drbd_worker.c 48.8 KB
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/*
   drbd_worker.c

   This file is part of DRBD by Philipp Reisner and Lars Ellenberg.

   Copyright (C) 2001-2008, LINBIT Information Technologies GmbH.
   Copyright (C) 1999-2008, Philipp Reisner <philipp.reisner@linbit.com>.
   Copyright (C) 2002-2008, Lars Ellenberg <lars.ellenberg@linbit.com>.

   drbd is free software; you can redistribute it and/or modify
   it under the terms of the GNU General Public License as published by
   the Free Software Foundation; either version 2, or (at your option)
   any later version.

   drbd is distributed in the hope that it will be useful,
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   GNU General Public License for more details.

   You should have received a copy of the GNU General Public License
   along with drbd; see the file COPYING.  If not, write to
   the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.

 */

#include <linux/module.h>
#include <linux/drbd.h>
#include <linux/sched.h>
#include <linux/wait.h>
#include <linux/mm.h>
#include <linux/memcontrol.h>
#include <linux/mm_inline.h>
#include <linux/slab.h>
#include <linux/random.h>
#include <linux/string.h>
#include <linux/scatterlist.h>

#include "drbd_int.h"
#include "drbd_req.h"

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static int w_make_ov_request(struct drbd_work *w, int cancel);
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/* endio handlers:
 *   drbd_md_io_complete (defined here)
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 *   drbd_request_endio (defined here)
 *   drbd_peer_request_endio (defined here)
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 *   bm_async_io_complete (defined in drbd_bitmap.c)
 *
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 * For all these callbacks, note the following:
 * The callbacks will be called in irq context by the IDE drivers,
 * and in Softirqs/Tasklets/BH context by the SCSI drivers.
 * Try to get the locking right :)
 *
 */


/* About the global_state_lock
   Each state transition on an device holds a read lock. In case we have
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   to evaluate the resync after dependencies, we grab a write lock, because
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   we need stable states on all devices for that.  */
rwlock_t global_state_lock;

/* used for synchronous meta data and bitmap IO
 * submitted by drbd_md_sync_page_io()
 */
void drbd_md_io_complete(struct bio *bio, int error)
{
	struct drbd_md_io *md_io;
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	struct drbd_conf *mdev;
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	md_io = (struct drbd_md_io *)bio->bi_private;
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	mdev = container_of(md_io, struct drbd_conf, md_io);

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	md_io->error = error;

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	/* We grabbed an extra reference in _drbd_md_sync_page_io() to be able
	 * to timeout on the lower level device, and eventually detach from it.
	 * If this io completion runs after that timeout expired, this
	 * drbd_md_put_buffer() may allow us to finally try and re-attach.
	 * During normal operation, this only puts that extra reference
	 * down to 1 again.
	 * Make sure we first drop the reference, and only then signal
	 * completion, or we may (in drbd_al_read_log()) cycle so fast into the
	 * next drbd_md_sync_page_io(), that we trigger the
	 * ASSERT(atomic_read(&mdev->md_io_in_use) == 1) there.
	 */
	drbd_md_put_buffer(mdev);
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	md_io->done = 1;
	wake_up(&mdev->misc_wait);
	bio_put(bio);
	put_ldev(mdev);
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}

/* reads on behalf of the partner,
 * "submitted" by the receiver
 */
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void drbd_endio_read_sec_final(struct drbd_peer_request *peer_req) __releases(local)
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{
	unsigned long flags = 0;
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	struct drbd_conf *mdev = peer_req->w.mdev;
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	spin_lock_irqsave(&mdev->tconn->req_lock, flags);
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	mdev->read_cnt += peer_req->i.size >> 9;
	list_del(&peer_req->w.list);
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	if (list_empty(&mdev->read_ee))
		wake_up(&mdev->ee_wait);
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	if (test_bit(__EE_WAS_ERROR, &peer_req->flags))
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		__drbd_chk_io_error(mdev, false);
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	spin_unlock_irqrestore(&mdev->tconn->req_lock, flags);
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	drbd_queue_work(&mdev->tconn->data.work, &peer_req->w);
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	put_ldev(mdev);
}

/* writes on behalf of the partner, or resync writes,
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 * "submitted" by the receiver, final stage.  */
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static void drbd_endio_write_sec_final(struct drbd_peer_request *peer_req) __releases(local)
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{
	unsigned long flags = 0;
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	struct drbd_conf *mdev = peer_req->w.mdev;
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	struct drbd_interval i;
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	int do_wake;
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	u64 block_id;
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	int do_al_complete_io;

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	/* after we moved peer_req to done_ee,
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	 * we may no longer access it,
	 * it may be freed/reused already!
	 * (as soon as we release the req_lock) */
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	i = peer_req->i;
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	do_al_complete_io = peer_req->flags & EE_CALL_AL_COMPLETE_IO;
	block_id = peer_req->block_id;
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	spin_lock_irqsave(&mdev->tconn->req_lock, flags);
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	mdev->writ_cnt += peer_req->i.size >> 9;
	list_del(&peer_req->w.list); /* has been on active_ee or sync_ee */
	list_add_tail(&peer_req->w.list, &mdev->done_ee);
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	/*
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	 * Do not remove from the write_requests tree here: we did not send the
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	 * Ack yet and did not wake possibly waiting conflicting requests.
	 * Removed from the tree from "drbd_process_done_ee" within the
	 * appropriate w.cb (e_end_block/e_end_resync_block) or from
	 * _drbd_clear_done_ee.
	 */
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	do_wake = list_empty(block_id == ID_SYNCER ? &mdev->sync_ee : &mdev->active_ee);
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	if (test_bit(__EE_WAS_ERROR, &peer_req->flags))
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		__drbd_chk_io_error(mdev, false);
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	spin_unlock_irqrestore(&mdev->tconn->req_lock, flags);
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	if (block_id == ID_SYNCER)
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		drbd_rs_complete_io(mdev, i.sector);
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	if (do_wake)
		wake_up(&mdev->ee_wait);

	if (do_al_complete_io)
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		drbd_al_complete_io(mdev, &i);
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	wake_asender(mdev->tconn);
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	put_ldev(mdev);
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}
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/* writes on behalf of the partner, or resync writes,
 * "submitted" by the receiver.
 */
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void drbd_peer_request_endio(struct bio *bio, int error)
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{
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	struct drbd_peer_request *peer_req = bio->bi_private;
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	struct drbd_conf *mdev = peer_req->w.mdev;
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	int uptodate = bio_flagged(bio, BIO_UPTODATE);
	int is_write = bio_data_dir(bio) == WRITE;

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	if (error && __ratelimit(&drbd_ratelimit_state))
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		dev_warn(DEV, "%s: error=%d s=%llus\n",
				is_write ? "write" : "read", error,
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				(unsigned long long)peer_req->i.sector);
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	if (!error && !uptodate) {
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		if (__ratelimit(&drbd_ratelimit_state))
			dev_warn(DEV, "%s: setting error to -EIO s=%llus\n",
					is_write ? "write" : "read",
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					(unsigned long long)peer_req->i.sector);
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		/* strange behavior of some lower level drivers...
		 * fail the request by clearing the uptodate flag,
		 * but do not return any error?! */
		error = -EIO;
	}

	if (error)
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		set_bit(__EE_WAS_ERROR, &peer_req->flags);
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	bio_put(bio); /* no need for the bio anymore */
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	if (atomic_dec_and_test(&peer_req->pending_bios)) {
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		if (is_write)
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			drbd_endio_write_sec_final(peer_req);
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		else
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			drbd_endio_read_sec_final(peer_req);
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	}
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}

/* read, readA or write requests on R_PRIMARY coming from drbd_make_request
 */
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void drbd_request_endio(struct bio *bio, int error)
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{
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	unsigned long flags;
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	struct drbd_request *req = bio->bi_private;
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	struct drbd_conf *mdev = req->w.mdev;
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	struct bio_and_error m;
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	enum drbd_req_event what;
	int uptodate = bio_flagged(bio, BIO_UPTODATE);

	if (!error && !uptodate) {
		dev_warn(DEV, "p %s: setting error to -EIO\n",
			 bio_data_dir(bio) == WRITE ? "write" : "read");
		/* strange behavior of some lower level drivers...
		 * fail the request by clearing the uptodate flag,
		 * but do not return any error?! */
		error = -EIO;
	}

	/* to avoid recursion in __req_mod */
	if (unlikely(error)) {
		what = (bio_data_dir(bio) == WRITE)
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			? WRITE_COMPLETED_WITH_ERROR
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			: (bio_rw(bio) == READ)
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			  ? READ_COMPLETED_WITH_ERROR
			  : READ_AHEAD_COMPLETED_WITH_ERROR;
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	} else
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		what = COMPLETED_OK;
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	bio_put(req->private_bio);
	req->private_bio = ERR_PTR(error);

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	/* not req_mod(), we need irqsave here! */
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	spin_lock_irqsave(&mdev->tconn->req_lock, flags);
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	__req_mod(req, what, &m);
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	spin_unlock_irqrestore(&mdev->tconn->req_lock, flags);
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	if (m.bio)
		complete_master_bio(mdev, &m);
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}

