PULSE
LIVE18signals / 24h
FEED
ransomplay reclama a MIE Solutions · GB · Professional Servicesransomplay reclama a Rilpa Enterprises · Not Foundransomplay reclama a Marconi Industrial Services · IT · Manufacturingransomqilin reclama a Synergy Interactive · US · Technologyransomqilin reclama a Energetic Development Corp · TW · Energy & Utilitiesransomqilin reclama a Panda Logistics Taichung Branch · TW · Transportationransomqilin reclama a East Field Corporation · JP · Agriculture and Food Productionransomqilin reclama a Chun Tai Sing Chemical Industry · HK · Manufacturingransomqilin reclama a pm-energy Die Solarexperten · DE · Energy & Utilitiesransomunsafe reclama a Constellation HomeBuilder Systems · US · Manufacturingransomqilin reclama a Harplast SRL · RO · Manufacturingransomqilin reclama a Price Shoes · MX · Retail & E-Commerceransomqilin reclama a Naval Interior Team · FI · Government & Defenseransomqilin reclama a Phithan Phanich · TH · Manufacturingransomplay reclama a MIE Solutions · GB · Professional Servicesransomplay reclama a Rilpa Enterprises · Not Foundransomplay reclama a Marconi Industrial Services · IT · Manufacturingransomqilin reclama a Synergy Interactive · US · Technologyransomqilin reclama a Energetic Development Corp · TW · Energy & Utilitiesransomqilin reclama a Panda Logistics Taichung Branch · TW · Transportationransomqilin reclama a East Field Corporation · JP · Agriculture and Food Productionransomqilin reclama a Chun Tai Sing Chemical Industry · HK · Manufacturingransomqilin reclama a pm-energy Die Solarexperten · DE · Energy & Utilitiesransomunsafe reclama a Constellation HomeBuilder Systems · US · Manufacturingransomqilin reclama a Harplast SRL · RO · Manufacturingransomqilin reclama a Price Shoes · MX · Retail & E-Commerceransomqilin reclama a Naval Interior Team · FI · Government & Defenseransomqilin reclama a Phithan Phanich · TH · Manufacturing
← All CVEs
CVE WatchJul 30, 2026

CVE-2025-38658

In the Linux kernel, the following vulnerability has been resolved: nvmet: pci-epf: Do not complete commands twice if nvmet_req_init() fail

CVSS

8.8

High

EPSS

0.2%

p9

KEV

Exploit Today

3

0-100

Published: Aug 22, 2025 · Last modified: Jul 30, 2026 · CWE-908

EPSS · 30d
0.1%EPSS · 30 days0.2%
2026-07-122026-08-08
Technical description

In the Linux kernel, the following vulnerability has been resolved: nvmet: pci-epf: Do not complete commands twice if nvmet_req_init() fails Have nvmet_req_init() and req->execute() complete failed commands. Description of the problem: nvmet_req_init() calls __nvmet_req_complete() internally upon failure, e.g., unsupported opcode, which calls the "queue_response" callback, this results in nvmet_pci_epf_queue_response() being called, which will call nvmet_pci_epf_complete_iod() if data_len is 0 or if dma_dir is different from DMA_TO_DEVICE. This results in a double completion as nvmet_pci_epf_exec_iod_work() also calls nvmet_pci_epf_complete_iod() when nvmet_req_init() fails. Steps to reproduce: On the host send a command with an unsupported opcode with nvme-cli, For example the admin command "security receive" $ sudo nvme security-recv /dev/nvme0n1 -n1 -x4096 This triggers a double completion as nvmet_req_init() fails and nvmet_pci_epf_queue_response() is called, here iod->dma_dir is still in the default state of "DMA_NONE" as set by default in nvmet_pci_epf_alloc_iod(), so nvmet_pci_epf_complete_iod() is called. Because nvmet_req_init() failed nvmet_pci_epf_complete_iod() is also called in nvmet_pci_epf_exec_iod_work() leading to a double completion. This not only sends two completions to the host but also corrupts the state of the PCI NVMe target leading to kernel oops. This patch lets nvmet_req_init() and req->execute() complete all failed commands, and removes the double completion case in nvmet_pci_epf_exec_iod_work() therefore fixing the edge cases where double completions occurred.

