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SCSI fixes on 20241019
Fixes all in drivers. The largest is the mpi3mr which corrects a phy count limit that should only apply to the controller but was being incorrectly applied to expander phys. Signed-off-by: James E.J. Bottomley <James.Bottomley@HansenPartnership.com> -----BEGIN PGP SIGNATURE----- iJwEABMIAEQWIQTnYEDbdso9F2cI+arnQslM7pishQUCZxQINSYcamFtZXMuYm90 dG9tbGV5QGhhbnNlbnBhcnRuZXJzaGlwLmNvbQAKCRDnQslM7pishfuiAP9+gxzU MYpyNFYmS8iwbma+wagKMr2ZxpiIAnQIukBtugD7Baqw7YjNbAPtCcQMgC96y8ac X7zeMkLTyMqkaIjOQFk= =eHKZ -----END PGP SIGNATURE----- Merge tag 'scsi-fixes' of git://git.kernel.org/pub/scm/linux/kernel/git/jejb/scsi Pull SCSI fixes from James Bottomley: "Fixes all in drivers. The largest is the mpi3mr which corrects a phy count limit that should only apply to the controller but was being incorrectly applied to expander phys" * tag 'scsi-fixes' of git://git.kernel.org/pub/scm/linux/kernel/git/jejb/scsi: scsi: target: core: Fix null-ptr-deref in target_alloc_device() scsi: mpi3mr: Validate SAS port assignments scsi: ufs: core: Set SDEV_OFFLINE when UFS is shut down scsi: ufs: core: Requeue aborted request scsi: ufs: core: Fix the issue of ICU failure
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commit
531643fcd9
@ -542,8 +542,8 @@ struct mpi3mr_hba_port {
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* @port_list: List of ports belonging to a SAS node
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* @num_phys: Number of phys associated with port
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* @marked_responding: used while refresing the sas ports
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* @lowest_phy: lowest phy ID of current sas port
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* @phy_mask: phy_mask of current sas port
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* @lowest_phy: lowest phy ID of current sas port, valid for controller port
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* @phy_mask: phy_mask of current sas port, valid for controller port
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* @hba_port: HBA port entry
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* @remote_identify: Attached device identification
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* @rphy: SAS transport layer rphy object
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@ -590,12 +590,13 @@ static enum sas_linkrate mpi3mr_convert_phy_link_rate(u8 link_rate)
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* @mrioc: Adapter instance reference
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* @mr_sas_port: Internal Port object
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* @mr_sas_phy: Internal Phy object
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* @host_node: Flag to indicate this is a host_node
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*
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* Return: None.
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*/
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static void mpi3mr_delete_sas_phy(struct mpi3mr_ioc *mrioc,
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struct mpi3mr_sas_port *mr_sas_port,
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struct mpi3mr_sas_phy *mr_sas_phy)
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struct mpi3mr_sas_phy *mr_sas_phy, u8 host_node)
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{
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u64 sas_address = mr_sas_port->remote_identify.sas_address;
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@ -605,9 +606,13 @@ static void mpi3mr_delete_sas_phy(struct mpi3mr_ioc *mrioc,
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list_del(&mr_sas_phy->port_siblings);
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mr_sas_port->num_phys--;
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mr_sas_port->phy_mask &= ~(1 << mr_sas_phy->phy_id);
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if (mr_sas_port->lowest_phy == mr_sas_phy->phy_id)
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mr_sas_port->lowest_phy = ffs(mr_sas_port->phy_mask) - 1;
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if (host_node) {
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mr_sas_port->phy_mask &= ~(1 << mr_sas_phy->phy_id);
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if (mr_sas_port->lowest_phy == mr_sas_phy->phy_id)
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mr_sas_port->lowest_phy = ffs(mr_sas_port->phy_mask) - 1;
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}
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sas_port_delete_phy(mr_sas_port->port, mr_sas_phy->phy);
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mr_sas_phy->phy_belongs_to_port = 0;
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}
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@ -617,12 +622,13 @@ static void mpi3mr_delete_sas_phy(struct mpi3mr_ioc *mrioc,
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* @mrioc: Adapter instance reference
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* @mr_sas_port: Internal Port object
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* @mr_sas_phy: Internal Phy object
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* @host_node: Flag to indicate this is a host_node
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*
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* Return: None.
