1. 19 4月, 2011 1 次提交
  2. 31 3月, 2011 1 次提交
  3. 24 3月, 2011 12 次提交
  4. 10 3月, 2011 1 次提交
  5. 14 1月, 2011 4 次提交
  6. 07 1月, 2011 4 次提交
    • N
      fs: provide rcu-walk aware permission i_ops · b74c79e9
      Nick Piggin 提交于
      Signed-off-by: NNick Piggin <npiggin@kernel.dk>
      b74c79e9
    • N
      fs: rcu-walk aware d_revalidate method · 34286d66
      Nick Piggin 提交于
      Require filesystems be aware of .d_revalidate being called in rcu-walk
      mode (nd->flags & LOOKUP_RCU). For now do a simple push down, returning
      -ECHILD from all implementations.
      Signed-off-by: NNick Piggin <npiggin@kernel.dk>
      34286d66
    • N
      fs: dcache reduce branches in lookup path · fb045adb
      Nick Piggin 提交于
      Reduce some branches and memory accesses in dcache lookup by adding dentry
      flags to indicate common d_ops are set, rather than having to check them.
      This saves a pointer memory access (dentry->d_op) in common path lookup
      situations, and saves another pointer load and branch in cases where we
      have d_op but not the particular operation.
      
      Patched with:
      
      git grep -E '[.>]([[:space:]])*d_op([[:space:]])*=' | xargs sed -e 's/\([^\t ]*\)->d_op = \(.*\);/d_set_d_op(\1, \2);/' -e 's/\([^\t ]*\)\.d_op = \(.*\);/d_set_d_op(\&\1, \2);/' -i
      Signed-off-by: NNick Piggin <npiggin@kernel.dk>
      fb045adb
    • N
      fs: change d_delete semantics · fe15ce44
      Nick Piggin 提交于
      Change d_delete from a dentry deletion notification to a dentry caching
      advise, more like ->drop_inode. Require it to be constant and idempotent,
      and not take d_lock. This is how all existing filesystems use the callback
      anyway.
      
      This makes fine grained dentry locking of dput and dentry lru scanning
      much simpler.
      Signed-off-by: NNick Piggin <npiggin@kernel.dk>
      fe15ce44
  7. 06 12月, 2010 1 次提交
    • E
      Revert "vfs: show unreachable paths in getcwd and proc" · 7b2a69ba
      Eric W. Biederman 提交于
      Because it caused a chroot ttyname regression in 2.6.36.
      
      As of 2.6.36 ttyname does not work in a chroot.  It has already been
      reported that screen breaks, and for me this breaks an automated
      distribution testsuite, that I need to preserve the ability to run the
      existing binaries on for several more years.  glibc 2.11.3 which has a
      fix for this is not an option.
      
      The root cause of this breakage is:
      
          commit 8df9d1a4
          Author: Miklos Szeredi <mszeredi@suse.cz>
          Date:   Tue Aug 10 11:41:41 2010 +0200
      
          vfs: show unreachable paths in getcwd and proc
      
          Prepend "(unreachable)" to path strings if the path is not reachable
          from the current root.
      
          Two places updated are
           - the return string from getcwd()
           - and symlinks under /proc/$PID.
      
          Other uses of d_path() are left unchanged (we know that some old
          software crashes if /proc/mounts is changed).
      Signed-off-by: NMiklos Szeredi <mszeredi@suse.cz>
      Signed-off-by: NAl Viro <viro@zeniv.linux.org.uk>
      
      So remove the nice sounding, but ultimately ill advised change to how
      /proc/fd symlinks work.
      Signed-off-by: N"Eric W. Biederman" <ebiederm@xmission.com>
      Signed-off-by: NLinus Torvalds <torvalds@linux-foundation.org>
      7b2a69ba
  8. 30 11月, 2010 1 次提交
    • M
      sched: Add 'autogroup' scheduling feature: automated per session task groups · 5091faa4
      Mike Galbraith 提交于
      A recurring complaint from CFS users is that parallel kbuild has
      a negative impact on desktop interactivity.  This patch
      implements an idea from Linus, to automatically create task
      groups.  Currently, only per session autogroups are implemented,
      but the patch leaves the way open for enhancement.
      
