416 1417 1418 1419 1420 1421 1422
    if (ret < 0) {
      if (errno == EFAULT || errno == EINVAL)
        return Status::InvalidArgument(strerror(errno));
      else
        return IOError("GetHostName", errno);
    }
    return Status::OK();
  }

  virtual Status GetCurrentTime(int64_t* unix_time) {
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    time_t ret = time(nullptr);
1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439
    if (ret == (time_t) -1) {
      return IOError("GetCurrentTime", errno);
    }
    *unix_time = (int64_t) ret;
    return Status::OK();
  }

  virtual Status GetAbsolutePath(const std::string& db_path,
      std::string* output_path) {
    if (db_path.find('/') == 0) {
      *output_path = db_path;
      return Status::OK();
    }

    char the_path[256];
    char* ret = getcwd(the_path, 256);
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    if (ret == nullptr) {
1441 1442 1443 1444 1445 1446 1447
      return Status::IOError(strerror(errno));
    }

    *output_path = ret;
    return Status::OK();
  }

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  // Allow increasing the number of worker threads.
1449 1450 1451
  virtual void SetBackgroundThreads(int num, Priority pri) {
    assert(pri >= Priority::LOW && pri <= Priority::HIGH);
    thread_pools_[pri].SetBackgroundThreads(num);
1452 1453
  }

1454 1455 1456 1457 1458 1459
  // Allow increasing the number of worker threads.
  virtual void IncBackgroundThreadsIfNeeded(int num, Priority pri) {
    assert(pri >= Priority::LOW && pri <= Priority::HIGH);
    thread_pools_[pri].IncBackgroundThreadsIfNeeded(num);
  }

1460 1461 1462 1463 1464 1465 1466
  virtual void LowerThreadPoolIOPriority(Priority pool = LOW) override {
    assert(pool >= Priority::LOW && pool <= Priority::HIGH);
#ifdef OS_LINUX
    thread_pools_[pool].LowerIOPriority();
#endif
  }

1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486
  virtual std::string TimeToString(uint64_t secondsSince1970) {
    const time_t seconds = (time_t)secondsSince1970;
    struct tm t;
    int maxsize = 64;
    std::string dummy;
    dummy.reserve(maxsize);
    dummy.resize(maxsize);
    char* p = &dummy[0];
    localtime_r(&seconds, &t);
    snprintf(p, maxsize,
             "%04d/%02d/%02d-%02d:%02d:%02d ",
             t.tm_year + 1900,
             t.tm_mon + 1,
             t.tm_mday,
             t.tm_hour,
             t.tm_min,
             t.tm_sec);
    return dummy;
  }

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  EnvOptions OptimizeForLogWrite(const EnvOptions& env_options) const {
    EnvOptions optimized = env_options;
    optimized.use_mmap_writes = false;
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    // TODO(icanadi) it's faster if fallocate_with_keep_size is false, but it
    // breaks TransactionLogIteratorStallAtLastRecord unit test. Fix the unit
    // test and make this false
    optimized.fallocate_with_keep_size = true;
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    return optimized;
  }

  EnvOptions OptimizeForManifestWrite(const EnvOptions& env_options) const {
    EnvOptions optimized = env_options;
    optimized.use_mmap_writes = false;
    optimized.fallocate_with_keep_size = true;
    return optimized;
  }

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 private:
1505 1506
  bool checkedDiskForMmap_;
  bool forceMmapOff; // do we override Env options?
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1509 1510 1511 1512 1513 1514 1515 1516 1517
  // Returns true iff the named directory exists and is a directory.
  virtual bool DirExists(const std::string& dname) {
    struct stat statbuf;
    if (stat(dname.c_str(), &statbuf) == 0) {
      return S_ISDIR(statbuf.st_mode);
    }
    return false; // stat() failed return false
  }