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*/
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static void mpi3mr_add_sas_phy(struct mpi3mr_ioc *mrioc,
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struct mpi3mr_sas_port *mr_sas_port,
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struct mpi3mr_sas_phy *mr_sas_phy)
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struct mpi3mr_sas_phy *mr_sas_phy, u8 host_node)
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{
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u64 sas_address = mr_sas_port->remote_identify.sas_address;
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@ -632,9 +638,12 @@ static void mpi3mr_add_sas_phy(struct mpi3mr_ioc *mrioc,
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list_add_tail(&mr_sas_phy->port_siblings, &mr_sas_port->phy_list);
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mr_sas_port->num_phys++;
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mr_sas_port->phy_mask |= (1 << mr_sas_phy->phy_id);
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if (mr_sas_phy->phy_id < mr_sas_port->lowest_phy)
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mr_sas_port->lowest_phy = ffs(mr_sas_port->phy_mask) - 1;
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if (host_node) {
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mr_sas_port->phy_mask |= (1 << mr_sas_phy->phy_id);
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if (mr_sas_phy->phy_id < mr_sas_port->lowest_phy)
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mr_sas_port->lowest_phy = ffs(mr_sas_port->phy_mask) - 1;
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}
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sas_port_add_phy(mr_sas_port->port, mr_sas_phy->phy);
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mr_sas_phy->phy_belongs_to_port = 1;
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}
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@ -675,7 +684,7 @@ static void mpi3mr_add_phy_to_an_existing_port(struct mpi3mr_ioc *mrioc,
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if (srch_phy == mr_sas_phy)
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return;
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}
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mpi3mr_add_sas_phy(mrioc, mr_sas_port, mr_sas_phy);
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mpi3mr_add_sas_phy(mrioc, mr_sas_port, mr_sas_phy, mr_sas_node->host_node);
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return;
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}
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}
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@ -736,7 +745,7 @@ static void mpi3mr_del_phy_from_an_existing_port(struct mpi3mr_ioc *mrioc,
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mpi3mr_delete_sas_port(mrioc, mr_sas_port);
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else
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mpi3mr_delete_sas_phy(mrioc, mr_sas_port,
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mr_sas_phy);
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mr_sas_phy, mr_sas_node->host_node);
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return;
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}
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}
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@ -1028,7 +1037,7 @@ mpi3mr_alloc_hba_port(struct mpi3mr_ioc *mrioc, u16 port_id)
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/**
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* mpi3mr_get_hba_port_by_id - find hba port by id
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* @mrioc: Adapter instance reference
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* @port_id - Port ID to search
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* @port_id: Port ID to search
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*
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* Return: mpi3mr_hba_port reference for the matched port
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*/
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@ -1367,7 +1376,8 @@ static struct mpi3mr_sas_port *mpi3mr_sas_port_add(struct mpi3mr_ioc *mrioc,
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mpi3mr_sas_port_sanity_check(mrioc, mr_sas_node,
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mr_sas_port->remote_identify.sas_address, hba_port);
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if (mr_sas_node->num_phys >= sizeof(mr_sas_port->phy_mask) * 8)
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if (mr_sas_node->host_node && mr_sas_node->num_phys >=
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sizeof(mr_sas_port->phy_mask) * 8)
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ioc_info(mrioc, "max port count %u could be too high\n",
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mr_sas_node->num_phys);
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@ -1377,7 +1387,7 @@ static struct mpi3mr_sas_port *mpi3mr_sas_port_add(struct mpi3mr_ioc *mrioc,
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(mr_sas_node->phy[i].hba_port != hba_port))
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continue;
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if (i >= sizeof(mr_sas_port->phy_mask) * 8) {
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if (mr_sas_node->host_node && (i >= sizeof(mr_sas_port->phy_mask) * 8)) {
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ioc_warn(mrioc, "skipping port %u, max allowed value is %zu\n",
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i, sizeof(mr_sas_port->phy_mask) * 8);
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goto out_fail;
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@ -1385,7 +1395,8 @@ static struct mpi3mr_sas_port *mpi3mr_sas_port_add(struct mpi3mr_ioc *mrioc,
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list_add_tail(&mr_sas_node->phy[i].port_siblings,
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&mr_sas_port->phy_list);
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mr_sas_port->num_phys++;
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mr_sas_port->phy_mask |= (1 << i);
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if (mr_sas_node->host_node)
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mr_sas_port->phy_mask |= (1 << i);
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}
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if (!mr_sas_port->num_phys) {
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@ -1394,7 +1405,8 @@ static struct mpi3mr_sas_port *mpi3mr_sas_port_add(struct mpi3mr_ioc *mrioc,
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goto out_fail;
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}
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mr_sas_port->lowest_phy = ffs(mr_sas_port->phy_mask) - 1;
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if (mr_sas_node->host_node)
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mr_sas_port->lowest_phy = ffs(mr_sas_port->phy_mask) - 1;
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if (mr_sas_port->remote_identify.device_type == SAS_END_DEVICE) {
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tgtdev = mpi3mr_get_tgtdev_by_addr(mrioc,
