CVE-2026-19739
Received Received - Intake

Bluetooth Controller Memory Leak via LL Control PDU

Vulnerability report for CVE-2026-19739, including description, CVSS score, EPSS score, affected products, exploitability, helpful resources, and attack-flow context.

Publication date: 2026-10-11

Last updated on: 2026-10-11

Assigner: Zephyr Project

Description

The Bluetooth Link Layer control procedure code in subsys/bluetooth/controller/ll_sw/ull_llcp_conn_upd.c retains the received RX node while a Connection Update / Connection Parameter procedure waits for its instant, so the node can later carry the host notification (llcp_rx_node_retain(), which marks it NODE_RX_TYPE_RETAIN and thereby suppresses the normal recycling in ull.c). The default: arm of llcp_rp_cu_rx() and llcp_lp_cu_rx() β€” the "invalid PDU, terminate the connection" path β€” completed the procedure without releasing that retained node. llcp_rr_check_done() then dequeued and freed the procedure context with ctx->node_ref.rx still pointing at the retained node, dropping the last reference to it. A peer device in radio range can reach this without pairing, bonding, or encryption. Against a peripheral, the peer sends a well-formed LL_CONNECTION_UPDATE_IND with an instant a few connection events in the future (the node is retained and the procedure enters RP_CU_STATE_WAIT_INSTANT), then, before the instant is reached, sends any other LL Control PDU such as LL_LENGTH_REQ. ull_cp_rx() routes that PDU into the active remote Connection Update procedure, which takes the invalid-PDU path. The central role is reachable symmetrically after accepting an LL_CONNECTION_PARAM_REQ, and the local-procedure variant is reachable with LL_REJECT_IND. With CONFIG_BT_CTLR_ASSERT_DEBUG enabled (its default), the resulting state violates the invariant asserted in llcp_rr_check_done(), so the two-PDU sequence produces an immediate fatal error in the controller. With those asserts disabled, each occurrence permanently loses one node from the controller's small fixed RX pool (sized from CONFIG_BT_CTLR_RX_BUFFERS, which defaults to 1); repeating the sequence across reconnections exhausts the pool, after which the link-layer receive path operates on a NULL node. The impact is an unauthenticated, remotely triggerable denial of service persisting until reboot; there is no memory-disclosure or memory-corruption consequence, since the leaked node simply becomes unreachable.

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Meta Information

Published
2026-10-11
Last Modified
2026-10-11
Generated
2026-10-12
AI Q&A
2026-10-11
EPSS Evaluated
N/A
NVD
EUVD

Affected Vendors & Products

Showing 1 associated CPE
Vendor Product Version / Range
zephyrproject zephyr 3.4.0

Helpful Resources

Exploitability

CWE
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KEV
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CWE ID Description
CWE-617 The product contains an assert() or similar statement that can be triggered by an attacker, which leads to an application exit or other behavior that is more severe than necessary.
CWE-459 The product does not properly "clean up" and remove temporary or supporting resources after they have been used.
CWE-772 The product does not release a resource after its effective lifetime has ended, i.e., after the resource is no longer needed.
CWE-401 The product does not sufficiently track and release allocated memory after it has been used, making the memory unavailable for reallocation and reuse.

Attack-Flow Graph

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Executive Summary

This vulnerability is a memory leak in the Zephyr RTOS Bluetooth controller where an RX node is retained during a Connection Update procedure but not released when an unexpected LL Control PDU arrives. This causes either a fatal error in assert-enabled builds or permanent memory exhaustion in the RX pool, leading to a denial of service.

Detection Guidance

This vulnerability is specific to Zephyr RTOS Bluetooth controller versions 3.4.0 to 4.4.2. Detection requires checking the Zephyr RTOS version in use. If using affected versions, monitor for Bluetooth controller crashes or link-layer failures during Connection Update procedures. No direct network commands detect this, but system logs may show controller assertion failures or fatal errors.

Impact Analysis

An unauthenticated attacker within radio range can remotely trigger this flaw to cause a denial of service by exhausting the controller's RX node pool, disrupting Bluetooth communication until a reboot. No memory corruption or disclosure occurs.

Compliance Impact

This vulnerability primarily causes a denial of service in Bluetooth LE controllers by exhausting RX node memory, leading to system crashes. It does not directly affect data confidentiality or integrity, so it may not directly violate GDPR or HIPAA requirements. However, persistent denial of service could impact availability of Bluetooth-dependent systems, potentially affecting compliance with availability requirements in these regulations.

Mitigation Strategies

Upgrade Zephyr RTOS to a version containing the fix (commit 7b600129faaba8bb26dd5cb3e8f17ed1cb41ea7f or later). If upgrading is not immediately possible, disable Bluetooth functionality or restrict Bluetooth usage to trusted environments until patched.

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