A
Abhishek Kona 已提交
1518
  bool SupportsFastAllocate(const std::string& path) {
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1519
#ifdef ROCKSDB_FALLOCATE_PRESENT
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1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533
    struct statfs s;
    if (statfs(path.c_str(), &s)){
      return false;
    }
    switch (s.f_type) {
      case EXT4_SUPER_MAGIC:
        return true;
      case XFS_SUPER_MAGIC:
        return true;
      case TMPFS_MAGIC:
        return true;
      default:
        return false;
    }
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#else
    return false;
#endif
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  }

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  size_t page_size_;


1542 1543
  class ThreadPool {
   public:
1544 1545 1546 1547 1548
    ThreadPool()
        : total_threads_limit_(1),
          bgthreads_(0),
          queue_(),
          queue_len_(0),
1549
          exit_all_threads_(false),
1550 1551
          low_io_priority_(false),
          env_(nullptr) {
1552 1553 1554
      PthreadCall("mutex_init", pthread_mutex_init(&mu_, nullptr));
      PthreadCall("cvar_init", pthread_cond_init(&bgsignal_, nullptr));
    }
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1556
    ~ThreadPool() {
1557 1558 1559 1560
      assert(bgthreads_.size() == 0U);
    }

    void JoinAllThreads() {
1561 1562 1563 1564 1565 1566 1567 1568
      PthreadCall("lock", pthread_mutex_lock(&mu_));
      assert(!exit_all_threads_);
      exit_all_threads_ = true;
      PthreadCall("signalall", pthread_cond_broadcast(&bgsignal_));
      PthreadCall("unlock", pthread_mutex_unlock(&mu_));
      for (const auto tid : bgthreads_) {
        pthread_join(tid, nullptr);
      }
1569 1570 1571 1572 1573
      bgthreads_.clear();
    }

    void SetHostEnv(Env* env) {
      env_ = env;
1574
    }
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1576 1577 1578 1579 1580 1581 1582 1583
    void LowerIOPriority() {
#ifdef OS_LINUX
      PthreadCall("lock", pthread_mutex_lock(&mu_));
      low_io_priority_ = true;
      PthreadCall("unlock", pthread_mutex_unlock(&mu_));
#endif
    }

1584 1585 1586 1587 1588 1589 1590 1591 1592
    // Return true if there is at least one thread needs to terminate.
    bool HasExcessiveThread() {
      return static_cast<int>(bgthreads_.size()) > total_threads_limit_;
    }

    // Return true iff the current thread is the excessive thread to terminate.
    // Always terminate the running thread that is added last, even if there are
    // more than one thread to terminate.
    bool IsLastExcessiveThread(size_t thread_id) {
1593
      return HasExcessiveThread() && thread_id == bgthreads_.size() - 1;
1594 1595 1596 1597 1598 1599 1600
    }

    // Is one of the threads to terminate.
    bool IsExcessiveThread(size_t thread_id) {
      return static_cast<int>(thread_id) >= total_threads_limit_;
    }

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Yueh-Hsuan Chiang 已提交
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    // Return the thread priority.
    // This would allow its member-thread to know its priority.
    Env::Priority GetThreadPriority() {
      return priority_;
    }

    // Set the thread priority.
    void SetThreadPriority(Env::Priority priority) {
      priority_ = priority;
    }