Official references
Related CVEs
CVECVSSEPSSKEVRExploitTitleMod.
CVE-2026-706315.5 MED
3.3%
1FFmpeg versions from 0.5 up to, but not including, 9.0 contain an uninitialized heap memory disclosure vulnerability in the native TIFF decoder in libavcodec/tiff.c. An attacker who can cause FFmpeg to decode a crafted TIFF file can supply a valid Deflate-compressed strip that terminates successfully after producing fewer bytes than the declared strip requires. The tiff_unpack_zlib() function allocates a heap buffer sized for the full declared strip but copies all declared rows via memcpy() regardless of how many bytes zlib actually decompressed, causing unwritten bytes that can contain stale data from prior heap allocations to be incorporated into decoded image output and potentially exposing sensitive data in persistent services.2d
CVE-2026-706305.5 MED
3.2%
1FFmpeg versions from 3.0 up to, but not including, 9.0 contain an uninitialized heap memory read vulnerability in the native Screenpresso decoder (libavcodec/screenpresso.c) that allows attackers to recover sensitive memory contents by supplying a crafted SPV1 packet with a valid zlib stream that decompresses fewer bytes than the full frame requires. The screenpresso_decode_frame() function fails to validate the produced byte count before calling av_image_copy_plane() to copy the complete frame dimensions from the persistent ctx->inflated_buf buffer, causing unwritten heap memory from prior allocations or prior frames to be copied into decoded output and potentially exposing sensitive data such as userspace addresses from persistent decoding services.2d
CVE-2026-706295.5 MED
3.2%
1FFmpeg versions from 3.0 up to, but not including, 9.0 contain an uninitialized heap memory read vulnerability in the native RSCC decoder (libavcodec/rscc.c) that allows attackers to disclose heap memory contents by supplying a crafted video file with a compressed tile that decompresses fewer bytes than the declared tile geometry requires. When rscc_decode_frame() calls av_image_copy_plane() without validating the decompressed byte count against the tile dimensions, the unwritten suffix of the persistent intermediate buffer ctx->inflated_buf is copied into the decoded frame, potentially exposing data from prior heap allocations or previous decoded frames in persistent decoding services.2d
CVE-2026-687443.3 LOW
0.9%
0A flaw was found in SSSD. The sss_nss_protocol_fill_initgr() function in the NSS responder pre-allocates reply space for all group entries but does not shrink the packet when groups are skipped, causing uninitialized heap bytes to be transmitted to the client. A local attacker can exploit this to disclose cached directory data and heap layout information from the sssd_nss process.3d
CVE-2026-660386.5 MED
15.8%
5FFmpeg through 8.1.2, fixed in commit 8670835, contains an information disclosure vulnerability in the LCL/ZLIB video decoder that allows attackers to expose uninitialized heap memory by supplying a valid zlib stream that inflates to fewer bytes than the expected frame size. The zlib_decomp() function in lcldec.c treats short decompression as non-fatal and continues to the RGB24 conversion path, which copies a full frame's worth of rows from the allocation buffer using original frame dimensions, causing uninitialized heap contents including pointer-derived allocator bytes to be copied into the attacker-observable AVFrame output and potentially defeating ASLR in long-lived media processing services.3d
CVE-2026-660347.5 HIG
16.6%
5libssh2 through 1.11.1, fixed in commit a13bb6c, contains a missing bounds check vulnerability that allows a malicious SSH server to trigger an arbitrary-length heap out-of-bounds read and a free of an uninitialized pointer via the publickey subsystem. In libssh2_publickey_list_fetch(), the version 1 response parser reads a server-controlled comment_len value and advances the parse pointer without verifying sufficient bytes remain in the buffer, causing the out-of-bounds read to leak heap pointers from adjacent allocations defeating ASLR, followed by heap allocator state corruption when the error cleanup path frees an uninitialized pointer from a non-zeroed realloc() region.10d