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CVE-2026-13480LOW· 3.1MITRENVD대응게시일: 2026. 08. 26.수정일: 2026. 08. 31.CNA: vulnerabilities@zephyrproject.orgAnalyzed

The LoRaWAN TS004 Fragmented Data Block Transport handler frag_transport_package_callback() in subsys/lorawan/services/frag_transport.c pars

Memory-Corruption

위협 신호 · CVSS · EPSS · KEV

정기 패치· 높은 악용 신호 없음
CVSS
3.1low

이론적 심각도 점수

EPSS
0.2%상위 93.8%

30일 내 악용 확률 예측

KEV
미등재

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권장 대응 기한60일 이내CISA SSVC 기준

계획된 패치 주기 내 조치(60일 이내)

외부 노출· KEV 미등재 · 자동화 어려움 · 부분 영향 · 외부 노출

CVSS 벡터 · 메트릭

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공격 복잡도높음
필요 권한높음
사용자 상호작용불필요
범위불변
영향
기밀성 영향낮음
무결성 영향없음
가용성 영향낮음
버전별 점수
CVSS 3.13.1LOW· 악용성 0.5· 영향도 2.5
CVSS:3.1/AV:A/AC:H/PR:H/UI:N/S:U/C:L/I:N/A:L

약점 (CWE)

  • CWE-20

    부적절한 입력 검증 — 입력값 검증 부족으로 다양한 후속 공격에 노출.

  • CWE-125

    경계 밖 읽기 — 버퍼 범위를 벗어난 메모리를 읽어 민감 정보 유출·충돌 유발.

상세 설명

The LoRaWAN TS004 Fragmented Data Block Transport handler frag_transport_package_callback() in subsys/lorawan/services/frag_transport.c parses downlink command bytes without validating that enough payload bytes remain before each access. The loop's only bound is rx_pos < len; after consuming the one-byte command id the handler cast rx_buf + rx_pos to a 10-byte struct frag_transport_setup_req, and for a DATA_FRAGMENT command passed &rx_buf[rx_pos] to the fragment decoder, which reads exactly ctx.frag_size bytes — with no remaining-length check in either case.

The fragment size is attacker-chosen in a preceding FRAG_SESSION_SETUP command (ctx.frag_size = req->frag_size, capped at CONFIG_LORAWAN_FRAG_TRANSPORT_MAX_FRAG_SIZE, default 232). rx_buf aliases the 255-byte static MacCtx.RxPayload buffer in the loramac-node MAC layer, while len is the actual decrypted payload length. By padding a downlink with mismatched-index DATA_FRAGMENT filler commands (each advancing rx_pos by three bytes without producing an answer) and appending one matching-index fragment near the end of the payload, an attacker can make the decoder read up to roughly frag_size bytes past the end of RxPayload, copying adjacent static memory into the decoder buffers and the FUOTA flash image.

The handler runs only on downlinks that have already passed the LoRaWAN frame MIC and FRMPayload decryption, so the defect is reachable only by a party holding the device's session keys (the FUOTA server or an attacker who has compromised those keys). The out-of-bounds bytes are never returned to the sender — the only uplink emitted is a status answer carrying fragment counts — so there is no direct disclosure channel, and on typical flat-memory LoRaWAN MCUs the over-read stays within mapped memory, making a crash unlikely. The impact is therefore a bounded out-of-bounds read with limited confidentiality consequence and no write or control-flow primitive. The fix adds remaining-length guards before each access.

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영향받는 제품·버전

  • zephyrproject zephyr3.7.0 - 4.4.2
    other

영향받는 구성 (CPE) 1

  • zephyrproject zephyr≥ 3.7.0 < 4.4.2cpe:2.3:o:zephyrproject:zephyr:*:*:*:*:*:*:*:*