      Implementation: each task's signal struct contains an inherited
      pointer to a refcounted autogroup struct containing a task group
      pointer, the default for all tasks pointing to the
      init_task_group.  When a task calls setsid(), a new task group
      is created, the process is moved into the new task group, and a
      reference to the preveious task group is dropped.  Child
      processes inherit this task group thereafter, and increase it's
      refcount.  When the last thread of a process exits, the
      process's reference is dropped, such that when the last process
      referencing an autogroup exits, the autogroup is destroyed.
      
      At runqueue selection time, IFF a task has no cgroup assignment,
      its current autogroup is used.
      
      Autogroup bandwidth is controllable via setting it's nice level
      through the proc filesystem:
      
        cat /proc/<pid>/autogroup
      
      Displays the task's group and the group's nice level.
      
        echo <nice level> > /proc/<pid>/autogroup
      
      Sets the task group's shares to the weight of nice <level> task.
      Setting nice level is rate limited for !admin users due to the
      abuse risk of task group locking.
      
      The feature is enabled from boot by default if
      CONFIG_SCHED_AUTOGROUP=y is selected, but can be disabled via
      the boot option noautogroup, and can also be turned on/off on
      the fly via:
      
        echo [01] > /proc/sys/kernel/sched_autogroup_enabled
      
      ... which will automatically move tasks to/from the root task group.
      Signed-off-by: NMike Galbraith <efault@gmx.de>
      Acked-by: NLinus Torvalds <torvalds@linux-foundation.org>
      Acked-by: NPeter Zijlstra <a.p.zijlstra@chello.nl>
      Cc: Markus Trippelsdorf <markus@trippelsdorf.de>
      Cc: Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
      Cc: Paul Turner <pjt@google.com>
      Cc: Oleg Nesterov <oleg@redhat.com>
      [ Removed the task_group_path() debug code, and fixed !EVENTFD build failure. ]
      Signed-off-by: NIngo Molnar <mingo@elte.hu>
      LKML-Reference: <1290281700.28711.9.camel@maggy.simson.net>
      Signed-off-by: NIngo Molnar <mingo@elte.hu>
      5091faa4
  9. 28 10月, 2010 1 次提交
  10. 27 10月, 2010 3 次提交
  11. 26 10月, 2010 2 次提交
  12. 15 10月, 2010 1 次提交
    • A
      llseek: automatically add .llseek fop · 6038f373
      Arnd Bergmann 提交于
      All file_operations should get a .llseek operation so we can make
      nonseekable_open the default for future file operations without a
      .llseek pointer.
      
      The three cases that we can automatically detect are no_llseek, seq_lseek
      and default_llseek. For cases where we can we can automatically prove that
      the file offset is always ignored, we use noop_llseek, which maintains
      the current behavior of not returning an error from a seek.
      
      New drivers should normally not use noop_llseek but instead use no_llseek
      and call nonseekable_open at open time.  Existing drivers can be converted
      to do the same when the maintainer knows for certain that no user code
      relies on calling seek on the device file.
      
      The generated code is often incorrectly indented and right now contains
      comments that clarify for each added line why a specific variant was
      chosen. In the version that gets submitted upstream, the comments will
      be gone and I will manually fix the indentation, because there does not
      seem to be a way to do that using coccinelle.
      
      Some amount of new code is currently sitting in linux-next that should get
      the same modifications, which I will do at the end of the merge window.
      
      Many thanks to Julia Lawall for helping me learn to write a semantic
      patch that does all this.
      
      ===== begin semantic patch =====
      // This adds an llseek= method to all file operations,
      // as a preparation for making no_llseek the default.
      //
      // The rules are
      // - use no_llseek explicitly if we do nonseekable_open
      // - use seq_lseek for sequential files
      // - use default_llseek if we know we access f_pos
      // - use noop_llseek if we know we don't access f_pos,
      //   but we still want to allow users to call lseek
      //
      @ open1 exists @
      identifier nested_open;
      @@
      nested_open(...)
      {
      <+...
      nonseekable_open(...)
      ...+>
      }
      
      @ open exists@
      identifier open_f;
      identifier i, f;
      identifier open1.nested_open;
      @@
      int open_f(struct inode *i, struct file *f)
      {
      <+...
      (
      nonseekable_open(...)
      |
      nested_open(...)
      )
      ...+>
      }
      
      @ read disable optional_qualifier exists @
      identifier read_f;
      identifier f, p, s, off;
      type ssize_t, size_t, loff_t;
      expression E;
      identifier func;
      @@
      ssize_t read_f(struct file *f, char *p, size_t s, loff_t *off)
      {
      <+...
      (
         *off = E
      |
         *off += E
      |
         func(..., off, ...)
      |
         E = *off
      )
      ...+>
      }
      