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int w_read_retry_remote(struct drbd_work *w, int cancel)
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{
	struct drbd_request *req = container_of(w, struct drbd_request, w);
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	struct drbd_conf *mdev = w->mdev;
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	/* We should not detach for read io-error,
	 * but try to WRITE the P_DATA_REPLY to the failed location,
	 * to give the disk the chance to relocate that block */

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	spin_lock_irq(&mdev->tconn->req_lock);
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	if (cancel || mdev->state.pdsk != D_UP_TO_DATE) {
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		_req_mod(req, READ_RETRY_REMOTE_CANCELED);
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		spin_unlock_irq(&mdev->tconn->req_lock);
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		return 0;
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	}
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	spin_unlock_irq(&mdev->tconn->req_lock);
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	return w_send_read_req(w, 0);
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}

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void drbd_csum_ee(struct drbd_conf *mdev, struct crypto_hash *tfm,
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		  struct drbd_peer_request *peer_req, void *digest)
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{
	struct hash_desc desc;
	struct scatterlist sg;
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	struct page *page = peer_req->pages;
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	struct page *tmp;
	unsigned len;

	desc.tfm = tfm;
	desc.flags = 0;

	sg_init_table(&sg, 1);
	crypto_hash_init(&desc);

	while ((tmp = page_chain_next(page))) {
		/* all but the last page will be fully used */
		sg_set_page(&sg, page, PAGE_SIZE, 0);
		crypto_hash_update(&desc, &sg, sg.length);
		page = tmp;
	}
	/* and now the last, possibly only partially used page */
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	len = peer_req->i.size & (PAGE_SIZE - 1);
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	sg_set_page(&sg, page, len ?: PAGE_SIZE, 0);
	crypto_hash_update(&desc, &sg, sg.length);
	crypto_hash_final(&desc, digest);
}

void drbd_csum_bio(struct drbd_conf *mdev, struct crypto_hash *tfm, struct bio *bio, void *digest)
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{
	struct hash_desc desc;
	struct scatterlist sg;
	struct bio_vec *bvec;
	int i;

	desc.tfm = tfm;
	desc.flags = 0;

	sg_init_table(&sg, 1);
	crypto_hash_init(&desc);

	__bio_for_each_segment(bvec, bio, i, 0) {
		sg_set_page(&sg, bvec->bv_page, bvec->bv_len, bvec->bv_offset);
		crypto_hash_update(&desc, &sg, sg.length);
	}
	crypto_hash_final(&desc, digest);
}

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/* MAYBE merge common code with w_e_end_ov_req */
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static int w_e_send_csum(struct drbd_work *w, int cancel)
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{
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	struct drbd_peer_request *peer_req = container_of(w, struct drbd_peer_request, w);
	struct drbd_conf *mdev = w->mdev;
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	int digest_size;
	void *digest;
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	int err = 0;
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	if (unlikely(cancel))
		goto out;
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	if (unlikely((peer_req->flags & EE_WAS_ERROR) != 0))
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		goto out;
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	digest_size = crypto_hash_digestsize(mdev->tconn->csums_tfm);
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	digest = kmalloc(digest_size, GFP_NOIO);
	if (digest) {
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		sector_t sector = peer_req->i.sector;
		unsigned int size = peer_req->i.size;
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		drbd_csum_ee(mdev, mdev->tconn->csums_tfm, peer_req, digest);
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		/* Free peer_req and pages before send.
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		 * In case we block on congestion, we could otherwise run into
		 * some distributed deadlock, if the other side blocks on
		 * congestion as well, because our receiver blocks in
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		 * drbd_alloc_pages due to pp_in_use > max_buffers. */
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		drbd_free_peer_req(mdev, peer_req);
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		peer_req = NULL;
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		inc_rs_pending(mdev);
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		err = drbd_send_drequest_csum(mdev, sector, size,
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					      digest, digest_size,
					      P_CSUM_RS_REQUEST);
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		kfree(digest);
	} else {
		dev_err(DEV, "kmalloc() of digest failed.\n");
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		err = -ENOMEM;
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	}
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out:
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	if (peer_req)
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		drbd_free_peer_req(mdev, peer_req);
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	if (unlikely(err))
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		dev_err(DEV, "drbd_send_drequest(..., csum) failed\n");
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	return err;
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}

#define GFP_TRY	(__GFP_HIGHMEM | __GFP_NOWARN)

static int read_for_csum(struct drbd_conf *mdev, sector_t sector, int size)
{
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	struct drbd_peer_request *peer_req;
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	if (!get_ldev(mdev))
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		return -EIO;
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	if (drbd_rs_should_slow_down(mdev, sector))
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		goto defer;

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	/* GFP_TRY, because if there is no memory available right now, this may
	 * be rescheduled for later. It is "only" background resync, after all. */
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	peer_req = drbd_alloc_peer_req(mdev, ID_SYNCER /* unused */, sector,
				       size, GFP_TRY);
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	if (!peer_req)
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		goto defer;
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	peer_req->w.cb = w_e_send_csum;
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	spin_lock_irq(&mdev->tconn->req_lock);
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	list_add(&peer_req->w.list, &mdev->read_ee);
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	spin_unlock_irq(&mdev->tconn->req_lock);
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	atomic_add(size >> 9, &mdev->rs_sect_ev);
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	if (drbd_submit_peer_request(mdev, peer_req, READ, DRBD_FAULT_RS_RD) == 0)
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		return 0;
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	/* If it failed because of ENOMEM, retry should help.  If it failed
	 * because bio_add_page failed (probably broken lower level driver),
	 * retry may or may not help.
	 * If it does not, you may need to force disconnect. */
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	spin_lock_irq(&mdev->tconn->req_lock);
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	list_del(&peer_req->w.list);
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	spin_unlock_irq(&mdev->tconn->req_lock);
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	drbd_free_peer_req(mdev, peer_req);
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defer:
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	put_ldev(mdev);
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	return -EAGAIN;
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}

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int w_resync_timer(struct drbd_work *w, int cancel)
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{
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	struct drbd_conf *mdev = w->mdev;
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	switch (mdev->state.conn) {
	case C_VERIFY_S:
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		w_make_ov_request(w, cancel);
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		break;
	case C_SYNC_TARGET:
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		w_make_resync_request(w, cancel);
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		break;
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	}

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	return 0;
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}

void resync_timer_fn(unsigned long data)
{
	struct drbd_conf *mdev = (struct drbd_conf *) data;

	if (list_empty(&mdev->resync_work.list))
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		drbd_queue_work(&mdev->tconn->data.work, &mdev->resync_work);
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}

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static void fifo_set(struct fifo_buffer *fb, int value)
{
	int i;

	for (i = 0; i < fb->size; i++)
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		fb->values[i] = value;
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}

static int fifo_push(struct fifo_buffer *fb, int value)
{
	int ov;

	ov = fb->values[fb->head_index];
	fb->values[fb->head_index++] = value;

	if (fb->head_index >= fb->size)
		fb->head_index = 0;

	return ov;
}

static void fifo_add_val(struct fifo_buffer *fb, int value)
{
	int i;

	for (i = 0; i < fb->size; i++)
		fb->values[i] += value;
}

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struct fifo_buffer *fifo_alloc(int fifo_size)
{
	struct fifo_buffer *fb;

	fb = kzalloc(sizeof(struct fifo_buffer) + sizeof(int) * fifo_size, GFP_KERNEL);
	if (!fb)
		return NULL;

	fb->head_index = 0;
	fb->size = fifo_size;
	fb->total = 0;

	return fb;
}

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static int drbd_rs_controller(struct drbd_conf *mdev)
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{
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	struct disk_conf *dc;
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	unsigned int sect_in;  /* Number of sectors that came in since the last turn */
	unsigned int want;     /* The number of sectors we want in the proxy */
	int req_sect; /* Number of sectors to request in this turn */
	int correction; /* Number of sectors more we need in the proxy*/
	int cps; /* correction per invocation of drbd_rs_controller() */
	int steps; /* Number of time steps to plan ahead */
	int curr_corr;
	int max_sect;
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	struct fifo_buffer *plan;
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	sect_in = atomic_xchg(&mdev->rs_sect_in, 0); /* Number of sectors that came in */
	mdev->rs_in_flight -= sect_in;

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	dc = rcu_dereference(mdev->ldev->disk_conf);
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	plan = rcu_dereference(mdev->rs_plan_s);
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	steps = plan->size; /* (dc->c_plan_ahead * 10 * SLEEP_TIME) / HZ; */
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	if (mdev->rs_in_flight + sect_in == 0) { /* At start of resync */
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		want = ((dc->resync_rate * 2 * SLEEP_TIME) / HZ) * steps;
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	} else { /* normal path */
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		want = dc->c_fill_target ? dc->c_fill_target :
			sect_in * dc->c_delay_target * HZ / (SLEEP_TIME * 10);
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	}

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	correction = want - mdev->rs_in_flight - plan->total;
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	/* Plan ahead */
	cps = correction / steps;
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	fifo_add_val(plan, cps);
	plan->total += cps * steps;
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	/* What we do in this step */
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	curr_corr = fifo_push(plan, 0);
	plan->total -= curr_corr;
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	req_sect = sect_in + curr_corr;
	if (req_sect < 0)
		req_sect = 0;

