tools/memory-model: Add data-race detection
This patch adds data-race detection to the Linux-Kernel Memory Model. As part of this effort, support is added for: compiler barriers (the barrier() function), and a new Preserved Program Order term: (addr ; [Plain] ; wmb) Data races are marked with a special Flag warning in herd. It is not guaranteed that the model will provide accurate predictions when a data race is present. The patch does not include documentation for the data-race detection facility. The basic design has been explained in various emails, and a separate documentation patch will be submitted later. This work is based on an earlier formulation of data races for the LKMM by Andrea Parri. Signed-off-by: Alan Stern <stern@rowland.harvard.edu> Reviewed-by: Andrea Parri <andrea.parri@amarulasolutions.com> Signed-off-by: Paul E. McKenney <paulmck@linux.ibm.com>
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@ -24,6 +24,7 @@ instructions RMW[{'once,'acquire,'release}]
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enum Barriers = 'wmb (*smp_wmb*) ||
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'rmb (*smp_rmb*) ||
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'mb (*smp_mb*) ||
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'barrier (*barrier*) ||
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'rcu-lock (*rcu_read_lock*) ||
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'rcu-unlock (*rcu_read_unlock*) ||
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'sync-rcu (*synchronize_rcu*) ||
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@ -44,6 +44,9 @@ let strong-fence = mb | gp
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let nonrw-fence = strong-fence | po-rel | acq-po
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let fence = nonrw-fence | wmb | rmb
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let barrier = fencerel(Barrier | Rmb | Wmb | Mb | Sync-rcu | Sync-srcu |
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Before-atomic | After-atomic | Acquire | Release) |
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(po ; [Release]) | ([Acquire] ; po)
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(**********************************)
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(* Fundamental coherence ordering *)
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@ -64,7 +67,7 @@ empty rmw & (fre ; coe) as atomic
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let dep = addr | data
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let rwdep = (dep | ctrl) ; [W]
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let overwrite = co | fr
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let to-w = rwdep | (overwrite & int)
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let to-w = rwdep | (overwrite & int) | (addr ; [Plain] ; wmb)
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let to-r = addr | (dep ; [Marked] ; rfi)
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let ppo = to-r | to-w | fence | (po-unlock-rf-lock-po & int)
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@ -147,3 +150,48 @@ irreflexive rb as rcu
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* let xb = hb | pb | rb
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* acyclic xb as executes-before
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*)
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(*********************************)
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(* Plain accesses and data races *)
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(*********************************)
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(* Warn about plain writes and marked accesses in the same region *)
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let mixed-accesses = ([Plain & W] ; (po-loc \ barrier) ; [Marked]) |
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([Marked] ; (po-loc \ barrier) ; [Plain & W])
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flag ~empty mixed-accesses as mixed-accesses
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(* Executes-before and visibility *)
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let xbstar = (hb | pb | rb)*
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let full-fence = strong-fence | (po ; rcu-fence ; po?)
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let vis = cumul-fence* ; rfe? ; [Marked] ;
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((full-fence ; [Marked] ; xbstar) | (xbstar & int))
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(* Boundaries for lifetimes of plain accesses *)
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let w-pre-bounded = [Marked] ; (addr | fence)?
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let r-pre-bounded = [Marked] ; (addr | nonrw-fence |
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([R4rmb] ; fencerel(Rmb) ; [~Noreturn]))?
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let w-post-bounded = fence? ; [Marked]
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let r-post-bounded = (nonrw-fence | ([~Noreturn] ; fencerel(Rmb) ; [R4rmb]))? ;
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[Marked]
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(* Visibility and executes-before for plain accesses *)
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let ww-vis = w-post-bounded ; vis ; w-pre-bounded
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let wr-vis = w-post-bounded ; vis ; r-pre-bounded
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let rw-xbstar = r-post-bounded ; xbstar ; w-pre-bounded
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(* Potential races *)
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let pre-race = ext & ((Plain * M) | ((M \ IW) * Plain))
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(* Coherence requirements for plain accesses *)
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let wr-incoh = pre-race & rf & rw-xbstar^-1
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let rw-incoh = pre-race & fr & wr-vis^-1
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let ww-incoh = pre-race & co & ww-vis^-1
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empty (wr-incoh | rw-incoh | ww-incoh) as plain-coherence
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(* Actual races *)
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let ww-nonrace = ww-vis & ((Marked * W) | rw-xbstar) & ((W * Marked) | wr-vis)
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let ww-race = (pre-race & co) \ ww-nonrace
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let wr-race = (pre-race & (co? ; rf)) \ wr-vis
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let rw-race = (pre-race & fr) \ rw-xbstar
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flag ~empty (ww-race | wr-race | rw-race) as data-race
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@ -24,6 +24,7 @@ smp_mb__before_atomic() { __fence{before-atomic}; }
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smp_mb__after_atomic() { __fence{after-atomic}; }
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smp_mb__after_spinlock() { __fence{after-spinlock}; }
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smp_mb__after_unlock_lock() { __fence{after-unlock-lock}; }
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barrier() { __fence{barrier}; }
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// Exchange
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xchg(X,V) __xchg{mb}(X,V)
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