      @ read_no_fpos disable optional_qualifier exists @
      identifier read_f;
      identifier f, p, s, off;
      type ssize_t, size_t, loff_t;
      @@
      ssize_t read_f(struct file *f, char *p, size_t s, loff_t *off)
      {
      ... when != off
      }
      
      @ write @
      identifier write_f;
      identifier f, p, s, off;
      type ssize_t, size_t, loff_t;
      expression E;
      identifier func;
      @@
      ssize_t write_f(struct file *f, const char *p, size_t s, loff_t *off)
      {
      <+...
      (
        *off = E
      |
        *off += E
      |
        func(..., off, ...)
      |
        E = *off
      )
      ...+>
      }
      
      @ write_no_fpos @
      identifier write_f;
      identifier f, p, s, off;
      type ssize_t, size_t, loff_t;
      @@
      ssize_t write_f(struct file *f, const char *p, size_t s, loff_t *off)
      {
      ... when != off
      }
      
      @ fops0 @
      identifier fops;
      @@
      struct file_operations fops = {
       ...
      };
      
      @ has_llseek depends on fops0 @
      identifier fops0.fops;
      identifier llseek_f;
      @@
      struct file_operations fops = {
      ...
       .llseek = llseek_f,
      ...
      };
      
      @ has_read depends on fops0 @
      identifier fops0.fops;
      identifier read_f;
      @@
      struct file_operations fops = {
      ...
       .read = read_f,
      ...
      };
      
      @ has_write depends on fops0 @
      identifier fops0.fops;
      identifier write_f;
      @@
      struct file_operations fops = {
      ...
       .write = write_f,
      ...
      };
      
      @ has_open depends on fops0 @
      identifier fops0.fops;
      identifier open_f;
      @@
      struct file_operations fops = {
      ...
       .open = open_f,
      ...
      };
      
      // use no_llseek if we call nonseekable_open
      ////////////////////////////////////////////
      @ nonseekable1 depends on !has_llseek && has_open @
      identifier fops0.fops;
      identifier nso ~= "nonseekable_open";
      @@
      struct file_operations fops = {
      ...  .open = nso, ...
      +.llseek = no_llseek, /* nonseekable */
      };
      
      @ nonseekable2 depends on !has_llseek @
      identifier fops0.fops;
      identifier open.open_f;
      @@
      struct file_operations fops = {
      ...  .open = open_f, ...
      +.llseek = no_llseek, /* open uses nonseekable */
      };
      
      // use seq_lseek for sequential files
      /////////////////////////////////////
      @ seq depends on !has_llseek @
      identifier fops0.fops;
      identifier sr ~= "seq_read";
      @@
      struct file_operations fops = {
      ...  .read = sr, ...
      +.llseek = seq_lseek, /* we have seq_read */
      };
      
      // use default_llseek if there is a readdir
      ///////////////////////////////////////////
      @ fops1 depends on !has_llseek && !nonseekable1 && !nonseekable2 && !seq @
      identifier fops0.fops;
      identifier readdir_e;
      @@
      // any other fop is used that changes pos
      struct file_operations fops = {
      ... .readdir = readdir_e, ...
      +.llseek = default_llseek, /* readdir is present */
      };
      
      // use default_llseek if at least one of read/write touches f_pos
      /////////////////////////////////////////////////////////////////
      @ fops2 depends on !fops1 && !has_llseek && !nonseekable1 && !nonseekable2 && !seq @
      identifier fops0.fops;
      identifier read.read_f;
      @@
      // read fops use offset
      struct file_operations fops = {
      ... .read = read_f, ...
      +.llseek = default_llseek, /* read accesses f_pos */
      };
      
      @ fops3 depends on !fops1 && !fops2 && !has_llseek && !nonseekable1 && !nonseekable2 && !seq @
      identifier fops0.fops;
      identifier write.write_f;
      @@
      // write fops use offset
      struct file_operations fops = {
      ... .write = write_f, ...
      +	.llseek = default_llseek, /* write accesses f_pos */
      };
      
      // Use noop_llseek if neither read nor write accesses f_pos
      ///////////////////////////////////////////////////////////
      
      @ fops4 depends on !fops1 && !fops2 && !fops3 && !has_llseek && !nonseekable1 && !nonseekable2 && !seq @
      identifier fops0.fops;
      identifier read_no_fpos.read_f;
      identifier write_no_fpos.write_f;
      @@
      // write fops use offset
      struct file_operations fops = {
      ...
       .write = write_f,
       .read = read_f,
      ...
      +.llseek = noop_llseek, /* read and write both use no f_pos */
      };
      
