md: replace R5_WantPrexor with R5_WantDrain, add 'prexor' reconstruct_states
From: Dan Williams <dan.j.williams@intel.com> Currently ops_run_biodrain and other locations have extra logic to determine which blocks are processed in the prexor and non-prexor cases. This can be eliminated if handle_write_operations5 flags the blocks to be processed in all cases via R5_Wantdrain. The presence of the prexor operation is tracked in sh->reconstruct_state. Signed-off-by: Dan Williams <dan.j.williams@intel.com> Signed-off-by: Neil Brown <neilb@suse.de>
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600aa10993
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d8ee0728b5
2 changed files with 32 additions and 63 deletions
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@ -637,7 +637,7 @@ ops_run_prexor(struct stripe_head *sh, struct dma_async_tx_descriptor *tx)
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for (i = disks; i--; ) {
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struct r5dev *dev = &sh->dev[i];
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/* Only process blocks that are known to be uptodate */
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if (dev->towrite && test_bit(R5_Wantprexor, &dev->flags))
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if (test_bit(R5_Wantdrain, &dev->flags))
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xor_srcs[count++] = dev->page;
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}
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@ -649,16 +649,10 @@ ops_run_prexor(struct stripe_head *sh, struct dma_async_tx_descriptor *tx)
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}
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static struct dma_async_tx_descriptor *
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ops_run_biodrain(struct stripe_head *sh, struct dma_async_tx_descriptor *tx,
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unsigned long ops_request)
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ops_run_biodrain(struct stripe_head *sh, struct dma_async_tx_descriptor *tx)
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{
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int disks = sh->disks;
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int pd_idx = sh->pd_idx, i;
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/* check if prexor is active which means only process blocks
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* that are part of a read-modify-write (Wantprexor)
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*/
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int prexor = test_bit(STRIPE_OP_PREXOR, &ops_request);
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int i;
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pr_debug("%s: stripe %llu\n", __func__,
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(unsigned long long)sh->sector);
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@ -666,20 +660,8 @@ ops_run_biodrain(struct stripe_head *sh, struct dma_async_tx_descriptor *tx,
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for (i = disks; i--; ) {
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struct r5dev *dev = &sh->dev[i];
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struct bio *chosen;
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int towrite;
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towrite = 0;
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if (prexor) { /* rmw */
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if (dev->towrite &&
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test_bit(R5_Wantprexor, &dev->flags))
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towrite = 1;
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} else { /* rcw */
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if (i != pd_idx && dev->towrite &&
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test_bit(R5_LOCKED, &dev->flags))
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towrite = 1;
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}
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if (towrite) {
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if (test_and_clear_bit(R5_Wantdrain, &dev->flags)) {
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struct bio *wbi;
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spin_lock(&sh->lock);
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@ -702,18 +684,6 @@ ops_run_biodrain(struct stripe_head *sh, struct dma_async_tx_descriptor *tx,
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}
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static void ops_complete_postxor(void *stripe_head_ref)
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{
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struct stripe_head *sh = stripe_head_ref;
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pr_debug("%s: stripe %llu\n", __func__,
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(unsigned long long)sh->sector);
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sh->reconstruct_state = reconstruct_state_result;
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set_bit(STRIPE_HANDLE, &sh->state);
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release_stripe(sh);
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}
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static void ops_complete_write(void *stripe_head_ref)
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{
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struct stripe_head *sh = stripe_head_ref;
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int disks = sh->disks, i, pd_idx = sh->pd_idx;
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@ -727,14 +697,21 @@ static void ops_complete_write(void *stripe_head_ref)
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set_bit(R5_UPTODATE, &dev->flags);
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}
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sh->reconstruct_state = reconstruct_state_drain_result;
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if (sh->reconstruct_state == reconstruct_state_drain_run)
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sh->reconstruct_state = reconstruct_state_drain_result;
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else if (sh->reconstruct_state == reconstruct_state_prexor_drain_run)
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sh->reconstruct_state = reconstruct_state_prexor_drain_result;
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else {
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BUG_ON(sh->reconstruct_state != reconstruct_state_run);
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sh->reconstruct_state = reconstruct_state_result;
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}
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set_bit(STRIPE_HANDLE, &sh->state);
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release_stripe(sh);
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}
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static void
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ops_run_postxor(struct stripe_head *sh, struct dma_async_tx_descriptor *tx,
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unsigned long ops_request)
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ops_run_postxor(struct stripe_head *sh, struct dma_async_tx_descriptor *tx)
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{
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/* kernel stack size limits the total number of disks */
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int disks = sh->disks;
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@ -742,9 +719,8 @@ ops_run_postxor(struct stripe_head *sh, struct dma_async_tx_descriptor *tx,
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int count = 0, pd_idx = sh->pd_idx, i;
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struct page *xor_dest;
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int prexor = test_bit(STRIPE_OP_PREXOR, &ops_request);
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int prexor = 0;
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unsigned long flags;
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dma_async_tx_callback callback;
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pr_debug("%s: stripe %llu\n", __func__,
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(unsigned long long)sh->sector);
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@ -752,7 +728,8 @@ ops_run_postxor(struct stripe_head *sh, struct dma_async_tx_descriptor *tx,
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/* check if prexor is active which means only process blocks
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* that are part of a read-modify-write (written)
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*/
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if (prexor) {
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if (sh->reconstruct_state == reconstruct_state_prexor_drain_run) {
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prexor = 1;
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xor_dest = xor_srcs[count++] = sh->dev[pd_idx].page;
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for (i = disks; i--; ) {
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struct r5dev *dev = &sh->dev[i];
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@ -768,10 +745,6 @@ ops_run_postxor(struct stripe_head *sh, struct dma_async_tx_descriptor *tx,
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}
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}
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/* check whether this postxor is part of a write */
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callback = test_bit(STRIPE_OP_BIODRAIN, &ops_request) ?