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	max_sect = (dc->c_max_rate * 2 * SLEEP_TIME) / HZ;
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	if (req_sect > max_sect)
		req_sect = max_sect;

	/*
	dev_warn(DEV, "si=%u if=%d wa=%u co=%d st=%d cps=%d pl=%d cc=%d rs=%d\n",
		 sect_in, mdev->rs_in_flight, want, correction,
		 steps, cps, mdev->rs_planed, curr_corr, req_sect);
	*/

	return req_sect;
}

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static int drbd_rs_number_requests(struct drbd_conf *mdev)
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{
	int number;
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	rcu_read_lock();
	if (rcu_dereference(mdev->rs_plan_s)->size) {
532 533 534
		number = drbd_rs_controller(mdev) >> (BM_BLOCK_SHIFT - 9);
		mdev->c_sync_rate = number * HZ * (BM_BLOCK_SIZE / 1024) / SLEEP_TIME;
	} else {
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535
		mdev->c_sync_rate = rcu_dereference(mdev->ldev->disk_conf)->resync_rate;
536 537
		number = SLEEP_TIME * mdev->c_sync_rate  / ((BM_BLOCK_SIZE / 1024) * HZ);
	}
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538
	rcu_read_unlock();
539 540 541 542 543 544

	/* ignore the amount of pending requests, the resync controller should
	 * throttle down to incoming reply rate soon enough anyways. */
	return number;
}

545
int w_make_resync_request(struct drbd_work *w, int cancel)
P
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546
{
547
	struct drbd_conf *mdev = w->mdev;
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548 549 550
	unsigned long bit;
	sector_t sector;
	const sector_t capacity = drbd_get_capacity(mdev->this_bdev);
551
	int max_bio_size;
552
	int number, rollback_i, size;
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553
	int align, queued, sndbuf;
554
	int i = 0;
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555 556

	if (unlikely(cancel))
557
		return 0;
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558

559 560 561
	if (mdev->rs_total == 0) {
		/* empty resync? */
		drbd_resync_finished(mdev);
562
		return 0;
563 564
	}

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	if (!get_ldev(mdev)) {
		/* Since we only need to access mdev->rsync a
		   get_ldev_if_state(mdev,D_FAILED) would be sufficient, but
		   to continue resync with a broken disk makes no sense at
		   all */
		dev_err(DEV, "Disk broke down during resync!\n");
571
		return 0;
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572 573
	}

574
	max_bio_size = queue_max_hw_sectors(mdev->rq_queue) << 9;
575 576
	number = drbd_rs_number_requests(mdev);
	if (number == 0)
577
		goto requeue;
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	for (i = 0; i < number; i++) {
		/* Stop generating RS requests, when half of the send buffer is filled */
581 582 583 584
		mutex_lock(&mdev->tconn->data.mutex);
		if (mdev->tconn->data.socket) {
			queued = mdev->tconn->data.socket->sk->sk_wmem_queued;
			sndbuf = mdev->tconn->data.socket->sk->sk_sndbuf;
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		} else {
			queued = 1;
			sndbuf = 0;
		}
589
		mutex_unlock(&mdev->tconn->data.mutex);
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590 591 592 593 594 595 596
		if (queued > sndbuf / 2)
			goto requeue;

next_sector:
		size = BM_BLOCK_SIZE;
		bit  = drbd_bm_find_next(mdev, mdev->bm_resync_fo);

597
		if (bit == DRBD_END_OF_BITMAP) {
P
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			mdev->bm_resync_fo = drbd_bm_bits(mdev);
			put_ldev(mdev);
600
			return 0;
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601 602 603 604
		}

		sector = BM_BIT_TO_SECT(bit);

605 606
		if (drbd_rs_should_slow_down(mdev, sector) ||
		    drbd_try_rs_begin_io(mdev, sector)) {
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			mdev->bm_resync_fo = bit;
			goto requeue;
		}
		mdev->bm_resync_fo = bit + 1;

		if (unlikely(drbd_bm_test_bit(mdev, bit) == 0)) {
			drbd_rs_complete_io(mdev, sector);
			goto next_sector;
		}

617
#if DRBD_MAX_BIO_SIZE > BM_BLOCK_SIZE
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618 619 620 621 622 623 624
		/* try to find some adjacent bits.
		 * we stop if we have already the maximum req size.
		 *
		 * Additionally always align bigger requests, in order to
		 * be prepared for all stripe sizes of software RAIDs.
		 */
		align = 1;
625
		rollback_i = i;
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626
		for (;;) {
627
			if (size + BM_BLOCK_SIZE > max_bio_size)
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628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658
				break;

			/* Be always aligned */
			if (sector & ((1<<(align+3))-1))
				break;

			/* do not cross extent boundaries */
			if (((bit+1) & BM_BLOCKS_PER_BM_EXT_MASK) == 0)
				break;
			/* now, is it actually dirty, after all?
			 * caution, drbd_bm_test_bit is tri-state for some
			 * obscure reason; ( b == 0 ) would get the out-of-band
			 * only accidentally right because of the "oddly sized"
			 * adjustment below */
			if (drbd_bm_test_bit(mdev, bit+1) != 1)
				break;
			bit++;
			size += BM_BLOCK_SIZE;
			if ((BM_BLOCK_SIZE << align) <= size)
				align++;
			i++;
		}
		/* if we merged some,
		 * reset the offset to start the next drbd_bm_find_next from */
		if (size > BM_BLOCK_SIZE)
			mdev->bm_resync_fo = bit + 1;
#endif

		/* adjust very last sectors, in case we are oddly sized */
		if (sector + (size>>9) > capacity)
			size = (capacity-sector)<<9;
659
		if (mdev->tconn->agreed_pro_version >= 89 && mdev->tconn->csums_tfm) {
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660
			switch (read_for_csum(mdev, sector, size)) {
661
			case -EIO: /* Disk failure */
P
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662
				put_ldev(mdev);
663
				return -EIO;
664
			case -EAGAIN: /* allocation failed, or ldev busy */
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				drbd_rs_complete_io(mdev, sector);
				mdev->bm_resync_fo = BM_SECT_TO_BIT(sector);
667
				i = rollback_i;
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668
				goto requeue;
669 670 671 672 673
			case 0:
				/* everything ok */
				break;
			default:
				BUG();
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674 675
			}
		} else {
676 677
			int err;

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678
			inc_rs_pending(mdev);
679 680 681
			err = drbd_send_drequest(mdev, P_RS_DATA_REQUEST,
						 sector, size, ID_SYNCER);
			if (err) {
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				dev_err(DEV, "drbd_send_drequest() failed, aborting...\n");
				dec_rs_pending(mdev);
				put_ldev(mdev);
685
				return err;
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686 687 688 689 690 691 692 693 694 695 696 697
			}
		}
	}

	if (mdev->bm_resync_fo >= drbd_bm_bits(mdev)) {
		/* last syncer _request_ was sent,
		 * but the P_RS_DATA_REPLY not yet received.  sync will end (and
		 * next sync group will resume), as soon as we receive the last
		 * resync data block, and the last bit is cleared.
		 * until then resync "work" is "inactive" ...
		 */
		put_ldev(mdev);
698
		return 0;
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699 700 701
	}

 requeue:
702
	mdev->rs_in_flight += (i << (BM_BLOCK_SHIFT - 9));
P
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703 704
	mod_timer(&mdev->resync_timer, jiffies + SLEEP_TIME);
	put_ldev(mdev);
705
	return 0;
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706 707
}

708
static int w_make_ov_request(struct drbd_work *w, int cancel)
P
Philipp Reisner 已提交
709
{
710
	struct drbd_conf *mdev = w->mdev;
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711 712 713 714 715 716 717
	int number, i, size;
	sector_t sector;
	const sector_t capacity = drbd_get_capacity(mdev->this_bdev);

	if (unlikely(cancel))
		return 1;

718
	number = drbd_rs_number_requests(mdev);
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719 720 721 722 723 724 725 726 727

	sector = mdev->ov_position;
	for (i = 0; i < number; i++) {
		if (sector >= capacity) {
			return 1;
		}

		size = BM_BLOCK_SIZE;

728 729
		if (drbd_rs_should_slow_down(mdev, sector) ||
		    drbd_try_rs_begin_io(mdev, sector)) {
P
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730 731 732 733 734 735 736 737
			mdev->ov_position = sector;
			goto requeue;
		}

		if (sector + (size>>9) > capacity)
			size = (capacity-sector)<<9;

		inc_rs_pending(mdev);
738
		if (drbd_send_ov_request(mdev, sector, size)) {
P
Philipp Reisner 已提交
739 740 741 742 743 744 745 746
			dec_rs_pending(mdev);
			return 0;
		}
		sector += BM_SECT_PER_BIT;
	}
	mdev->ov_position = sector;

 requeue:
747
	mdev->rs_in_flight += (i << (BM_BLOCK_SHIFT - 9));
P
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748 749 750 751
	mod_timer(&mdev->resync_timer, jiffies + SLEEP_TIME);
	return 1;
}