      @ depends on has_write && !has_read && !fops1 && !fops2 && !has_llseek && !nonseekable1 && !nonseekable2 && !seq @
      identifier fops0.fops;
      identifier write_no_fpos.write_f;
      @@
      struct file_operations fops = {
      ... .write = write_f, ...
      +.llseek = noop_llseek, /* write uses no f_pos */
      };
      
      @ depends on has_read && !has_write && !fops1 && !fops2 && !has_llseek && !nonseekable1 && !nonseekable2 && !seq @
      identifier fops0.fops;
      identifier read_no_fpos.read_f;
      @@
      struct file_operations fops = {
      ... .read = read_f, ...
      +.llseek = noop_llseek, /* read uses no f_pos */
      };
      
      @ depends on !has_read && !has_write && !fops1 && !fops2 && !has_llseek && !nonseekable1 && !nonseekable2 && !seq @
      identifier fops0.fops;
      @@
      struct file_operations fops = {
      ...
      +.llseek = noop_llseek, /* no read or write fn */
      };
      ===== End semantic patch =====
      Signed-off-by: NArnd Bergmann <arnd@arndb.de>
      Cc: Julia Lawall <julia@diku.dk>
      Cc: Christoph Hellwig <hch@infradead.org>
      6038f373
  13. 02 10月, 2010 1 次提交
  14. 11 8月, 2010 2 次提交
  15. 10 8月, 2010 5 次提交
    • D
      oom: deprecate oom_adj tunable · 51b1bd2a
      David Rientjes 提交于
      /proc/pid/oom_adj is now deprecated so that that it may eventually be
      removed.  The target date for removal is August 2012.
      
      A warning will be printed to the kernel log if a task attempts to use this
      interface.  Future warning will be suppressed until the kernel is rebooted
      to prevent spamming the kernel log.
      Signed-off-by: NDavid Rientjes <rientjes@google.com>
      Cc: Nick Piggin <npiggin@suse.de>
      Cc: KAMEZAWA Hiroyuki <kamezawa.hiroyu@jp.fujitsu.com>
      Cc: KOSAKI Motohiro <kosaki.motohiro@jp.fujitsu.com>
      Cc: Oleg Nesterov <oleg@redhat.com>
      Cc: Balbir Singh <balbir@in.ibm.com>
      Signed-off-by: NAndrew Morton <akpm@linux-foundation.org>
      Signed-off-by: NLinus Torvalds <torvalds@linux-foundation.org>
      51b1bd2a
    • D
      oom: badness heuristic rewrite · a63d83f4
      David Rientjes 提交于
      This a complete rewrite of the oom killer's badness() heuristic which is
      used to determine which task to kill in oom conditions.  The goal is to
      make it as simple and predictable as possible so the results are better
      understood and we end up killing the task which will lead to the most
      memory freeing while still respecting the fine-tuning from userspace.
      
      Instead of basing the heuristic on mm->total_vm for each task, the task's
      rss and swap space is used instead.  This is a better indication of the
      amount of memory that will be freeable if the oom killed task is chosen
      and subsequently exits.  This helps specifically in cases where KDE or
      GNOME is chosen for oom kill on desktop systems instead of a memory
      hogging task.
      
      The baseline for the heuristic is a proportion of memory that each task is
      currently using in memory plus swap compared to the amount of "allowable"
      memory.  "Allowable," in this sense, means the system-wide resources for
      unconstrained oom conditions, the set of mempolicy nodes, the mems
      attached to current's cpuset, or a memory controller's limit.  The
      proportion is given on a scale of 0 (never kill) to 1000 (always kill),
      roughly meaning that if a task has a badness() score of 500 that the task
      consumes approximately 50% of allowable memory resident in RAM or in swap
      space.
      
      The proportion is always relative to the amount of "allowable" memory and
      not the total amount of RAM systemwide so that mempolicies and cpusets may
      operate in isolation; they shall not need to know the true size of the
      machine on which they are running if they are bound to a specific set of
      nodes or mems, respectively.
      
      Root tasks are given 3% extra memory just like __vm_enough_memory()
      provides in LSMs.  In the event of two tasks consuming similar amounts of
      memory, it is generally better to save root's task.
      
