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Linux EUVDEUVD-2026-45733

| CVE-2026-63960
2026-07-19 Linux GHSA-5mqj-jpm9-chwp

Lifecycle Timeline

2
Patch available
Jul 19, 2026 - 17:19 EUVD
CVE Published
Jul 19, 2026 - 14:55 cve.org
UNKNOWN (no severity yet)

DescriptionCVE.org

In the Linux kernel, the following vulnerability has been resolved:

usb: typec: wcove: don't write past struct pd_message in wcove_read_rx_buffer()

wcove_read_rx_buffer() copies the PD RX FIFO into the caller's struct pd_message with

for (i = 0; i < USBC_RXINFO_RXBYTES(info); i++) regmap_read(wcove->regmap, USBC_RX_DATA + i, msg + i);

which has two problems:

USBC_RXINFO_RXBYTES() is a 5-bit field (max 31) while struct pd_message is 30 bytes (__le16 header + __le32 payload[PD_MAX_PAYLOAD], packed). The byte count latched in RXINFO is the number of bytes the port partner put on the wire, so a malicious partner that transmits a 31-byte frame can drive the loop one byte past the destination if the WCOVE BMC receiver does not enforce the PD object-count limit in hardware. The existing FIXME flagged this as unverified.

Independently, regmap_read() takes an unsigned int * and stores a full unsigned int at the destination. Passing the byte pointer msg + i means each iteration writes four bytes; the high three are zero (val_bits is

  1. and are normally overwritten by the next iteration, but the final

iteration's high bytes are not. With RXBYTES 30 the i 29 iteration already writes three zero bytes past msg, which sits on the IRQ thread's stack in wcove_typec_irq().

Clamp the loop to sizeof(struct pd_message) and read each register into a local before storing only its low byte, so the copy can never exceed the destination regardless of what RXINFO reports.

Analysis

In the Linux kernel, the following vulnerability has been resolved:

usb: typec: wcove: don't write past struct pd_message in wcove_read_rx_buffer()

wcove_read_rx_buffer() copies the PD RX FIFO into the caller's struct pd_message with

for (i = 0; i < USBC_RXINFO_RXBYTES(info); i++) regmap_read(wcove->regmap, USBC_RX_DATA + i, msg + i);

which has two problems:

USBC_RXINFO_RXBYTES() is a 5-bit field (max 31) while struct pd_message is 30 bytes (__le16 header + __le32 payload[PD_MAX_PAYLOAD], packed). The byte count latched in RXINFO is the number of bytes the port partner put on the wire, so a malicious partner that transmits a 31-byte frame can drive the loop one byte past the destination if the WCOVE BMC receiver does not enforce the PD object-count limit in hardware. The existing FIXME flagged this as unverified.

Independently, regmap_read() takes an unsigned int * and stores a full unsigned int at the destination. Passing the byte pointer msg + i means each iteration writes four bytes; the high three are zero (val_bits is

  1. and are normally overwritten by the next iteration, but the final

iteration's high bytes are not. With RXBYTES 30 the i 29 iteration already writes three zero bytes past msg, which sits on the IRQ thread's stack in wcove_typec_irq().

Clamp the loop to sizeof(struct pd_message) and read each register into a local before storing only its low byte, so the copy can never exceed the destination regardless of what RXINFO reports.

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EUVD-2026-45733 vulnerability details – vuln.today

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