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CVE

DEBIAN-CVE-2026-72473

In the Linux kernel, the following vulnerability has been resolved: xprtrdma: Decouple req recycling from RPC completion rl_kref formerly served two distinct lifetimes through a single refcount: it ...
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CVE

DEBIAN-CVE-2026-72473

In the Linux kernel, the following vulnerability has been resolved: xprtrdma: Decouple req recycling from RPC completion rl_kref formerly served two distinct lifetimes through a single refcount: it ...

In the Linux kernel, the following vulnerability has been resolved:  xprtrdma: Decouple req recycling from RPC completion  rlkref formerly served two distinct lifetimes through a single refcount: it gated when a Reply could wake its RPC task, and it gated when an rpcrdmareq could return to its free pool. The marshal path took the Send-side reference only when SGEs needed DMA-unmap (scunmapcount > 0), which made a Send carrying only pre-registered buffers an exception: the Reply handler dropped rlkref from 1 to 0 and freed the req while the HCA might still be DMA-reading from its send buffer.  Give rlkref a narrower job. The RPC layer takes one reference when slot allocation hands a req out. rpcrdmapreparesendsges() takes a Send-side reference unconditionally after WR preparation succeeds. xprtrdmafreeslot() and xprtrdmabcfreerqst() drop the RPC-layer reference; rpcrdmasendctxunmap() drops the Send-side reference. The req returns to its free pool only after both owners have signed off.  The existing krefinit(&req->rlkref) call in rpcrdmapreparesendsges() is removed. Initialization moves to the slot-allocation paths (xprtrdmaallocslot and rpcrdmabcrqstget), and the release callback re-arms rlkref before the req returns to a free pool. A re-init in the marshal path would discard the RPC-layer reference that already exists on entry.  Three invariants follow:    - Any rpcrdmareq held by an rpcrqst has rlkref >= 1.     xprtrdmaallocslot(), rpcrdmabcrqstget(), and the     backlog-wake branch in xprtrdmaallocslot() each krefinit     rlkref before publishing the req. Without this invariant,     an RPC task that aborts between slot allocation and marshal     (gssrefresh failure or signal during callconnect, for     example) would drive xprtrelease() ->     xprtrdmafreeslot() -> krefput against a refcount of     zero, saturating refcountt and stranding the slot.    - The Send-side reference is taken only after WR prep     succeeds. A mapping failure in rpcrdmapreparesendsges()     runs rpcrdmasendctxcancel(), which DMA-unmaps the sendctx     and clears screq without touching rlkref. The sendctx     ring walks in rpcrdmasendctxputlocked() and     rpcrdmasendctxsdestroy() skip entries with screq == NULL,     so a burst of -EIO marshal failures cannot hold reqs off     rbsendbufs.    - The release callback re-arms rlkref so the next consumer     enters with the invariant satisfied.  Replies now complete the RPC directly. rpcrdmareplyhandler() calls rpcrdmacompleterqst() in place of krefput on the non-LocalInv branch. The LocalInv branch already completes the RPC from frwrunmapasync() and is unaffected.  Because Send-side references can now outlive RPC completion, connection teardown drains sendctx entries whose unsignaled Sends never had a later signaled completion to walk the ring. rpcrdmasendctxsdestroy() walks the active range and runs rpcrdmasendctxunmap() on each entry with a non-NULL screq before the request buffers are reset, and is moved ahead of rpcrdmareqsreset() in rpcrdmaxprtdisconnect() so the reqs are still in their pre-reset state when the Send-side refs are released.  The drain creates a teardown-ordering hazard on the backchannel path. With the new lifetime, releasing a bcprealloc req from rpcrdmareqrelease() re-adds it to bcpalist. The disconnect in xprtrdmadestroy() runs after xprtdestroybackchannel() has already emptied bcpalist, so the drained reqs would otherwise leak. xprtrdmadestroy() now runs xprtrdmabcdestroy(xprt, 0) a second time after the disconnect to reclaim them.

Package Versions Affected

Package Version
patch Availability
No items found.

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CVSS Version

Severity
Base Score
CVSS Version
Score Vector
C
H
U
-
C
H
U
0
-
3.1
CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
C
H
U
-

Related Resources

No items found.

References

https://security-tracker.debian.org/tracker/CVE-2026-72473

Severity

9.8

CVSS Score
0
10

Basic Information

Base CVSS
9.8
EPSS Probability
0%
EPSS Percentile
0%
Introduced Version
0
Fix Available
6.1.180-1,6.12.100-1,7.1.5-1

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