-
CVE-2025-39987
- EPSS 0.08%
- Veröffentlicht 15.10.2025 07:56:05
- Zuletzt bearbeitet 15.04.2026 00:35:42
- Quelle 416baaa9-dc9f-4396-8d5f-8c081f
- CVE-Watchlists
- Unerledigt
can: hi311x: populate ndo_change_mtu() to prevent buffer overflow
In the Linux kernel, the following vulnerability has been resolved:
can: hi311x: populate ndo_change_mtu() to prevent buffer overflow
Sending an PF_PACKET allows to bypass the CAN framework logic and to
directly reach the xmit() function of a CAN driver. The only check
which is performed by the PF_PACKET framework is to make sure that
skb->len fits the interface's MTU.
Unfortunately, because the sun4i_can driver does not populate its
net_device_ops->ndo_change_mtu(), it is possible for an attacker to
configure an invalid MTU by doing, for example:
$ ip link set can0 mtu 9999
After doing so, the attacker could open a PF_PACKET socket using the
ETH_P_CANXL protocol:
socket(PF_PACKET, SOCK_RAW, htons(ETH_P_CANXL))
to inject a malicious CAN XL frames. For example:
struct canxl_frame frame = {
.flags = 0xff,
.len = 2048,
};
The CAN drivers' xmit() function are calling can_dev_dropped_skb() to
check that the skb is valid, unfortunately under above conditions, the
malicious packet is able to go through can_dev_dropped_skb() checks:
1. the skb->protocol is set to ETH_P_CANXL which is valid (the
function does not check the actual device capabilities).
2. the length is a valid CAN XL length.
And so, hi3110_hard_start_xmit() receives a CAN XL frame which it is
not able to correctly handle and will thus misinterpret it as a CAN
frame. The driver will consume frame->len as-is with no further
checks.
This can result in a buffer overflow later on in hi3110_hw_tx() on
this line:
memcpy(buf + HI3110_FIFO_EXT_DATA_OFF,
frame->data, frame->len);
Here, frame->len corresponds to the flags field of the CAN XL frame.
In our previous example, we set canxl_frame->flags to 0xff. Because
the maximum expected length is 8, a buffer overflow of 247 bytes
occurs!
Populate net_device_ops->ndo_change_mtu() to ensure that the
interface's MTU can not be set to anything bigger than CAN_MTU. By
fixing the root cause, this prevents the buffer overflow.Daten sind bereitgestellt durch das CVE Programm von einer CVE Numbering Authority (CNA) (Unstrukturiert).
HerstellerLinux
≫
Produkt
Linux
Default Statusunaffected
Version
57e83fb9b7468c75cb65cde1d23043553c346c6d
Version <
f2c247e9581024d8b3dd44cbe086bf2bebbef42c
Status
affected
Version
57e83fb9b7468c75cb65cde1d23043553c346c6d
Version <
8f351db6b2367991f0736b2cff082f5de4872113
Status
affected
Version
57e83fb9b7468c75cb65cde1d23043553c346c6d
Version <
7ab85762274c0fa997f0ef9a2307b2001aae43c4
Status
affected
Version
57e83fb9b7468c75cb65cde1d23043553c346c6d
Version <
57d332ce8c921d0e340650470bb0c1d707f216ee
Status
affected
Version
57e83fb9b7468c75cb65cde1d23043553c346c6d
Version <
be1b25005fd0f9d4e78bec6695711ef87ee33398
Status
affected
Version
57e83fb9b7468c75cb65cde1d23043553c346c6d
Version <
def814b4ba31b563584061d6895d5ff447d5bc14
Status
affected
Version
57e83fb9b7468c75cb65cde1d23043553c346c6d
Version <
e77fdf9e33a83a08f04ab0cb68c19ddb365a622f
Status
affected
Version
57e83fb9b7468c75cb65cde1d23043553c346c6d
Version <
ac1c7656fa717f29fac3ea073af63f0b9919ec9a
Status
affected
HerstellerLinux
≫
Produkt
Linux
Default Statusaffected
Version
4.12
Status
affected
Version
0
Version <
4.12
Status
unaffected
Version <=
5.4.*
Version
5.4.300
Status
unaffected
Version <=
5.10.*
Version
5.10.245
Status
unaffected
Version <=
5.15.*
Version
5.15.194
Status
unaffected
Version <=
6.1.*
Version
6.1.155
Status
unaffected
Version <=
6.6.*
Version
6.6.109
Status
unaffected
Version <=
6.12.*
Version
6.12.50
Status
unaffected
Version <=
6.16.*
Version
6.16.10
Status
unaffected
Version <=
*
Version
6.17
Status
unaffected
VulnDex Vulnerability Enrichment
| Typ | Quelle | Score | Percentile |
|---|---|---|---|
| EPSS | FIRST.org | 0.08% | 0.238 |
| Quelle | Base Score | Exploit Score | Impact Score | Vector String |
|---|