752
int w_ov_finished(struct drbd_work *w, int cancel)
P
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753
{
754
	struct drbd_conf *mdev = w->mdev;
P
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755
	kfree(w);
756
	ov_out_of_sync_print(mdev);
P
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757 758
	drbd_resync_finished(mdev);

759
	return 0;
P
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760 761
}

762
static int w_resync_finished(struct drbd_work *w, int cancel)
P
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763
{
764
	struct drbd_conf *mdev = w->mdev;
P
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765 766 767 768
	kfree(w);

	drbd_resync_finished(mdev);

769
	return 0;
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}

772 773
static void ping_peer(struct drbd_conf *mdev)
{
774 775 776 777 778 779
	struct drbd_tconn *tconn = mdev->tconn;

	clear_bit(GOT_PING_ACK, &tconn->flags);
	request_ping(tconn);
	wait_event(tconn->ping_wait,
		   test_bit(GOT_PING_ACK, &tconn->flags) || mdev->state.conn < C_CONNECTED);
780 781
}

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int drbd_resync_finished(struct drbd_conf *mdev)
{
	unsigned long db, dt, dbdt;
	unsigned long n_oos;
	union drbd_state os, ns;
	struct drbd_work *w;
	char *khelper_cmd = NULL;
789
	int verify_done = 0;
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	/* Remove all elements from the resync LRU. Since future actions
	 * might set bits in the (main) bitmap, then the entries in the
	 * resync LRU would be wrong. */
	if (drbd_rs_del_all(mdev)) {
		/* In case this is not possible now, most probably because
		 * there are P_RS_DATA_REPLY Packets lingering on the worker's
		 * queue (or even the read operations for those packets
		 * is not finished by now).   Retry in 100ms. */

800
		schedule_timeout_interruptible(HZ / 10);
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		w = kmalloc(sizeof(struct drbd_work), GFP_ATOMIC);
		if (w) {
			w->cb = w_resync_finished;
804
			w->mdev = mdev;
805
			drbd_queue_work(&mdev->tconn->data.work, w);
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806 807 808 809 810 811 812 813 814 815 816 817 818 819 820
			return 1;
		}
		dev_err(DEV, "Warn failed to drbd_rs_del_all() and to kmalloc(w).\n");
	}

	dt = (jiffies - mdev->rs_start - mdev->rs_paused) / HZ;
	if (dt <= 0)
		dt = 1;
	db = mdev->rs_total;
	dbdt = Bit2KB(db/dt);
	mdev->rs_paused /= HZ;

	if (!get_ldev(mdev))
		goto out;

821 822
	ping_peer(mdev);

823
	spin_lock_irq(&mdev->tconn->req_lock);
824
	os = drbd_read_state(mdev);
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826 827
	verify_done = (os.conn == C_VERIFY_S || os.conn == C_VERIFY_T);

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	/* This protects us against multiple calls (that can happen in the presence
	   of application IO), and against connectivity loss just before we arrive here. */
	if (os.conn <= C_CONNECTED)
		goto out_unlock;

	ns = os;
	ns.conn = C_CONNECTED;

	dev_info(DEV, "%s done (total %lu sec; paused %lu sec; %lu K/sec)\n",
837
	     verify_done ? "Online verify " : "Resync",
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838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853
	     dt + mdev->rs_paused, mdev->rs_paused, dbdt);

	n_oos = drbd_bm_total_weight(mdev);

	if (os.conn == C_VERIFY_S || os.conn == C_VERIFY_T) {
		if (n_oos) {
			dev_alert(DEV, "Online verify found %lu %dk block out of sync!\n",
			      n_oos, Bit2KB(1));
			khelper_cmd = "out-of-sync";
		}
	} else {
		D_ASSERT((n_oos - mdev->rs_failed) == 0);

		if (os.conn == C_SYNC_TARGET || os.conn == C_PAUSED_SYNC_T)
			khelper_cmd = "after-resync-target";

854
		if (mdev->tconn->csums_tfm && mdev->rs_total) {
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855 856 857 858 859
			const unsigned long s = mdev->rs_same_csum;
			const unsigned long t = mdev->rs_total;
			const int ratio =
				(t == 0)     ? 0 :
			(t < 100000) ? ((s*100)/t) : (s/(t/100));
B
Bart Van Assche 已提交
860
			dev_info(DEV, "%u %% had equal checksums, eliminated: %luK; "
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861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894
			     "transferred %luK total %luK\n",
			     ratio,
			     Bit2KB(mdev->rs_same_csum),
			     Bit2KB(mdev->rs_total - mdev->rs_same_csum),
			     Bit2KB(mdev->rs_total));
		}
	}

	if (mdev->rs_failed) {
		dev_info(DEV, "            %lu failed blocks\n", mdev->rs_failed);

		if (os.conn == C_SYNC_TARGET || os.conn == C_PAUSED_SYNC_T) {
			ns.disk = D_INCONSISTENT;
			ns.pdsk = D_UP_TO_DATE;
		} else {
			ns.disk = D_UP_TO_DATE;
			ns.pdsk = D_INCONSISTENT;
		}
	} else {
		ns.disk = D_UP_TO_DATE;
		ns.pdsk = D_UP_TO_DATE;

		if (os.conn == C_SYNC_TARGET || os.conn == C_PAUSED_SYNC_T) {
			if (mdev->p_uuid) {
				int i;
				for (i = UI_BITMAP ; i <= UI_HISTORY_END ; i++)
					_drbd_uuid_set(mdev, i, mdev->p_uuid[i]);
				drbd_uuid_set(mdev, UI_BITMAP, mdev->ldev->md.uuid[UI_CURRENT]);
				_drbd_uuid_set(mdev, UI_CURRENT, mdev->p_uuid[UI_CURRENT]);
			} else {
				dev_err(DEV, "mdev->p_uuid is NULL! BUG\n");
			}
		}

895 896 897 898 899 900 901 902 903 904 905 906
		if (!(os.conn == C_VERIFY_S || os.conn == C_VERIFY_T)) {
			/* for verify runs, we don't update uuids here,
			 * so there would be nothing to report. */
			drbd_uuid_set_bm(mdev, 0UL);
			drbd_print_uuids(mdev, "updated UUIDs");
			if (mdev->p_uuid) {
				/* Now the two UUID sets are equal, update what we
				 * know of the peer. */
				int i;
				for (i = UI_CURRENT ; i <= UI_HISTORY_END ; i++)
					mdev->p_uuid[i] = mdev->ldev->md.uuid[i];
			}
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907 908 909 910 911
		}
	}

	_drbd_set_state(mdev, ns, CS_VERBOSE, NULL);
out_unlock:
912
	spin_unlock_irq(&mdev->tconn->req_lock);
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913 914 915 916 917
	put_ldev(mdev);
out:
	mdev->rs_total  = 0;
	mdev->rs_failed = 0;
	mdev->rs_paused = 0;
918 919
	if (verify_done)
		mdev->ov_start_sector = 0;
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920

921 922
	drbd_md_sync(mdev);

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923 924 925 926 927 928 929
	if (khelper_cmd)
		drbd_khelper(mdev, khelper_cmd);

	return 1;
}

/* helper */
930
static void move_to_net_ee_or_free(struct drbd_conf *mdev, struct drbd_peer_request *peer_req)
P
Philipp Reisner 已提交
931
{
932
	if (drbd_peer_req_has_active_page(peer_req)) {
P
Philipp Reisner 已提交
933
		/* This might happen if sendpage() has not finished */
934
		int i = (peer_req->i.size + PAGE_SIZE -1) >> PAGE_SHIFT;
935 936
		atomic_add(i, &mdev->pp_in_use_by_net);
		atomic_sub(i, &mdev->pp_in_use);
937
		spin_lock_irq(&mdev->tconn->req_lock);
938
		list_add_tail(&peer_req->w.list, &mdev->net_ee);
939
		spin_unlock_irq(&mdev->tconn->req_lock);
940
		wake_up(&drbd_pp_wait);
P
Philipp Reisner 已提交
941
	} else
942
		drbd_free_peer_req(mdev, peer_req);
P
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943 944 945 946 947 948 949 950
}

/**
 * w_e_end_data_req() - Worker callback, to send a P_DATA_REPLY packet in response to a P_DATA_REQUEST
 * @mdev:	DRBD device.
 * @w:		work object.
 * @cancel:	The connection will be closed anyways
 */
951
int w_e_end_data_req(struct drbd_work *w, int cancel)
P
Philipp Reisner 已提交
952
{
953
	struct drbd_peer_request *peer_req = container_of(w, struct drbd_peer_request, w);
954
	struct drbd_conf *mdev = w->mdev;
955
	int err;
P
Philipp Reisner 已提交
956 957

	if (unlikely(cancel)) {
958
		drbd_free_peer_req(mdev, peer_req);
P
Philipp Reisner 已提交
959
		dec_unacked(mdev);
960
		return 0;
P
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961 962
	}

963
	if (likely((peer_req->flags & EE_WAS_ERROR) == 0)) {
964
		err = drbd_send_block(mdev, P_DATA_REPLY, peer_req);
P
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965 966 967
	} else {
		if (__ratelimit(&drbd_ratelimit_state))
			dev_err(DEV, "Sending NegDReply. sector=%llus.\n",
968
			    (unsigned long long)peer_req->i.sector);
P
Philipp Reisner 已提交
969