1612
    void BGThread(size_t thread_id) {
1613
      bool low_io_priority = false;
1614 1615 1616
      while (true) {
        // Wait until there is an item that is ready to run
        PthreadCall("lock", pthread_mutex_lock(&mu_));
1617 1618 1619
        // Stop waiting if the thread needs to do work or needs to terminate.
        while (!exit_all_threads_ && !IsLastExcessiveThread(thread_id) &&
               (queue_.empty() || IsExcessiveThread(thread_id))) {
1620 1621 1622 1623 1624 1625
          PthreadCall("wait", pthread_cond_wait(&bgsignal_, &mu_));
        }
        if (exit_all_threads_) { // mechanism to let BG threads exit safely
          PthreadCall("unlock", pthread_mutex_unlock(&mu_));
          break;
        }
1626 1627 1628 1629
        if (IsLastExcessiveThread(thread_id)) {
          // Current thread is the last generated one and is excessive.
          // We always terminate excessive thread in the reverse order of
          // generation time.
1630 1631
          auto terminating_thread = bgthreads_.back();
          pthread_detach(terminating_thread);
1632 1633 1634 1635 1636 1637 1638 1639
          bgthreads_.pop_back();
          if (HasExcessiveThread()) {
            // There is still at least more excessive thread to terminate.
            WakeUpAllThreads();
          }
          PthreadCall("unlock", pthread_mutex_unlock(&mu_));
          break;
        }
1640 1641 1642
        void (*function)(void*) = queue_.front().function;
        void* arg = queue_.front().arg;
        queue_.pop_front();
1643 1644
        queue_len_.store(static_cast<unsigned int>(queue_.size()),
                         std::memory_order_relaxed);
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Haobo Xu 已提交
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1646
        bool decrease_io_priority = (low_io_priority != low_io_priority_);
1647
        PthreadCall("unlock", pthread_mutex_unlock(&mu_));
1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669

#ifdef OS_LINUX
        if (decrease_io_priority) {
          #define IOPRIO_CLASS_SHIFT               (13)
          #define IOPRIO_PRIO_VALUE(class, data)   \
              (((class) << IOPRIO_CLASS_SHIFT) | data)
          // Put schedule into IOPRIO_CLASS_IDLE class (lowest)
          // These system calls only have an effect when used in conjunction
          // with an I/O scheduler that supports I/O priorities. As at
          // kernel 2.6.17 the only such scheduler is the Completely
          // Fair Queuing (CFQ) I/O scheduler.
          // To change scheduler:
          //  echo cfq > /sys/block/<device_name>/queue/schedule
          // Tunables to consider:
          //  /sys/block/<device_name>/queue/slice_idle
          //  /sys/block/<device_name>/queue/slice_sync
          syscall(SYS_ioprio_set,
                  1,  // IOPRIO_WHO_PROCESS
                  0,  // current thread
                  IOPRIO_PRIO_VALUE(3, 0));
          low_io_priority = true;
        }
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#else
        (void)decrease_io_priority; // avoid 'unused variable' error
1672
#endif
1673 1674 1675
        (*function)(arg);
      }
    }
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1677 1678 1679 1680 1681 1682 1683 1684
    // Helper struct for passing arguments when creating threads.
    struct BGThreadMetadata {
      ThreadPool* thread_pool_;
      size_t thread_id_;  // Thread count in the thread.
      explicit BGThreadMetadata(ThreadPool* thread_pool, size_t thread_id)
          : thread_pool_(thread_pool), thread_id_(thread_id) {}
    };

1685
    static void* BGThreadWrapper(void* arg) {
1686 1687 1688
      BGThreadMetadata* meta = reinterpret_cast<BGThreadMetadata*>(arg);
      size_t thread_id = meta->thread_id_;
      ThreadPool* tp = meta->thread_pool_;
1689
#if ROCKSDB_USING_THREAD_STATUS
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Yueh-Hsuan Chiang 已提交
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      // for thread-status
1691
      ThreadStatusUtil::SetThreadType(tp->env_,
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Yueh-Hsuan Chiang 已提交
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          (tp->GetThreadPriority() == Env::Priority::HIGH ?
1693 1694
              ThreadStatus::HIGH_PRIORITY :
              ThreadStatus::LOW_PRIORITY));
1695
#endif
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      delete meta;
      tp->BGThread(thread_id);
1698
#if ROCKSDB_USING_THREAD_STATUS
1699
      ThreadStatusUtil::UnregisterThread();
1700
#endif
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      return nullptr;
    }
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jorlow@chromium.org 已提交
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1704 1705 1706 1707
    void WakeUpAllThreads() {
      PthreadCall("signalall", pthread_cond_broadcast(&bgsignal_));
    }

