1. 30 8月, 2016 10 次提交
  2. 25 8月, 2016 2 次提交
    • J
      f2fs: do not use discard_map for hard disks · 3e025740
      Jaegeuk Kim 提交于
      We don't need to keep discard_map, if disk does not support discard command.
      Signed-off-by: NJaegeuk Kim <jaegeuk@kernel.org>
      3e025740
    • Y
      f2fs: not allow to write illegal blkaddr · bb413d6a
      Yunlei He 提交于
      we came across an error as below:
      
      [build_nat_area_bitmap:1710] nid[0x    1718] addr[0x         1c18ddc] ino[0x    1718]
      [build_nat_area_bitmap:1710] nid[0x    1719] addr[0x         1c193d5] ino[0x    1719]
      [build_nat_area_bitmap:1710] nid[0x    171a] addr[0x         1c1736e] ino[0x    171a]
      [build_nat_area_bitmap:1710] nid[0x    171b] addr[0x        58b3ee8f] ino[0x815f92ed]
      [build_nat_area_bitmap:1710] nid[0x    171c] addr[0x         fcdc94b] ino[0x49366377]
      [build_nat_area_bitmap:1710] nid[0x    171d] addr[0x        7cd2facf] ino[0xb3c55300]
      [build_nat_area_bitmap:1710] nid[0x    171e] addr[0x        bd4e25d0] ino[0x77c34c09]
      
      ... ...
      
      [build_nat_area_bitmap:1710] nid[0x    1718] addr[0x         1c18ddc] ino[0x    1718]
      [build_nat_area_bitmap:1710] nid[0x    1719] addr[0x         1c193d5] ino[0x    1719]
      [build_nat_area_bitmap:1710] nid[0x    171a] addr[0x         1c1736e] ino[0x    171a]
      [build_nat_area_bitmap:1710] nid[0x    171b] addr[0x        58b3ee8f] ino[0x815f92ed]
      [build_nat_area_bitmap:1710] nid[0x    171c] addr[0x         fcdc94b] ino[0x49366377]
      [build_nat_area_bitmap:1710] nid[0x    171d] addr[0x        7cd2facf] ino[0xb3c55300]
      [build_nat_area_bitmap:1710] nid[0x    171e] addr[0x        bd4e25d0] ino[0x77c34c09]
      
      One nat block may be stepped by a data block, so this patch forbid to
      write if the blkaddr is illegal
      Signed-off-by: NYunlei He <heyunlei@huawei.com>
      Signed-off-by: NJaegeuk Kim <jaegeuk@kernel.org>
      bb413d6a
  3. 19 8月, 2016 4 次提交
  4. 17 8月, 2016 12 次提交
  5. 13 8月, 2016 1 次提交
  6. 12 8月, 2016 2 次提交
  7. 11 8月, 2016 1 次提交
  8. 10 8月, 2016 2 次提交
    • K
      mm, writeback: flush plugged IO in wakeup_flusher_threads() · 51350ea0
      Konstantin Khlebnikov 提交于
      I've found funny live-lock between raid10 barriers during resync and
      memory controller hard limits. Inside mpage_readpages() task holds on to
      its plug bio which blocks the barrier in raid10. Its memory cgroup have
      no free memory thus the task goes into reclaimer but all reclaimable
      pages are dirty and cannot be written because raid10 is rebuilding and
      stuck on the barrier.
      
      Common flush of such IO in schedule() never happens, because the caller
      doesn't go to sleep.
      
      Lock is 'live' because changing memory limit or killing tasks which
      holds that stuck bio unblock whole progress.
      
      That was what happened in 3.18.x but I see no difference in upstream
      logic.  Theoretically this might happen even without memory cgroup.
      Signed-off-by: NKonstantin Khlebnikov <khlebnikov@yandex-team.ru>
      Signed-off-by: NJens Axboe <axboe@fb.com>
      51350ea0
    • V
      mm: memcontrol: only mark charged pages with PageKmemcg · c4159a75
      Vladimir Davydov 提交于
      To distinguish non-slab pages charged to kmemcg we mark them PageKmemcg,
      which sets page->_mapcount to -512.  Currently, we set/clear PageKmemcg
      in __alloc_pages_nodemask()/free_pages_prepare() for any page allocated
      with __GFP_ACCOUNT, including those that aren't actually charged to any
      cgroup, i.e. allocated from the root cgroup context.  To avoid overhead
      in case cgroups are not used, we only do that if memcg_kmem_enabled() is
      true.  The latter is set iff there are kmem-enabled memory cgroups
      (online or offline).  The root cgroup is not considered kmem-enabled.
      
      As a result, if a page is allocated with __GFP_ACCOUNT for the root
      cgroup when there are kmem-enabled memory cgroups and is freed after all
      kmem-enabled memory cgroups were removed, e.g.
      