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ops_complete_write : ops_complete_postxor;
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/* 1/ if we prexor'd then the dest is reused as a source
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* 2/ if we did not prexor then we are redoing the parity
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* set ASYNC_TX_XOR_DROP_DST and ASYNC_TX_XOR_ZERO_DST
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@ -785,10 +758,10 @@ ops_run_postxor(struct stripe_head *sh, struct dma_async_tx_descriptor *tx,
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if (unlikely(count == 1)) {
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flags &= ~(ASYNC_TX_XOR_DROP_DST | ASYNC_TX_XOR_ZERO_DST);
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tx = async_memcpy(xor_dest, xor_srcs[0], 0, 0, STRIPE_SIZE,
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flags, tx, callback, sh);
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flags, tx, ops_complete_postxor, sh);
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} else
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tx = async_xor(xor_dest, xor_srcs, 0, count, STRIPE_SIZE,
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flags, tx, callback, sh);
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flags, tx, ops_complete_postxor, sh);
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}
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static void ops_complete_check(void *stripe_head_ref)
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@ -847,12 +820,12 @@ static void raid5_run_ops(struct stripe_head *sh, unsigned long ops_request)
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tx = ops_run_prexor(sh, tx);
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if (test_bit(STRIPE_OP_BIODRAIN, &ops_request)) {
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tx = ops_run_biodrain(sh, tx, ops_request);
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tx = ops_run_biodrain(sh, tx);
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overlap_clear++;
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}
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if (test_bit(STRIPE_OP_POSTXOR, &ops_request))
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ops_run_postxor(sh, tx, ops_request);
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ops_run_postxor(sh, tx);
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if (test_bit(STRIPE_OP_CHECK, &ops_request))
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ops_run_check(sh);
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@ -1669,6 +1642,7 @@ handle_write_operations5(struct stripe_head *sh, struct stripe_head_state *s,
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if (dev->towrite) {
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set_bit(R5_LOCKED, &dev->flags);
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set_bit(R5_Wantdrain, &dev->flags);
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if (!expand)
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clear_bit(R5_UPTODATE, &dev->flags);
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s->locked++;
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@ -1681,7 +1655,7 @@ handle_write_operations5(struct stripe_head *sh, struct stripe_head_state *s,
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BUG_ON(!(test_bit(R5_UPTODATE, &sh->dev[pd_idx].flags) ||
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test_bit(R5_Wantcompute, &sh->dev[pd_idx].flags)));
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sh->reconstruct_state = reconstruct_state_drain_run;
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sh->reconstruct_state = reconstruct_state_prexor_drain_run;
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set_bit(STRIPE_OP_PREXOR, &s->ops_request);
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set_bit(STRIPE_OP_BIODRAIN, &s->ops_request);
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set_bit(STRIPE_OP_POSTXOR, &s->ops_request);
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@ -1691,15 +1665,10 @@ handle_write_operations5(struct stripe_head *sh, struct stripe_head_state *s,
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if (i == pd_idx)
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continue;
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/* For a read-modify write there may be blocks that are
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* locked for reading while others are ready to be
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* written so we distinguish these blocks by the
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* R5_Wantprexor bit
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*/
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if (dev->towrite &&
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(test_bit(R5_UPTODATE, &dev->flags) ||
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test_bit(R5_Wantcompute, &dev->flags))) {
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set_bit(R5_Wantprexor, &dev->flags);
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test_bit(R5_Wantcompute, &dev->flags))) {
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set_bit(R5_Wantdrain, &dev->flags);
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set_bit(R5_LOCKED, &dev->flags);
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clear_bit(R5_UPTODATE, &dev->flags);
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s->locked++;
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@ -2660,11 +2629,11 @@ static void handle_stripe5(struct stripe_head *sh)
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* completed
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*/
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prexor = 0;
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if (sh->reconstruct_state == reconstruct_state_drain_result) {
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if (sh->reconstruct_state == reconstruct_state_prexor_drain_result)
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prexor = 1;
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if (sh->reconstruct_state == reconstruct_state_drain_result ||
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sh->reconstruct_state == reconstruct_state_prexor_drain_result) {
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sh->reconstruct_state = reconstruct_state_idle;
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for (i = disks; i--; )
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prexor += test_and_clear_bit(R5_Wantprexor,
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&sh->dev[i].flags);
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/* All the 'written' buffers and the parity block are ready to
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* be written back to disk
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@ -187,8 +187,10 @@ enum check_states {
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*/
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enum reconstruct_states {
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reconstruct_state_idle = 0,
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reconstruct_state_prexor_drain_run, /* prexor-write */
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reconstruct_state_drain_run, /* write */
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reconstruct_state_run, /* expand */
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reconstruct_state_prexor_drain_result,
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reconstruct_state_drain_result,
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reconstruct_state_result,
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};
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@ -258,9 +260,7 @@ struct r6_state {
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#define R5_Wantfill 12 /* dev->toread contains a bio that needs
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* filling
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*/
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#define R5_Wantprexor 13 /* distinguish blocks ready for rmw from
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* other "towrites"
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*/
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#define R5_Wantdrain 13 /* dev->towrite needs to be drained */
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/*
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* Write method
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*/
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