970
		err = drbd_send_ack(mdev, P_NEG_DREPLY, peer_req);
P
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971 972 973 974
	}

	dec_unacked(mdev);

975
	move_to_net_ee_or_free(mdev, peer_req);
P
Philipp Reisner 已提交
976

977
	if (unlikely(err))
P
Philipp Reisner 已提交
978
		dev_err(DEV, "drbd_send_block() failed\n");
979
	return err;
P
Philipp Reisner 已提交
980 981 982
}

/**
983
 * w_e_end_rsdata_req() - Worker callback to send a P_RS_DATA_REPLY packet in response to a P_RS_DATA_REQUEST
P
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984 985 986 987
 * @mdev:	DRBD device.
 * @w:		work object.
 * @cancel:	The connection will be closed anyways
 */
988
int w_e_end_rsdata_req(struct drbd_work *w, int cancel)
P
Philipp Reisner 已提交
989
{
990
	struct drbd_peer_request *peer_req = container_of(w, struct drbd_peer_request, w);
991
	struct drbd_conf *mdev = w->mdev;
992
	int err;
P
Philipp Reisner 已提交
993 994

	if (unlikely(cancel)) {
995
		drbd_free_peer_req(mdev, peer_req);
P
Philipp Reisner 已提交
996
		dec_unacked(mdev);
997
		return 0;
P
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998 999 1000
	}

	if (get_ldev_if_state(mdev, D_FAILED)) {
1001
		drbd_rs_complete_io(mdev, peer_req->i.sector);
P
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1002 1003 1004
		put_ldev(mdev);
	}

1005
	if (mdev->state.conn == C_AHEAD) {
1006
		err = drbd_send_ack(mdev, P_RS_CANCEL, peer_req);
1007
	} else if (likely((peer_req->flags & EE_WAS_ERROR) == 0)) {
P
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1008 1009
		if (likely(mdev->state.pdsk >= D_INCONSISTENT)) {
			inc_rs_pending(mdev);
1010
			err = drbd_send_block(mdev, P_RS_DATA_REPLY, peer_req);
P
Philipp Reisner 已提交
1011 1012 1013 1014
		} else {
			if (__ratelimit(&drbd_ratelimit_state))
				dev_err(DEV, "Not sending RSDataReply, "
				    "partner DISKLESS!\n");
1015
			err = 0;
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1016 1017 1018 1019
		}
	} else {
		if (__ratelimit(&drbd_ratelimit_state))
			dev_err(DEV, "Sending NegRSDReply. sector %llus.\n",
1020
			    (unsigned long long)peer_req->i.sector);
P
Philipp Reisner 已提交
1021

1022
		err = drbd_send_ack(mdev, P_NEG_RS_DREPLY, peer_req);
P
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1023 1024

		/* update resync data with failure */
1025
		drbd_rs_failed_io(mdev, peer_req->i.sector, peer_req->i.size);
P
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1026 1027 1028 1029
	}

	dec_unacked(mdev);

1030
	move_to_net_ee_or_free(mdev, peer_req);
P
Philipp Reisner 已提交
1031

1032
	if (unlikely(err))
P
Philipp Reisner 已提交
1033
		dev_err(DEV, "drbd_send_block() failed\n");
1034
	return err;
P
Philipp Reisner 已提交
1035 1036
}

1037
int w_e_end_csum_rs_req(struct drbd_work *w, int cancel)
P
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1038
{
1039
	struct drbd_peer_request *peer_req = container_of(w, struct drbd_peer_request, w);
1040
	struct drbd_conf *mdev = w->mdev;
P
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1041 1042 1043
	struct digest_info *di;
	int digest_size;
	void *digest = NULL;
1044
	int err, eq = 0;
P
Philipp Reisner 已提交
1045 1046

	if (unlikely(cancel)) {
1047
		drbd_free_peer_req(mdev, peer_req);
P
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1048
		dec_unacked(mdev);
1049
		return 0;
P
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1050 1051
	}

1052
	if (get_ldev(mdev)) {
1053
		drbd_rs_complete_io(mdev, peer_req->i.sector);
1054 1055
		put_ldev(mdev);
	}
P
Philipp Reisner 已提交
1056

1057
	di = peer_req->digest;
P
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1058

1059
	if (likely((peer_req->flags & EE_WAS_ERROR) == 0)) {
P
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1060 1061 1062
		/* quick hack to try to avoid a race against reconfiguration.
		 * a real fix would be much more involved,
		 * introducing more locking mechanisms */
1063 1064
		if (mdev->tconn->csums_tfm) {
			digest_size = crypto_hash_digestsize(mdev->tconn->csums_tfm);
P
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1065 1066 1067 1068
			D_ASSERT(digest_size == di->digest_size);
			digest = kmalloc(digest_size, GFP_NOIO);
		}
		if (digest) {
1069
			drbd_csum_ee(mdev, mdev->tconn->csums_tfm, peer_req, digest);
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1070 1071 1072 1073 1074
			eq = !memcmp(digest, di->digest, digest_size);
			kfree(digest);
		}

		if (eq) {
1075
			drbd_set_in_sync(mdev, peer_req->i.sector, peer_req->i.size);
1076
			/* rs_same_csums unit is BM_BLOCK_SIZE */
1077
			mdev->rs_same_csum += peer_req->i.size >> BM_BLOCK_SHIFT;
1078
			err = drbd_send_ack(mdev, P_RS_IS_IN_SYNC, peer_req);
P
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1079 1080
		} else {
			inc_rs_pending(mdev);
1081 1082
			peer_req->block_id = ID_SYNCER; /* By setting block_id, digest pointer becomes invalid! */
			peer_req->flags &= ~EE_HAS_DIGEST; /* This peer request no longer has a digest pointer */
1083
			kfree(di);
1084
			err = drbd_send_block(mdev, P_RS_DATA_REPLY, peer_req);
P
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1085 1086
		}
	} else {
1087
		err = drbd_send_ack(mdev, P_NEG_RS_DREPLY, peer_req);
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1088 1089 1090 1091 1092
		if (__ratelimit(&drbd_ratelimit_state))
			dev_err(DEV, "Sending NegDReply. I guess it gets messy.\n");
	}

	dec_unacked(mdev);
1093
	move_to_net_ee_or_free(mdev, peer_req);
P
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1094

1095
	if (unlikely(err))
P
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1096
		dev_err(DEV, "drbd_send_block/ack() failed\n");
1097
	return err;
P
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1098 1099
}

1100
int w_e_end_ov_req(struct drbd_work *w, int cancel)
P
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1101
{
1102
	struct drbd_peer_request *peer_req = container_of(w, struct drbd_peer_request, w);
1103
	struct drbd_conf *mdev = w->mdev;
1104 1105
	sector_t sector = peer_req->i.sector;
	unsigned int size = peer_req->i.size;
P
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1106 1107
	int digest_size;
	void *digest;
1108
	int err = 0;
P
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1109 1110 1111 1112

	if (unlikely(cancel))
		goto out;

1113
	digest_size = crypto_hash_digestsize(mdev->tconn->verify_tfm);
P
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1114
	digest = kmalloc(digest_size, GFP_NOIO);
1115
	if (!digest) {
1116
		err = 1;	/* terminate the connection in case the allocation failed */
1117
		goto out;
P
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1118 1119
	}

1120
	if (likely(!(peer_req->flags & EE_WAS_ERROR)))
1121
		drbd_csum_ee(mdev, mdev->tconn->verify_tfm, peer_req, digest);
1122 1123 1124
	else
		memset(digest, 0, digest_size);

1125 1126 1127 1128
	/* Free e and pages before send.
	 * In case we block on congestion, we could otherwise run into
	 * some distributed deadlock, if the other side blocks on
	 * congestion as well, because our receiver blocks in
1129
	 * drbd_alloc_pages due to pp_in_use > max_buffers. */
1130
	drbd_free_peer_req(mdev, peer_req);
1131
	peer_req = NULL;
1132
	inc_rs_pending(mdev);
1133 1134
	err = drbd_send_drequest_csum(mdev, sector, size, digest, digest_size, P_OV_REPLY);
	if (err)
1135 1136 1137
		dec_rs_pending(mdev);
	kfree(digest);

P
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1138
out:
1139
	if (peer_req)
1140
		drbd_free_peer_req(mdev, peer_req);
P
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1141
	dec_unacked(mdev);
1142
	return err;
P
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1143 1144
}

1145
void drbd_ov_out_of_sync_found(struct drbd_conf *mdev, sector_t sector, int size)
P
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1146 1147 1148 1149 1150 1151 1152 1153 1154 1155
{
	if (mdev->ov_last_oos_start + mdev->ov_last_oos_size == sector) {
		mdev->ov_last_oos_size += size>>9;
	} else {
		mdev->ov_last_oos_start = sector;
		mdev->ov_last_oos_size = size>>9;
	}
	drbd_set_out_of_sync(mdev, sector, size);
}

