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tools/memory-model: Add SRCU support
Add support for SRCU. Herd creates srcu events and linux-kernel.def associates them with three possible annotations (srcu-lock, srcu-unlock, and sync-srcu) corresponding to the API routines srcu_read_lock(), srcu_read_unlock(), and synchronize_srcu(). The linux-kernel.bell file now declares the annotations and determines matching lock/unlock pairs delimiting SRCU read-side critical sections, and it also checks for synchronize_srcu() calls inside an RCU critical section (which would generate a "sleeping in atomic context" error in real kernel code). The linux-kernel.cat file now adds SRCU-induced ordering, analogous to the existing RCU-induced ordering, to the gp and rcu-fence relations. Curiously enough, these small changes to the model's .cat code are all that is needed to describe SRCU. Portions of this patch (linux-kernel.def and the first hunk in linux-kernel.bell) were written by Luc Maranget. Signed-off-by: Alan Stern <stern@rowland.harvard.edu> CC: Luc Maranget <luc.maranget@inria.fr> Signed-off-by: Paul E. McKenney <paulmck@linux.ibm.com> Tested-by: Andrea Parri <andrea.parri@amarulasolutions.com>
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@ -33,6 +33,12 @@ enum Barriers = 'wmb (*smp_wmb*) ||
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'after-unlock-lock (*smp_mb__after_unlock_lock*)
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instructions F[Barriers]
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(* SRCU *)
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enum SRCU = 'srcu-lock || 'srcu-unlock || 'sync-srcu
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instructions SRCU[SRCU]
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(* All srcu events *)
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let Srcu = Srcu-lock | Srcu-unlock | Sync-srcu
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(* Compute matching pairs of nested Rcu-lock and Rcu-unlock *)
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let rcu-rscs = let rec
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unmatched-locks = Rcu-lock \ domain(matched)
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@ -48,3 +54,22 @@ let rcu-rscs = let rec
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(* Validate nesting *)
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flag ~empty Rcu-lock \ domain(rcu-rscs) as unbalanced-rcu-locking
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flag ~empty Rcu-unlock \ range(rcu-rscs) as unbalanced-rcu-locking
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(* Compute matching pairs of nested Srcu-lock and Srcu-unlock *)
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let srcu-rscs = let rec
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unmatched-locks = Srcu-lock \ domain(matched)
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and unmatched-unlocks = Srcu-unlock \ range(matched)
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and unmatched = unmatched-locks | unmatched-unlocks
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and unmatched-po = ([unmatched] ; po ; [unmatched]) & loc
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and unmatched-locks-to-unlocks =
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([unmatched-locks] ; po ; [unmatched-unlocks]) & loc
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and matched = matched | (unmatched-locks-to-unlocks \
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(unmatched-po ; unmatched-po))
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in matched
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(* Validate nesting *)
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flag ~empty Srcu-lock \ domain(srcu-rscs) as unbalanced-srcu-locking
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flag ~empty Srcu-unlock \ range(srcu-rscs) as unbalanced-srcu-locking
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(* Check for use of synchronize_srcu() inside an RCU critical section *)
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flag ~empty rcu-rscs & (po ; [Sync-srcu] ; po) as invalid-sleep
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@ -33,7 +33,7 @@ let mb = ([M] ; fencerel(Mb) ; [M]) |
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([M] ; po? ; [LKW] ; fencerel(After-spinlock) ; [M]) |
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([M] ; po ; [UL] ; (co | po) ; [LKW] ;
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fencerel(After-unlock-lock) ; [M])
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let gp = po ; [Sync-rcu] ; po?
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let gp = po ; [Sync-rcu | Sync-srcu] ; po?
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let strong-fence = mb | gp
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@ -92,15 +92,18 @@ acyclic pb as propagation
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(*
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* Effects of read-side critical sections proceed from the rcu_read_unlock()
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* backwards on the one hand, and from the rcu_read_lock() forwards on the
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* other hand.
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* or srcu_read_unlock() backwards on the one hand, and from the
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* rcu_read_lock() or srcu_read_lock() forwards on the other hand.
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*
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* In the definition of rcu-fence below, the po term at the left-hand side
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* of each disjunct and the po? term at the right-hand end have been factored
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* out. They have been moved into the definitions of rcu-link and rb.
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* This was necessary in order to apply the "& loc" tests correctly.
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*)
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let rcu-gp = [Sync-rcu] (* Compare with gp *)
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let srcu-gp = [Sync-srcu]
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let rcu-rscsi = rcu-rscs^-1
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let srcu-rscsi = srcu-rscs^-1
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(*
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* The synchronize_rcu() strong fence is special in that it can order not
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@ -112,12 +115,19 @@ let rcu-link = po? ; hb* ; pb* ; prop ; po
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(*
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* Any sequence containing at least as many grace periods as RCU read-side
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* critical sections (joined by rcu-link) acts as a generalized strong fence.
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* Likewise for SRCU grace periods and read-side critical sections, provided
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* the synchronize_srcu() and srcu_read_[un]lock() calls refer to the same
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* struct srcu_struct location.
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*)
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let rec rcu-fence = rcu-gp |
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let rec rcu-fence = rcu-gp | srcu-gp |
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(rcu-gp ; rcu-link ; rcu-rscsi) |
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((srcu-gp ; rcu-link ; srcu-rscsi) & loc) |
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(rcu-rscsi ; rcu-link ; rcu-gp) |
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((srcu-rscsi ; rcu-link ; srcu-gp) & loc) |
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(rcu-gp ; rcu-link ; rcu-fence ; rcu-link ; rcu-rscsi) |
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((srcu-gp ; rcu-link ; rcu-fence ; rcu-link ; srcu-rscsi) & loc) |
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(rcu-rscsi ; rcu-link ; rcu-fence ; rcu-link ; rcu-gp) |
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((srcu-rscsi ; rcu-link ; rcu-fence ; rcu-link ; srcu-gp) & loc) |
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(rcu-fence ; rcu-link ; rcu-fence)
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(* rb orders instructions just as pb does *)
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@ -47,6 +47,11 @@ rcu_read_unlock() { __fence{rcu-unlock}; }
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synchronize_rcu() { __fence{sync-rcu}; }
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synchronize_rcu_expedited() { __fence{sync-rcu}; }
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// SRCU
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srcu_read_lock(X) __srcu{srcu-lock}(X)
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srcu_read_unlock(X,Y) { __srcu{srcu-unlock}(X); }
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synchronize_srcu(X) { __srcu{sync-srcu}(X); }
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// Atomic
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atomic_read(X) READ_ONCE(*X)
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atomic_set(X,V) { WRITE_ONCE(*X,V); }
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