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@ -691,7 +691,7 @@ struct se_device *target_alloc_device(struct se_hba *hba, const char *name)
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dev->queues = kcalloc(nr_cpu_ids, sizeof(*dev->queues), GFP_KERNEL);
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if (!dev->queues) {
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dev->transport->free_device(dev);
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hba->backend->ops->free_device(dev);
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return NULL;
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}
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@ -539,7 +539,7 @@ int ufshcd_mcq_sq_cleanup(struct ufs_hba *hba, int task_tag)
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struct scsi_cmnd *cmd = lrbp->cmd;
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struct ufs_hw_queue *hwq;
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void __iomem *reg, *opr_sqd_base;
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u32 nexus, id, val;
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u32 nexus, id, val, rtc;
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int err;
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if (hba->quirks & UFSHCD_QUIRK_MCQ_BROKEN_RTC)
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@ -569,17 +569,18 @@ int ufshcd_mcq_sq_cleanup(struct ufs_hba *hba, int task_tag)
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opr_sqd_base = mcq_opr_base(hba, OPR_SQD, id);
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writel(nexus, opr_sqd_base + REG_SQCTI);
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/* SQRTCy.ICU = 1 */
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writel(SQ_ICU, opr_sqd_base + REG_SQRTC);
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/* Initiate Cleanup */
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writel(readl(opr_sqd_base + REG_SQRTC) | SQ_ICU,
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opr_sqd_base + REG_SQRTC);
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/* Poll SQRTSy.CUS = 1. Return result from SQRTSy.RTC */
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reg = opr_sqd_base + REG_SQRTS;
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err = read_poll_timeout(readl, val, val & SQ_CUS, 20,
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MCQ_POLL_US, false, reg);
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if (err)
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dev_err(hba->dev, "%s: failed. hwq=%d, tag=%d err=%ld\n",
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__func__, id, task_tag,
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FIELD_GET(SQ_ICU_ERR_CODE_MASK, readl(reg)));
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rtc = FIELD_GET(SQ_ICU_ERR_CODE_MASK, readl(reg));
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if (err || rtc)
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dev_err(hba->dev, "%s: failed. hwq=%d, tag=%d err=%d RTC=%d\n",
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__func__, id, task_tag, err, rtc);
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if (ufshcd_mcq_sq_start(hba, hwq))
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err = -ETIMEDOUT;
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@ -5416,10 +5416,12 @@ ufshcd_transfer_rsp_status(struct ufs_hba *hba, struct ufshcd_lrb *lrbp,
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}
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break;
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case OCS_ABORTED:
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result |= DID_ABORT << 16;
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break;
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case OCS_INVALID_COMMAND_STATUS:
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result |= DID_REQUEUE << 16;
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dev_warn(hba->dev,
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"OCS %s from controller for tag %d\n",
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(ocs == OCS_ABORTED ? "aborted" : "invalid"),
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lrbp->task_tag);
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break;
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case OCS_INVALID_CMD_TABLE_ATTR:
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case OCS_INVALID_PRDT_ATTR:
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@ -6465,26 +6467,12 @@ static bool ufshcd_abort_one(struct request *rq, void *priv)
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struct scsi_device *sdev = cmd->device;
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struct Scsi_Host *shost = sdev->host;
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struct ufs_hba *hba = shost_priv(shost);
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struct ufshcd_lrb *lrbp = &hba->lrb[tag];
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struct ufs_hw_queue *hwq;
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unsigned long flags;
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*ret = ufshcd_try_to_abort_task(hba, tag);
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dev_err(hba->dev, "Aborting tag %d / CDB %#02x %s\n", tag,
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hba->lrb[tag].cmd ? hba->lrb[tag].cmd->cmnd[0] : -1,
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*ret ? "failed" : "succeeded");
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/* Release cmd in MCQ mode if abort succeeds */
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if (hba->mcq_enabled && (*ret == 0)) {
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hwq = ufshcd_mcq_req_to_hwq(hba, scsi_cmd_to_rq(lrbp->cmd));
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if (!hwq)
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return 0;
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spin_lock_irqsave(&hwq->cq_lock, flags);
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if (ufshcd_cmd_inflight(lrbp->cmd))
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ufshcd_release_scsi_cmd(hba, lrbp);
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spin_unlock_irqrestore(&hwq->cq_lock, flags);
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}
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return *ret == 0;
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}
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@ -10209,7 +10197,9 @@ static void ufshcd_wl_shutdown(struct device *dev)
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shost_for_each_device(sdev, hba->host) {
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if (sdev == hba->ufs_device_wlun)
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continue;
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scsi_device_quiesce(sdev);
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mutex_lock(&sdev->state_mutex);
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scsi_device_set_state(sdev, SDEV_OFFLINE);
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mutex_unlock(&sdev->state_mutex);
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}
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__ufshcd_wl_suspend(hba, UFS_SHUTDOWN_PM);
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