1156
int w_e_end_ov_reply(struct drbd_work *w, int cancel)
P
Philipp Reisner 已提交
1157
{
1158
	struct drbd_peer_request *peer_req = container_of(w, struct drbd_peer_request, w);
1159
	struct drbd_conf *mdev = w->mdev;
P
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1160 1161
	struct digest_info *di;
	void *digest;
1162 1163
	sector_t sector = peer_req->i.sector;
	unsigned int size = peer_req->i.size;
1164
	int digest_size;
1165
	int err, eq = 0;
P
Philipp Reisner 已提交
1166 1167

	if (unlikely(cancel)) {
1168
		drbd_free_peer_req(mdev, peer_req);
P
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1169
		dec_unacked(mdev);
1170
		return 0;
P
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1171 1172 1173 1174
	}

	/* after "cancel", because after drbd_disconnect/drbd_rs_cancel_all
	 * the resync lru has been cleaned up already */
1175
	if (get_ldev(mdev)) {
1176
		drbd_rs_complete_io(mdev, peer_req->i.sector);
1177 1178
		put_ldev(mdev);
	}
P
Philipp Reisner 已提交
1179

1180
	di = peer_req->digest;
P
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1181

1182
	if (likely((peer_req->flags & EE_WAS_ERROR) == 0)) {
1183
		digest_size = crypto_hash_digestsize(mdev->tconn->verify_tfm);
P
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1184 1185
		digest = kmalloc(digest_size, GFP_NOIO);
		if (digest) {
1186
			drbd_csum_ee(mdev, mdev->tconn->verify_tfm, peer_req, digest);
P
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1187 1188 1189 1190 1191 1192 1193

			D_ASSERT(digest_size == di->digest_size);
			eq = !memcmp(digest, di->digest, digest_size);
			kfree(digest);
		}
	}

1194 1195 1196 1197
	/* Free peer_req and pages before send.
	 * In case we block on congestion, we could otherwise run into
	 * some distributed deadlock, if the other side blocks on
	 * congestion as well, because our receiver blocks in
1198
	 * drbd_alloc_pages due to pp_in_use > max_buffers. */
1199
	drbd_free_peer_req(mdev, peer_req);
P
Philipp Reisner 已提交
1200
	if (!eq)
1201
		drbd_ov_out_of_sync_found(mdev, sector, size);
P
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1202
	else
1203
		ov_out_of_sync_print(mdev);
P
Philipp Reisner 已提交
1204

1205
	err = drbd_send_ack_ex(mdev, P_OV_RESULT, sector, size,
1206
			       eq ? ID_IN_SYNC : ID_OUT_OF_SYNC);
P
Philipp Reisner 已提交
1207

1208
	dec_unacked(mdev);
P
Philipp Reisner 已提交
1209

1210 1211 1212 1213 1214 1215 1216
	--mdev->ov_left;

	/* let's advance progress step marks only for every other megabyte */
	if ((mdev->ov_left & 0x200) == 0x200)
		drbd_advance_rs_marks(mdev, mdev->ov_left);

	if (mdev->ov_left == 0) {
1217
		ov_out_of_sync_print(mdev);
P
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1218 1219 1220
		drbd_resync_finished(mdev);
	}

1221
	return err;
P
Philipp Reisner 已提交
1222 1223
}

1224
int w_prev_work_done(struct drbd_work *w, int cancel)
P
Philipp Reisner 已提交
1225 1226
{
	struct drbd_wq_barrier *b = container_of(w, struct drbd_wq_barrier, w);
1227

P
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1228
	complete(&b->done);
1229
	return 0;
P
Philipp Reisner 已提交
1230 1231
}

1232
int w_send_barrier(struct drbd_work *w, int cancel)
P
Philipp Reisner 已提交
1233
{
1234
	struct drbd_socket *sock;
P
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1235
	struct drbd_tl_epoch *b = container_of(w, struct drbd_tl_epoch, w);
1236
	struct drbd_conf *mdev = w->mdev;
1237
	struct p_barrier *p;
P
Philipp Reisner 已提交
1238 1239 1240 1241 1242 1243

	/* really avoid racing with tl_clear.  w.cb may have been referenced
	 * just before it was reassigned and re-queued, so double check that.
	 * actually, this race was harmless, since we only try to send the
	 * barrier packet here, and otherwise do nothing with the object.
	 * but compare with the head of w_clear_epoch */
1244
	spin_lock_irq(&mdev->tconn->req_lock);
P
Philipp Reisner 已提交
1245 1246
	if (w->cb != w_send_barrier || mdev->state.conn < C_CONNECTED)
		cancel = 1;
1247
	spin_unlock_irq(&mdev->tconn->req_lock);
P
Philipp Reisner 已提交
1248 1249
	if (cancel)
		return 0;
1250

1251 1252 1253 1254
	sock = &mdev->tconn->data;
	p = drbd_prepare_command(mdev, sock);
	if (!p)
		return -EIO;
P
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1255 1256 1257 1258
	p->barrier = b->br_number;
	/* inc_ap_pending was done where this was queued.
	 * dec_ap_pending will be done in got_BarrierAck
	 * or (on connection loss) in w_clear_epoch.  */
1259
	return drbd_send_command(mdev, sock, P_BARRIER, sizeof(*p), NULL, 0);
P
Philipp Reisner 已提交
1260 1261
}

1262
int w_send_write_hint(struct drbd_work *w, int cancel)
P
Philipp Reisner 已提交
1263
{
1264
	struct drbd_conf *mdev = w->mdev;
1265 1266
	struct drbd_socket *sock;

P
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1267
	if (cancel)
1268
		return 0;
1269 1270 1271
	sock = &mdev->tconn->data;
	if (!drbd_prepare_command(mdev, sock))
		return -EIO;
1272
	return drbd_send_command(mdev, sock, P_UNPLUG_REMOTE, 0, NULL, 0);
P
Philipp Reisner 已提交
1273 1274
}

1275
int w_send_out_of_sync(struct drbd_work *w, int cancel)
1276 1277
{
	struct drbd_request *req = container_of(w, struct drbd_request, w);
1278
	struct drbd_conf *mdev = w->mdev;
1279
	int err;
1280 1281

	if (unlikely(cancel)) {
1282
		req_mod(req, SEND_CANCELED);
1283
		return 0;
1284 1285
	}

1286
	err = drbd_send_out_of_sync(mdev, req);
1287
	req_mod(req, OOS_HANDED_TO_NETWORK);
1288

1289
	return err;
1290 1291
}

P
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1292 1293 1294 1295 1296 1297
/**
 * w_send_dblock() - Worker callback to send a P_DATA packet in order to mirror a write request
 * @mdev:	DRBD device.
 * @w:		work object.
 * @cancel:	The connection will be closed anyways
 */
1298
int w_send_dblock(struct drbd_work *w, int cancel)
P
Philipp Reisner 已提交
1299 1300
{
	struct drbd_request *req = container_of(w, struct drbd_request, w);
1301
	struct drbd_conf *mdev = w->mdev;
1302
	int err;
P
Philipp Reisner 已提交
1303 1304

	if (unlikely(cancel)) {
1305
		req_mod(req, SEND_CANCELED);
1306
		return 0;
P
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1307 1308
	}

1309 1310
	err = drbd_send_dblock(mdev, req);
	req_mod(req, err ? SEND_FAILED : HANDED_OVER_TO_NETWORK);
P
Philipp Reisner 已提交
1311

1312
	return err;
P
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1313 1314 1315 1316 1317 1318 1319 1320
}

/**
 * w_send_read_req() - Worker callback to send a read request (P_DATA_REQUEST) packet
 * @mdev:	DRBD device.
 * @w:		work object.
 * @cancel:	The connection will be closed anyways
 */
1321
int w_send_read_req(struct drbd_work *w, int cancel)
P
Philipp Reisner 已提交
1322 1323
{
	struct drbd_request *req = container_of(w, struct drbd_request, w);
1324
	struct drbd_conf *mdev = w->mdev;
1325
	int err;
P
Philipp Reisner 已提交
1326 1327

	if (unlikely(cancel)) {
1328
		req_mod(req, SEND_CANCELED);
1329
		return 0;
P
Philipp Reisner 已提交
1330 1331
	}

1332
	err = drbd_send_drequest(mdev, P_DATA_REQUEST, req->i.sector, req->i.size,
1333
				 (unsigned long)req);
P
Philipp Reisner 已提交
1334

1335
	req_mod(req, err ? SEND_FAILED : HANDED_OVER_TO_NETWORK);
P
Philipp Reisner 已提交
1336

1337
	return err;
P
Philipp Reisner 已提交
1338 1339
}

1340
int w_restart_disk_io(struct drbd_work *w, int cancel)
1341 1342
{
	struct drbd_request *req = container_of(w, struct drbd_request, w);
1343
	struct drbd_conf *mdev = w->mdev;
1344

1345
	if (bio_data_dir(req->master_bio) == WRITE && req->rq_state & RQ_IN_ACT_LOG)
1346
		drbd_al_begin_io(mdev, &req->i);
1347 1348 1349 1350 1351

	drbd_req_make_private_bio(req, req->master_bio);
	req->private_bio->bi_bdev = mdev->ldev->backing_bdev;
	generic_make_request(req->private_bio);