1708
    void SetBackgroundThreadsInternal(int num, bool allow_reduce) {
1709
      PthreadCall("lock", pthread_mutex_lock(&mu_));
1710 1711 1712 1713
      if (exit_all_threads_) {
        PthreadCall("unlock", pthread_mutex_unlock(&mu_));
        return;
      }
1714 1715
      if (num > total_threads_limit_ ||
          (num < total_threads_limit_ && allow_reduce)) {
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Igor Canadi 已提交
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        total_threads_limit_ = std::max(1, num);
1717 1718
        WakeUpAllThreads();
        StartBGThreads();
1719 1720
      }
      PthreadCall("unlock", pthread_mutex_unlock(&mu_));
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jorlow@chromium.org 已提交
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    }
1722

1723 1724 1725 1726 1727 1728 1729 1730
    void IncBackgroundThreadsIfNeeded(int num) {
      SetBackgroundThreadsInternal(num, false);
    }

    void SetBackgroundThreads(int num) {
      SetBackgroundThreadsInternal(num, true);
    }

1731
    void StartBGThreads() {
1732 1733 1734 1735
      // Start background thread if necessary
      while ((int)bgthreads_.size() < total_threads_limit_) {
        pthread_t t;
        PthreadCall(
1736 1737 1738
            "create thread",
            pthread_create(&t, nullptr, &ThreadPool::BGThreadWrapper,
                           new BGThreadMetadata(this, bgthreads_.size())));
1739 1740

        // Set the thread name to aid debugging
1741 1742
#if defined(_GNU_SOURCE) && defined(__GLIBC_PREREQ)
#if __GLIBC_PREREQ(2, 12)
1743 1744 1745 1746
        char name_buf[16];
        snprintf(name_buf, sizeof name_buf, "rocksdb:bg%zu", bgthreads_.size());
        name_buf[sizeof name_buf - 1] = '\0';
        pthread_setname_np(t, name_buf);
1747
#endif
1748 1749
#endif

1750 1751
        bgthreads_.push_back(t);
      }
1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762
    }

    void Schedule(void (*function)(void*), void* arg) {
      PthreadCall("lock", pthread_mutex_lock(&mu_));

      if (exit_all_threads_) {
        PthreadCall("unlock", pthread_mutex_unlock(&mu_));
        return;
      }

      StartBGThreads();
1763 1764 1765 1766 1767

      // Add to priority queue
      queue_.push_back(BGItem());
      queue_.back().function = function;
      queue_.back().arg = arg;
1768 1769
      queue_len_.store(static_cast<unsigned int>(queue_.size()),
                       std::memory_order_relaxed);
1770

1771 1772 1773 1774 1775 1776 1777 1778
      if (!HasExcessiveThread()) {
        // Wake up at least one waiting thread.
        PthreadCall("signal", pthread_cond_signal(&bgsignal_));
      } else {
        // Need to wake up all threads to make sure the one woken
        // up is not the one to terminate.
        WakeUpAllThreads();
      }
1779

1780 1781
      PthreadCall("unlock", pthread_mutex_unlock(&mu_));
    }
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jorlow@chromium.org 已提交
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1783 1784 1785 1786
    unsigned int GetQueueLen() const {
      return queue_len_.load(std::memory_order_relaxed);
    }

1787 1788 1789 1790 1791 1792 1793 1794 1795 1796
   private:
    // Entry per Schedule() call
    struct BGItem { void* arg; void (*function)(void*); };
    typedef std::deque<BGItem> BGQueue;

    pthread_mutex_t mu_;
    pthread_cond_t bgsignal_;
    int total_threads_limit_;
    std::vector<pthread_t> bgthreads_;
    BGQueue queue_;
1797
    std::atomic_uint queue_len_;  // Queue length. Used for stats reporting
1798
    bool exit_all_threads_;
1799
    bool low_io_priority_;
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Yueh-Hsuan Chiang 已提交
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    Env::Priority priority_;
1801
    Env* env_;
1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815
  };

  std::vector<ThreadPool> thread_pools_;

  pthread_mutex_t mu_;
  std::vector<pthread_t> threads_to_join_;

