{"apiVersion":"1.0","identifier":"CVE-2026-74555","description":"In the Linux kernel, the following vulnerability has been resolved: scsi: libsas: Fix HA resume deadlock and hisi_sas disk-wake race Commit fbefe22811c3 (-scsi: libsas: Don-t always drain event workqueue for HA resume-) introduced sas_resume_ha_no_sync() to avoid a deadlock: the PHYE_RESUME_TIMEOUT handler, running on the HA event workqueue, calls sas_deform_port() -> sas_destruct_devices(), which removes SCSI devices and waits for the host to become runtime-active. But the host cannot resume until sas_resume_ha() -> sas_drain_work() returns, and the drain is blocked on that very handler. However skipping the drain reintroduces a race: hisi_sas returns from resume before all PHY UP work and libsas discovery work finish. The controller may then autosuspend while disks are still waking up. The disks issue IO to a suspended controller, the IO fails, and the disks get disabled. Fix the deadlock at its source by moving the PHYE_RESUME_TIMEOUT notification to after sas_drain_work(). By then the host resume is about to complete, so device removal through device_link no longer blocks on the resume and the cycle is broken. With the deadlock gone, restore sas_resume_ha() (the draining variant) in hisi_sas and remove sas_resume_ha_no_sync(). The reorder is safe for the other libsas consumers (isci, pm8001, aic94xx, mvsas). During suspend, sas_suspend_devices() calls sas_notify_lldd_dev_gone() for each device, which sets dev->lldd_dev to NULL. When scsi_unblock_requests re-enables I/O in resume, any I/O to a timed-out phy-s disk is immediately rejected by the LLDD before reaching hardware: isci returns SAS_DEVICE_UNKNOWN (mapped to DID_BAD_TARGET), and pm8001 returns SAS_PHY_DOWN (mapped to DID_NO_CONNECT). Both complete directly via scsi_done() without entering SCSI EH. This is identical in both the old and new ordering since lldd_dev_gone runs during suspend, before resume. The reorder only affects when the PHYE_RESUME_TIMEOUT handler runs (synchronized by sas_drain_work() vs. asynchronous after resume returns), not whether I/O can reach the device. aic94xx and mvsas do not register any PM ops and never reach this code path.","publishedAt":"2026-08-15T13:18:00","lastModifiedAt":"2026-08-19T17:21:10","sourceUrl":"https://nvd.nist.gov/vuln/detail/CVE-2026-74555","cvssScore":null,"cvssVector":"Pending","epssProbability":0.00161,"riskScore":0,"affectedProduct":"linux","affectedVersions":"unknown","vulnerabilityType":"Kernel","operatingSystems":[],"links":{"self":"https://www.redsauce.net/api/cves/CVE-2026-74555","webPages":{"es":"https://www.redsauce.net/es/cves/CVE-2026-74555","en":"https://www.redsauce.net/en/cves/CVE-2026-74555","fr":"https://www.redsauce.net/fr/cves/CVE-2026-74555","pt":"https://www.redsauce.net/pt/cves/CVE-2026-74555","de":"https://www.redsauce.net/de/cves/CVE-2026-74555","sk":"https://www.redsauce.net/sk/cves/CVE-2026-74555","el":"https://www.redsauce.net/el/cves/CVE-2026-74555"},"source":"https://nvd.nist.gov/vuln/detail/CVE-2026-74555"}}