1352
	return 0;
1353 1354
}

P
Philipp Reisner 已提交
1355 1356 1357
static int _drbd_may_sync_now(struct drbd_conf *mdev)
{
	struct drbd_conf *odev = mdev;
1358
	int resync_after;
P
Philipp Reisner 已提交
1359 1360

	while (1) {
1361 1362
		if (!odev->ldev)
			return 1;
P
Philipp Reisner 已提交
1363
		rcu_read_lock();
1364
		resync_after = rcu_dereference(odev->ldev->disk_conf)->resync_after;
P
Philipp Reisner 已提交
1365
		rcu_read_unlock();
1366
		if (resync_after == -1)
P
Philipp Reisner 已提交
1367
			return 1;
1368
		odev = minor_to_mdev(resync_after);
1369 1370
		if (!expect(odev))
			return 1;
P
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1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389
		if ((odev->state.conn >= C_SYNC_SOURCE &&
		     odev->state.conn <= C_PAUSED_SYNC_T) ||
		    odev->state.aftr_isp || odev->state.peer_isp ||
		    odev->state.user_isp)
			return 0;
	}
}

/**
 * _drbd_pause_after() - Pause resync on all devices that may not resync now
 * @mdev:	DRBD device.
 *
 * Called from process context only (admin command and after_state_ch).
 */
static int _drbd_pause_after(struct drbd_conf *mdev)
{
	struct drbd_conf *odev;
	int i, rv = 0;

1390
	rcu_read_lock();
1391
	idr_for_each_entry(&minors, odev, i) {
P
Philipp Reisner 已提交
1392 1393 1394 1395 1396 1397
		if (odev->state.conn == C_STANDALONE && odev->state.disk == D_DISKLESS)
			continue;
		if (!_drbd_may_sync_now(odev))
			rv |= (__drbd_set_state(_NS(odev, aftr_isp, 1), CS_HARD, NULL)
			       != SS_NOTHING_TO_DO);
	}
1398
	rcu_read_unlock();
P
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1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413

	return rv;
}

/**
 * _drbd_resume_next() - Resume resync on all devices that may resync now
 * @mdev:	DRBD device.
 *
 * Called from process context only (admin command and worker).
 */
static int _drbd_resume_next(struct drbd_conf *mdev)
{
	struct drbd_conf *odev;
	int i, rv = 0;

1414
	rcu_read_lock();
1415
	idr_for_each_entry(&minors, odev, i) {
P
Philipp Reisner 已提交
1416 1417 1418 1419 1420 1421 1422 1423 1424
		if (odev->state.conn == C_STANDALONE && odev->state.disk == D_DISKLESS)
			continue;
		if (odev->state.aftr_isp) {
			if (_drbd_may_sync_now(odev))
				rv |= (__drbd_set_state(_NS(odev, aftr_isp, 0),
							CS_HARD, NULL)
				       != SS_NOTHING_TO_DO) ;
		}
	}
1425
	rcu_read_unlock();
P
Philipp Reisner 已提交
1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442
	return rv;
}

void resume_next_sg(struct drbd_conf *mdev)
{
	write_lock_irq(&global_state_lock);
	_drbd_resume_next(mdev);
	write_unlock_irq(&global_state_lock);
}

void suspend_other_sg(struct drbd_conf *mdev)
{
	write_lock_irq(&global_state_lock);
	_drbd_pause_after(mdev);
	write_unlock_irq(&global_state_lock);
}

1443
/* caller must hold global_state_lock */
1444
enum drbd_ret_code drbd_resync_after_valid(struct drbd_conf *mdev, int o_minor)
P
Philipp Reisner 已提交
1445 1446
{
	struct drbd_conf *odev;
1447
	int resync_after;
P
Philipp Reisner 已提交
1448 1449 1450 1451

	if (o_minor == -1)
		return NO_ERROR;
	if (o_minor < -1 || minor_to_mdev(o_minor) == NULL)
1452
		return ERR_RESYNC_AFTER;
P
Philipp Reisner 已提交
1453 1454 1455 1456 1457

	/* check for loops */
	odev = minor_to_mdev(o_minor);
	while (1) {
		if (odev == mdev)
1458
			return ERR_RESYNC_AFTER_CYCLE;
P
Philipp Reisner 已提交
1459

P
Philipp Reisner 已提交
1460
		rcu_read_lock();
1461
		resync_after = rcu_dereference(odev->ldev->disk_conf)->resync_after;
P
Philipp Reisner 已提交
1462
		rcu_read_unlock();
P
Philipp Reisner 已提交
1463
		/* dependency chain ends here, no cycles. */
1464
		if (resync_after == -1)
P
Philipp Reisner 已提交
1465 1466 1467
			return NO_ERROR;

		/* follow the dependency chain */
1468
		odev = minor_to_mdev(resync_after);
P
Philipp Reisner 已提交
1469 1470 1471
	}
}

1472
/* caller must hold global_state_lock */
1473
void drbd_resync_after_changed(struct drbd_conf *mdev)
P
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1474 1475 1476
{
	int changes;

1477 1478 1479 1480
	do {
		changes  = _drbd_pause_after(mdev);
		changes |= _drbd_resume_next(mdev);
	} while (changes);
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}

1483 1484
void drbd_rs_controller_reset(struct drbd_conf *mdev)
{
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	struct fifo_buffer *plan;

1487 1488 1489
	atomic_set(&mdev->rs_sect_in, 0);
	atomic_set(&mdev->rs_sect_ev, 0);
	mdev->rs_in_flight = 0;
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	/* Updating the RCU protected object in place is necessary since
	   this function gets called from atomic context.
	   It is valid since all other updates also lead to an completely
	   empty fifo */
	rcu_read_lock();
	plan = rcu_dereference(mdev->rs_plan_s);
	plan->total = 0;
	fifo_set(plan, 0);
	rcu_read_unlock();
1500 1501
}

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void start_resync_timer_fn(unsigned long data)
{
	struct drbd_conf *mdev = (struct drbd_conf *) data;

	drbd_queue_work(&mdev->tconn->data.work, &mdev->start_resync_work);
}

1509
int w_start_resync(struct drbd_work *w, int cancel)
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{
1511 1512
	struct drbd_conf *mdev = w->mdev;

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	if (atomic_read(&mdev->unacked_cnt) || atomic_read(&mdev->rs_pending_cnt)) {
		dev_warn(DEV, "w_start_resync later...\n");
		mdev->start_resync_timer.expires = jiffies + HZ/10;
		add_timer(&mdev->start_resync_timer);
1517
		return 0;
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	}

	drbd_start_resync(mdev, C_SYNC_SOURCE);
1521
	clear_bit(AHEAD_TO_SYNC_SOURCE, &mdev->flags);
1522
	return 0;
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}

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/**
 * drbd_start_resync() - Start the resync process
 * @mdev:	DRBD device.
 * @side:	Either C_SYNC_SOURCE or C_SYNC_TARGET
 *
 * This function might bring you directly into one of the
 * C_PAUSED_SYNC_* states.
 */
void drbd_start_resync(struct drbd_conf *mdev, enum drbd_conns side)
{
	union drbd_state ns;
	int r;

1538
	if (mdev->state.conn >= C_SYNC_SOURCE && mdev->state.conn < C_AHEAD) {
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		dev_err(DEV, "Resync already running!\n");
		return;
	}

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	if (mdev->state.conn < C_AHEAD) {
		/* In case a previous resync run was aborted by an IO error/detach on the peer. */
		drbd_rs_cancel_all(mdev);
		/* This should be done when we abort the resync. We definitely do not
		   want to have this for connections going back and forth between
		   Ahead/Behind and SyncSource/SyncTarget */
	}
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	if (!test_bit(B_RS_H_DONE, &mdev->flags)) {
		if (side == C_SYNC_TARGET) {
			/* Since application IO was locked out during C_WF_BITMAP_T and
			   C_WF_SYNC_UUID we are still unmodified. Before going to C_SYNC_TARGET
			   we check that we might make the data inconsistent. */
			r = drbd_khelper(mdev, "before-resync-target");
			r = (r >> 8) & 0xff;
			if (r > 0) {
				dev_info(DEV, "before-resync-target handler returned %d, "
1560
					 "dropping connection.\n", r);
1561
				conn_request_state(mdev->tconn, NS(conn, C_DISCONNECTING), CS_HARD);
1562 1563
				return;
			}
1564 1565 1566 1567 1568 1569 1570 1571 1572 1573
		} else /* C_SYNC_SOURCE */ {
			r = drbd_khelper(mdev, "before-resync-source");
			r = (r >> 8) & 0xff;
			if (r > 0) {
				if (r == 3) {
					dev_info(DEV, "before-resync-source handler returned %d, "
						 "ignoring. Old userland tools?", r);
				} else {
					dev_info(DEV, "before-resync-source handler returned %d, "
						 "dropping connection.\n", r);
1574
					conn_request_state(mdev->tconn, NS(conn, C_DISCONNECTING), CS_HARD);
1575 1576 1577
					return;
				}
			}
1578
		}
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	}