        # no memory cgroups has been created yet, create one
        mkdir /sys/fs/cgroup/memory/test
        # run something allocating pages with __GFP_ACCOUNT, e.g.
        # a program using pipe
        dmesg | tail
        # remove the memory cgroup
        rmdir /sys/fs/cgroup/memory/test
      
      we'll get bad page state bug complaining about page->_mapcount != -1:
      
        BUG: Bad page state in process swapper/0  pfn:1fd945c
        page:ffffea007f651700 count:0 mapcount:-511 mapping:          (null) index:0x0
        flags: 0x1000000000000000()
      
      To avoid that, let's mark with PageKmemcg only those pages that are
      actually charged to and hence pin a non-root memory cgroup.
      
      Fixes: 4949148a ("mm: charge/uncharge kmemcg from generic page allocator paths")
      Reported-and-tested-by: NEric Dumazet <eric.dumazet@gmail.com>
      Signed-off-by: NVladimir Davydov <vdavydov@virtuozzo.com>
      Signed-off-by: NLinus Torvalds <torvalds@linux-foundation.org>
      c4159a75
  9. 09 8月, 2016 2 次提交
  10. 08 8月, 2016 2 次提交
    • J
      block: rename bio bi_rw to bi_opf · 1eff9d32
      Jens Axboe 提交于
      Since commit 63a4cc24, bio->bi_rw contains flags in the lower
      portion and the op code in the higher portions. This means that
      old code that relies on manually setting bi_rw is most likely
      going to be broken. Instead of letting that brokeness linger,
      rename the member, to force old and out-of-tree code to break
      at compile time instead of at runtime.
      
      No intended functional changes in this commit.
      Signed-off-by: NJens Axboe <axboe@fb.com>
      1eff9d32
    • J
      block/mm: make bdev_ops->rw_page() take a bool for read/write · c11f0c0b
      Jens Axboe 提交于
      Commit abf54548 changed it from an 'rw' flags type to the
      newer ops based interface, but now we're effectively leaking
      some bdev internals to the rest of the kernel. Since we only
      care about whether it's a read or a write at that level, just
      pass in a bool 'is_write' parameter instead.
      
      Then we can also move op_is_write() and friends back under
      CONFIG_BLOCK protection.
      Reviewed-by: NMike Christie <mchristi@redhat.com>
      Signed-off-by: NJens Axboe <axboe@fb.com>
      c11f0c0b
  11. 07 8月, 2016 1 次提交
  12. 06 8月, 2016 1 次提交
    • D
      rxrpc: Fix races between skb free, ACK generation and replying · 372ee163
      David Howells 提交于
      Inside the kafs filesystem it is possible to occasionally have a call
      processed and terminated before we've had a chance to check whether we need
      to clean up the rx queue for that call because afs_send_simple_reply() ends
      the call when it is done, but this is done in a workqueue item that might
      happen to run to completion before afs_deliver_to_call() completes.
      
      Further, it is possible for rxrpc_kernel_send_data() to be called to send a
      reply before the last request-phase data skb is released.  The rxrpc skb
      destructor is where the ACK processing is done and the call state is
      advanced upon release of the last skb.  ACK generation is also deferred to
      a work item because it's possible that the skb destructor is not called in
      a context where kernel_sendmsg() can be invoked.
      
      To this end, the following changes are made:
      
       (1) kernel_rxrpc_data_consumed() is added.  This should be called whenever
           an skb is emptied so as to crank the ACK and call states.  This does
           not release the skb, however.  kernel_rxrpc_free_skb() must now be
           called to achieve that.  These together replace
           rxrpc_kernel_data_delivered().
      
       (2) kernel_rxrpc_data_consumed() is wrapped by afs_data_consumed().
      
           This makes afs_deliver_to_call() easier to work as the skb can simply
           be discarded unconditionally here without trying to work out what the
           return value of the ->deliver() function means.
      
           The ->deliver() functions can, via afs_data_complete(),
           afs_transfer_reply() and afs_extract_data() mark that an skb has been
           consumed (thereby cranking the state) without the need to
           conditionally free the skb to make sure the state is correct on an
           incoming call for when the call processor tries to send the reply.
      
       (3) rxrpc_recvmsg() now has to call kernel_rxrpc_data_consumed() when it
           has finished with a packet and MSG_PEEK isn't set.
      
       (4) rxrpc_packet_destructor() no longer calls rxrpc_hard_ACK_data().
      
           Because of this, we no longer need to clear the destructor and put the
           call before we free the skb in cases where we don't want the ACK/call
           state to be cranked.
      
       (5) The ->deliver() call-type callbacks are made to return -EAGAIN rather
           than 0 if they expect more data (afs_extract_data() returns -EAGAIN to
           the delivery function already), and the caller is now responsible for
           producing an abort if that was the last packet.
      