      Because of the change in the badness() heuristic's baseline, it is also
      necessary to introduce a new user interface to tune it.  It's not possible
      to redefine the meaning of /proc/pid/oom_adj with a new scale since the
      ABI cannot be changed for backward compatability.  Instead, a new tunable,
      /proc/pid/oom_score_adj, is added that ranges from -1000 to +1000.  It may
      be used to polarize the heuristic such that certain tasks are never
      considered for oom kill while others may always be considered.  The value
      is added directly into the badness() score so a value of -500, for
      example, means to discount 50% of its memory consumption in comparison to
      other tasks either on the system, bound to the mempolicy, in the cpuset,
      or sharing the same memory controller.
      
      /proc/pid/oom_adj is changed so that its meaning is rescaled into the
      units used by /proc/pid/oom_score_adj, and vice versa.  Changing one of
      these per-task tunables will rescale the value of the other to an
      equivalent meaning.  Although /proc/pid/oom_adj was originally defined as
      a bitshift on the badness score, it now shares the same linear growth as
      /proc/pid/oom_score_adj but with different granularity.  This is required
      so the ABI is not broken with userspace applications and allows oom_adj to
      be deprecated for future removal.
      Signed-off-by: NDavid Rientjes <rientjes@google.com>
      Cc: Nick Piggin <npiggin@suse.de>
      Cc: KAMEZAWA Hiroyuki <kamezawa.hiroyu@jp.fujitsu.com>
      Cc: KOSAKI Motohiro <kosaki.motohiro@jp.fujitsu.com>
      Cc: Oleg Nesterov <oleg@redhat.com>
      Cc: Balbir Singh <balbir@in.ibm.com>
      Signed-off-by: NAndrew Morton <akpm@linux-foundation.org>
      Signed-off-by: NLinus Torvalds <torvalds@linux-foundation.org>
      a63d83f4
    • A
      oom: move badness() declaration into oom.h · 74bcbf40
      Andrew Morton 提交于
      Cc: Minchan Kim <minchan.kim@gmail.com>
      Cc: David Rientjes <rientjes@google.com>
      Cc: KAMEZAWA Hiroyuki <kamezawa.hiroyu@jp.fujitsu.com>
      Cc: Oleg Nesterov <oleg@redhat.com>
      Signed-off-by: NAndrew Morton <akpm@linux-foundation.org>
      Signed-off-by: NLinus Torvalds <torvalds@linux-foundation.org>
      74bcbf40
    • K
      oom: /proc/<pid>/oom_score treat kernel thread honestly · 26ebc984
      KOSAKI Motohiro 提交于
      If a kernel thread is using use_mm(), badness() returns a positive value.
      This is not a big issue because caller take care of it correctly.  But
      there is one exception, /proc/<pid>/oom_score calls badness() directly and
      doesn't care that the task is a regular process.
      
      Another example, /proc/1/oom_score return !0 value.  But it's unkillable.
      This incorrectness makes administration a little confusing.
      
      This patch fixes it.
      Signed-off-by: NKOSAKI Motohiro <kosaki.motohiro@jp.fujitsu.com>
      Cc: Minchan Kim <minchan.kim@gmail.com>
      Cc: David Rientjes <rientjes@google.com>
      Cc: KAMEZAWA Hiroyuki <kamezawa.hiroyu@jp.fujitsu.com>
      Cc: Oleg Nesterov <oleg@redhat.com>
      Signed-off-by: NAndrew Morton <akpm@linux-foundation.org>
      Signed-off-by: NLinus Torvalds <torvalds@linux-foundation.org>
      26ebc984
    • C
      remove inode_setattr · 1025774c
      Christoph Hellwig 提交于
      Replace inode_setattr with opencoded variants of it in all callers.  This
      moves the remaining call to vmtruncate into the filesystem methods where it
      can be replaced with the proper truncate sequence.
      
      In a few cases it was obvious that we would never end up calling vmtruncate
      so it was left out in the opencoded variant:
      
       spufs: explicitly checks for ATTR_SIZE earlier
       btrfs,hugetlbfs,logfs,dlmfs: explicitly clears ATTR_SIZE earlier
       ufs: contains an opencoded simple_seattr + truncate that sets the filesize just above
      
      In addition to that ncpfs called inode_setattr with handcrafted iattrs,
      which allowed to trim down the opencoded variant.
      Signed-off-by: NChristoph Hellwig <hch@lst.de>
      Signed-off-by: NAl Viro <viro@zeniv.linux.org.uk>
      1025774c