1581
	if (current == mdev->tconn->worker.task) {
1582
		/* The worker should not sleep waiting for state_mutex,
1583
		   that can take long */
1584
		if (!mutex_trylock(mdev->state_mutex)) {
1585 1586 1587 1588 1589 1590
			set_bit(B_RS_H_DONE, &mdev->flags);
			mdev->start_resync_timer.expires = jiffies + HZ/5;
			add_timer(&mdev->start_resync_timer);
			return;
		}
	} else {
1591
		mutex_lock(mdev->state_mutex);
1592 1593
	}
	clear_bit(B_RS_H_DONE, &mdev->flags);
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1595
	write_lock_irq(&global_state_lock);
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	if (!get_ldev_if_state(mdev, D_NEGOTIATING)) {
1597
		write_unlock_irq(&global_state_lock);
1598
		mutex_unlock(mdev->state_mutex);
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		return;
	}

1602
	ns = drbd_read_state(mdev);
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	ns.aftr_isp = !_drbd_may_sync_now(mdev);

	ns.conn = side;

	if (side == C_SYNC_TARGET)
		ns.disk = D_INCONSISTENT;
	else /* side == C_SYNC_SOURCE */
		ns.pdsk = D_INCONSISTENT;

	r = __drbd_set_state(mdev, ns, CS_VERBOSE, NULL);
1614
	ns = drbd_read_state(mdev);
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	if (ns.conn < C_CONNECTED)
		r = SS_UNKNOWN_ERROR;

	if (r == SS_SUCCESS) {
1620 1621 1622 1623
		unsigned long tw = drbd_bm_total_weight(mdev);
		unsigned long now = jiffies;
		int i;

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		mdev->rs_failed    = 0;
		mdev->rs_paused    = 0;
		mdev->rs_same_csum = 0;
1627 1628
		mdev->rs_last_events = 0;
		mdev->rs_last_sect_ev = 0;
1629 1630 1631 1632 1633 1634
		mdev->rs_total     = tw;
		mdev->rs_start     = now;
		for (i = 0; i < DRBD_SYNC_MARKS; i++) {
			mdev->rs_mark_left[i] = tw;
			mdev->rs_mark_time[i] = now;
		}
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		_drbd_pause_after(mdev);
	}
	write_unlock_irq(&global_state_lock);
1638

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	if (r == SS_SUCCESS) {
		dev_info(DEV, "Began resync as %s (will sync %lu KB [%lu bits set]).\n",
		     drbd_conn_str(ns.conn),
		     (unsigned long) mdev->rs_total << (BM_BLOCK_SHIFT-10),
		     (unsigned long) mdev->rs_total);
1644 1645 1646 1647 1648 1649 1650 1651 1652 1653
		if (side == C_SYNC_TARGET)
			mdev->bm_resync_fo = 0;

		/* Since protocol 96, we must serialize drbd_gen_and_send_sync_uuid
		 * with w_send_oos, or the sync target will get confused as to
		 * how much bits to resync.  We cannot do that always, because for an
		 * empty resync and protocol < 95, we need to do it here, as we call
		 * drbd_resync_finished from here in that case.
		 * We drbd_gen_and_send_sync_uuid here for protocol < 96,
		 * and from after_state_ch otherwise. */
1654
		if (side == C_SYNC_SOURCE && mdev->tconn->agreed_pro_version < 96)
1655
			drbd_gen_and_send_sync_uuid(mdev);
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1657
		if (mdev->tconn->agreed_pro_version < 95 && mdev->rs_total == 0) {
1658 1659 1660 1661 1662 1663 1664 1665 1666 1667
			/* This still has a race (about when exactly the peers
			 * detect connection loss) that can lead to a full sync
			 * on next handshake. In 8.3.9 we fixed this with explicit
			 * resync-finished notifications, but the fix
			 * introduces a protocol change.  Sleeping for some
			 * time longer than the ping interval + timeout on the
			 * SyncSource, to give the SyncTarget the chance to
			 * detect connection loss, then waiting for a ping
			 * response (implicit in drbd_resync_finished) reduces
			 * the race considerably, but does not solve it. */
1668 1669 1670 1671 1672 1673 1674 1675 1676 1677
			if (side == C_SYNC_SOURCE) {
				struct net_conf *nc;
				int timeo;

				rcu_read_lock();
				nc = rcu_dereference(mdev->tconn->net_conf);
				timeo = nc->ping_int * HZ + nc->ping_timeo * HZ / 9;
				rcu_read_unlock();
				schedule_timeout_interruptible(timeo);
			}
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			drbd_resync_finished(mdev);
		}

1681
		drbd_rs_controller_reset(mdev);
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		/* ns.conn may already be != mdev->state.conn,
		 * we may have been paused in between, or become paused until
		 * the timer triggers.
		 * No matter, that is handled in resync_timer_fn() */
		if (ns.conn == C_SYNC_TARGET)
			mod_timer(&mdev->resync_timer, jiffies);

		drbd_md_sync(mdev);
	}
1691
	put_ldev(mdev);
1692
	mutex_unlock(mdev->state_mutex);
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}

int drbd_worker(struct drbd_thread *thi)
{
1697
	struct drbd_tconn *tconn = thi->tconn;
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	struct drbd_work *w = NULL;
1699
	struct drbd_conf *mdev;
1700
	struct net_conf *nc;
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	LIST_HEAD(work_list);
1702
	int vnr, intr = 0;
1703
	int cork;
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1705
	while (get_t_state(thi) == RUNNING) {
1706
		drbd_thread_current_set_cpu(thi);
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1708 1709
		if (down_trylock(&tconn->data.work.s)) {
			mutex_lock(&tconn->data.mutex);
1710 1711 1712

			rcu_read_lock();
			nc = rcu_dereference(tconn->net_conf);
1713
			cork = nc ? nc->tcp_cork : 0;
1714 1715 1716
			rcu_read_unlock();

			if (tconn->data.socket && cork)
1717 1718
				drbd_tcp_uncork(tconn->data.socket);
			mutex_unlock(&tconn->data.mutex);
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1720
			intr = down_interruptible(&tconn->data.work.s);
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1722
			mutex_lock(&tconn->data.mutex);
1723
			if (tconn->data.socket  && cork)
1724 1725
				drbd_tcp_cork(tconn->data.socket);
			mutex_unlock(&tconn->data.mutex);
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		}

		if (intr) {
			flush_signals(current);
1730 1731
			if (get_t_state(thi) == RUNNING) {
				conn_warn(tconn, "Worker got an unexpected signal\n");
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				continue;
1733
			}
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			break;
		}

1737
		if (get_t_state(thi) != RUNNING)
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			break;
		/* With this break, we have done a down() but not consumed
		   the entry from the list. The cleanup code takes care of
		   this...   */

		w = NULL;
1744 1745
		spin_lock_irq(&tconn->data.work.q_lock);
		if (list_empty(&tconn->data.work.q)) {
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			/* something terribly wrong in our logic.
			 * we were able to down() the semaphore,
			 * but the list is empty... doh.
			 *
			 * what is the best thing to do now?
			 * try again from scratch, restarting the receiver,
			 * asender, whatnot? could break even more ugly,
			 * e.g. when we are primary, but no good local data.
			 *
			 * I'll try to get away just starting over this loop.
			 */
1757 1758
			conn_warn(tconn, "Work list unexpectedly empty\n");
			spin_unlock_irq(&tconn->data.work.q_lock);
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			continue;
		}
1761
		w = list_entry(tconn->data.work.q.next, struct drbd_work, list);
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		list_del_init(&w->list);
1763
		spin_unlock_irq(&tconn->data.work.q_lock);
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1764

1765
		if (w->cb(w, tconn->cstate < C_WF_REPORT_PARAMS)) {
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			/* dev_warn(DEV, "worker: a callback failed! \n"); */
1767 1768
			if (tconn->cstate >= C_WF_REPORT_PARAMS)
				conn_request_state(tconn, NS(conn, C_NETWORK_FAILURE), CS_HARD);
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		}
	}

1772 1773 1774 1775
	spin_lock_irq(&tconn->data.work.q_lock);
	while (!list_empty(&tconn->data.work.q)) {
		list_splice_init(&tconn->data.work.q, &work_list);
		spin_unlock_irq(&tconn->data.work.q_lock);
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		while (!list_empty(&work_list)) {
			w = list_entry(work_list.next, struct drbd_work, list);
			list_del_init(&w->list);
1780
			w->cb(w, 1);
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		}

1783
		spin_lock_irq(&tconn->data.work.q_lock);
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1784
	}
1785
	sema_init(&tconn->data.work.s, 0);
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	/* DANGEROUS race: if someone did queue his work within the spinlock,
	 * but up() ed outside the spinlock, we could get an up() on the
	 * semaphore without corresponding list entry.
	 * So don't do that.
	 */
1791
	spin_unlock_irq(&tconn->data.work.q_lock);
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1792

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1793
	rcu_read_lock();
1794
	idr_for_each_entry(&tconn->volumes, mdev, vnr) {
1795
		D_ASSERT(mdev->state.disk == D_DISKLESS && mdev->state.conn == C_STANDALONE);
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1796 1797
		kref_get(&mdev->kref);
		rcu_read_unlock();
1798
		drbd_mdev_cleanup(mdev);
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		kref_put(&mdev->kref, &drbd_minor_destroy);
		rcu_read_lock();
1801
	}
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1802
	rcu_read_unlock();
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1803 1804 1805

	return 0;
}