};

PosixEnv::PosixEnv() : checkedDiskForMmap_(false),
                       forceMmapOff(false),
                       page_size_(getpagesize()),
                       thread_pools_(Priority::TOTAL) {
  PthreadCall("mutex_init", pthread_mutex_init(&mu_, nullptr));
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Yueh-Hsuan Chiang 已提交
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  for (int pool_id = 0; pool_id < Env::Priority::TOTAL; ++pool_id) {
    thread_pools_[pool_id].SetThreadPriority(
        static_cast<Env::Priority>(pool_id));
1819 1820
    // This allows later initializing the thread-local-env of each thread.
    thread_pools_[pool_id].SetHostEnv(this);
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Yueh-Hsuan Chiang 已提交
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  }
1822
  thread_status_updater_ = CreateThreadStatusUpdater();
1823 1824 1825 1826 1827
}

void PosixEnv::Schedule(void (*function)(void*), void* arg, Priority pri) {
  assert(pri >= Priority::LOW && pri <= Priority::HIGH);
  thread_pools_[pri].Schedule(function, arg);
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jorlow@chromium.org 已提交
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}

1830 1831 1832 1833 1834
unsigned int PosixEnv::GetThreadPoolQueueLen(Priority pri) const {
  assert(pri >= Priority::LOW && pri <= Priority::HIGH);
  return thread_pools_[pri].GetQueueLen();
}

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jorlow@chromium.org 已提交
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struct StartThreadState {
  void (*user_function)(void*);
  void* arg;
};
1839

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jorlow@chromium.org 已提交
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static void* StartThreadWrapper(void* arg) {
  StartThreadState* state = reinterpret_cast<StartThreadState*>(arg);
  state->user_function(state->arg);
  delete state;
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Abhishek Kona 已提交
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  return nullptr;
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jorlow@chromium.org 已提交
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}

void PosixEnv::StartThread(void (*function)(void* arg), void* arg) {
  pthread_t t;
  StartThreadState* state = new StartThreadState;
  state->user_function = function;
  state->arg = arg;
  PthreadCall("start thread",
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Abhishek Kona 已提交
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              pthread_create(&t, nullptr,  &StartThreadWrapper, state));
1854
  PthreadCall("lock", pthread_mutex_lock(&mu_));
1855
  threads_to_join_.push_back(t);
1856
  PthreadCall("unlock", pthread_mutex_unlock(&mu_));
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jorlow@chromium.org 已提交
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}

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Lei Jin 已提交
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void PosixEnv::WaitForJoin() {
  for (const auto tid : threads_to_join_) {
    pthread_join(tid, nullptr);
  }
  threads_to_join_.clear();
}

H
Hans Wennborg 已提交
1866
}  // namespace
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jorlow@chromium.org 已提交
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M
Mayank Agarwal 已提交
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std::string Env::GenerateUniqueId() {
  std::string uuid_file = "/proc/sys/kernel/random/uuid";
  if (FileExists(uuid_file)) {
    std::string uuid;
    Status s = ReadFileToString(this, uuid_file, &uuid);
    if (s.ok()) {
      return uuid;
    }
  }
  // Could not read uuid_file - generate uuid using "nanos-random"
  Random64 r(time(nullptr));
  uint64_t random_uuid_portion =
    r.Uniform(std::numeric_limits<uint64_t>::max());
  uint64_t nanos_uuid_portion = NowNanos();
  char uuid2[200];
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kailiu 已提交
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  snprintf(uuid2,
           200,
           "%lx-%lx",
           (unsigned long)nanos_uuid_portion,
           (unsigned long)random_uuid_portion);
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Mayank Agarwal 已提交
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  return uuid2;
}

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jorlow@chromium.org 已提交
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Env* Env::Default() {
1892
  static PosixEnv default_env;
1893
  return &default_env;
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jorlow@chromium.org 已提交
1894 1895
}

1896
}  // namespace rocksdb