       (6) There are many bits of unmarshalling code where:
      
       		ret = afs_extract_data(call, skb, last, ...);
      		switch (ret) {
      		case 0:		break;
      		case -EAGAIN:	return 0;
      		default:	return ret;
      		}
      
           is to be found.  As -EAGAIN can now be passed back to the caller, we
           now just return if ret < 0:
      
       		ret = afs_extract_data(call, skb, last, ...);
      		if (ret < 0)
      			return ret;
      
       (7) Checks for trailing data and empty final data packets has been
           consolidated as afs_data_complete().  So:
      
      		if (skb->len > 0)
      			return -EBADMSG;
      		if (!last)
      			return 0;
      
           becomes:
      
      		ret = afs_data_complete(call, skb, last);
      		if (ret < 0)
      			return ret;
      
       (8) afs_transfer_reply() now checks the amount of data it has against the
           amount of data desired and the amount of data in the skb and returns
           an error to induce an abort if we don't get exactly what we want.
      
      Without these changes, the following oops can occasionally be observed,
      particularly if some printks are inserted into the delivery path:
      
      general protection fault: 0000 [#1] SMP
      Modules linked in: kafs(E) af_rxrpc(E) [last unloaded: af_rxrpc]
      CPU: 0 PID: 1305 Comm: kworker/u8:3 Tainted: G            E   4.7.0-fsdevel+ #1303
      Hardware name: ASUS All Series/H97-PLUS, BIOS 2306 10/09/2014
      Workqueue: kafsd afs_async_workfn [kafs]
      task: ffff88040be041c0 ti: ffff88040c070000 task.ti: ffff88040c070000
      RIP: 0010:[<ffffffff8108fd3c>]  [<ffffffff8108fd3c>] __lock_acquire+0xcf/0x15a1
      RSP: 0018:ffff88040c073bc0  EFLAGS: 00010002
      RAX: 6b6b6b6b6b6b6b6b RBX: 0000000000000000 RCX: ffff88040d29a710
      RDX: 0000000000000000 RSI: 0000000000000000 RDI: ffff88040d29a710
      RBP: ffff88040c073c70 R08: 0000000000000001 R09: 0000000000000001
      R10: 0000000000000001 R11: 0000000000000000 R12: 0000000000000000
      R13: 0000000000000000 R14: ffff88040be041c0 R15: ffffffff814c928f
      FS:  0000000000000000(0000) GS:ffff88041fa00000(0000) knlGS:0000000000000000
      CS:  0010 DS: 0000 ES: 0000 CR0: 0000000080050033
      CR2: 00007fa4595f4750 CR3: 0000000001c14000 CR4: 00000000001406f0
      Stack:
       0000000000000006 000000000be04930 0000000000000000 ffff880400000000
       ffff880400000000 ffffffff8108f847 ffff88040be041c0 ffffffff81050446
       ffff8803fc08a920 ffff8803fc08a958 ffff88040be041c0 ffff88040c073c38
      Call Trace:
       [<ffffffff8108f847>] ? mark_held_locks+0x5e/0x74
       [<ffffffff81050446>] ? __local_bh_enable_ip+0x9b/0xa1
       [<ffffffff8108f9ca>] ? trace_hardirqs_on_caller+0x16d/0x189
       [<ffffffff810915f4>] lock_acquire+0x122/0x1b6
       [<ffffffff810915f4>] ? lock_acquire+0x122/0x1b6
       [<ffffffff814c928f>] ? skb_dequeue+0x18/0x61
       [<ffffffff81609dbf>] _raw_spin_lock_irqsave+0x35/0x49
       [<ffffffff814c928f>] ? skb_dequeue+0x18/0x61
       [<ffffffff814c928f>] skb_dequeue+0x18/0x61
       [<ffffffffa009aa92>] afs_deliver_to_call+0x344/0x39d [kafs]
       [<ffffffffa009ab37>] afs_process_async_call+0x4c/0xd5 [kafs]
       [<ffffffffa0099e9c>] afs_async_workfn+0xe/0x10 [kafs]
       [<ffffffff81063a3a>] process_one_work+0x29d/0x57c
       [<ffffffff81064ac2>] worker_thread+0x24a/0x385
       [<ffffffff81064878>] ? rescuer_thread+0x2d0/0x2d0
       [<ffffffff810696f5>] kthread+0xf3/0xfb
       [<ffffffff8160a6ff>] ret_from_fork+0x1f/0x40
       [<ffffffff81069602>] ? kthread_create_on_node+0x1cf/0x1cf
      Signed-off-by: NDavid Howells <dhowells@redhat.com>
      Signed-off-by: NDavid S. Miller <davem@davemloft.net>
      372ee163