mirror of https://gitee.com/openkylin/linux.git
scsi: cxlflash: Handle AFU sync failures
AFU sync operations are not currently evaluated for failure. This is acceptable for paths where there is not a dependency on the AFU being consistent with the host. Examples include link reset events and LUN cleanup operations. On paths where there is a dependency, such as a LUN open, a sync failure should be acted upon. In the event of AFU sync failures, either log or cleanup as appropriate for operations that are dependent on a successful sync completion. Update documentation to reflect behavior in the event of an AFU sync failure. Signed-off-by: Uma Krishnan <ukrishn@linux.vnet.ibm.com> Acked-by: Matthew R. Ochs <mrochs@linux.vnet.ibm.com> Signed-off-by: Martin K. Petersen <martin.petersen@oracle.com>
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@ -257,6 +257,12 @@ DK_CXLFLASH_VLUN_RESIZE
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operating in the virtual mode and used to program a LUN translation
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table that the AFU references when provided with a resource handle.
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This ioctl can return -EAGAIN if an AFU sync operation takes too long.
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In addition to returning a failure to user, cxlflash will also schedule
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an asynchronous AFU reset. Should the user choose to retry the operation,
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it is expected to succeed. If this ioctl fails with -EAGAIN, the user
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can either retry the operation or treat it as a failure.
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DK_CXLFLASH_RELEASE
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-------------------
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This ioctl is responsible for releasing a previously obtained
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@ -309,6 +315,12 @@ DK_CXLFLASH_VLUN_CLONE
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clone. This is to avoid a stale entry in the file descriptor table of the
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child process.
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This ioctl can return -EAGAIN if an AFU sync operation takes too long.
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In addition to returning a failure to user, cxlflash will also schedule
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an asynchronous AFU reset. Should the user choose to retry the operation,
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it is expected to succeed. If this ioctl fails with -EAGAIN, the user
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can either retry the operation or treat it as a failure.
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DK_CXLFLASH_VERIFY
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------------------
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This ioctl is used to detect various changes such as the capacity of
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@ -56,6 +56,19 @@ static void marshal_det_to_rele(struct dk_cxlflash_detach *detach,
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release->context_id = detach->context_id;
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}
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/**
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* marshal_udir_to_rele() - translate udirect to release structure
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* @udirect: Source structure from which to translate/copy.
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* @release: Destination structure for the translate/copy.
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*/
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static void marshal_udir_to_rele(struct dk_cxlflash_udirect *udirect,
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struct dk_cxlflash_release *release)
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{
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release->hdr = udirect->hdr;
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release->context_id = udirect->context_id;
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release->rsrc_handle = udirect->rsrc_handle;
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}
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/**
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* cxlflash_free_errpage() - frees resources associated with global error page
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*/
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@ -622,6 +635,7 @@ int _cxlflash_disk_release(struct scsi_device *sdev,
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res_hndl_t rhndl = release->rsrc_handle;
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int rc = 0;
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int rcr = 0;
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u64 ctxid = DECODE_CTXID(release->context_id),
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rctxid = release->context_id;
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@ -686,8 +700,12 @@ int _cxlflash_disk_release(struct scsi_device *sdev,
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rhte_f1->dw = 0;
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dma_wmb(); /* Make RHT entry bottom-half clearing visible */
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if (!ctxi->err_recovery_active)
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cxlflash_afu_sync(afu, ctxid, rhndl, AFU_HW_SYNC);
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if (!ctxi->err_recovery_active) {
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rcr = cxlflash_afu_sync(afu, ctxid, rhndl, AFU_HW_SYNC);
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if (unlikely(rcr))
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dev_dbg(dev, "%s: AFU sync failed rc=%d\n",
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__func__, rcr);
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}
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break;
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default:
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WARN(1, "Unsupported LUN mode!");
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@ -1929,6 +1947,7 @@ static int cxlflash_disk_direct_open(struct scsi_device *sdev, void *arg)
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struct afu *afu = cfg->afu;
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struct llun_info *lli = sdev->hostdata;
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struct glun_info *gli = lli->parent;
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struct dk_cxlflash_release rel = { { 0 }, 0 };
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struct dk_cxlflash_udirect *pphys = (struct dk_cxlflash_udirect *)arg;
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@ -1970,13 +1989,18 @@ static int cxlflash_disk_direct_open(struct scsi_device *sdev, void *arg)
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rsrc_handle = (rhte - ctxi->rht_start);
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rht_format1(rhte, lli->lun_id[sdev->channel], ctxi->rht_perms, port);
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cxlflash_afu_sync(afu, ctxid, rsrc_handle, AFU_LW_SYNC);
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last_lba = gli->max_lba;
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pphys->hdr.return_flags = 0;
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pphys->last_lba = last_lba;
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pphys->rsrc_handle = rsrc_handle;
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rc = cxlflash_afu_sync(afu, ctxid, rsrc_handle, AFU_LW_SYNC);
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if (unlikely(rc)) {
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dev_dbg(dev, "%s: AFU sync failed rc=%d\n", __func__, rc);
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goto err2;
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}
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out:
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if (likely(ctxi))
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put_context(ctxi);
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@ -1984,6 +2008,10 @@ static int cxlflash_disk_direct_open(struct scsi_device *sdev, void *arg)
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__func__, rsrc_handle, rc, last_lba);
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return rc;
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err2:
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marshal_udir_to_rele(pphys, &rel);
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_cxlflash_disk_release(sdev, ctxi, &rel);
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goto out;
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err1:
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cxlflash_lun_detach(gli);
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goto out;
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@ -594,7 +594,9 @@ static int grow_lxt(struct afu *afu,
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rhte->lxt_cnt = my_new_size;
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dma_wmb(); /* Make RHT entry's LXT table size update visible */
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cxlflash_afu_sync(afu, ctxid, rhndl, AFU_LW_SYNC);
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rc = cxlflash_afu_sync(afu, ctxid, rhndl, AFU_LW_SYNC);
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if (unlikely(rc))
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rc = -EAGAIN;
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/* free old lxt if reallocated */
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if (lxt != lxt_old)
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@ -673,8 +675,11 @@ static int shrink_lxt(struct afu *afu,
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rhte->lxt_start = lxt;
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dma_wmb(); /* Make RHT entry's LXT table update visible */
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if (needs_sync)
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cxlflash_afu_sync(afu, ctxid, rhndl, AFU_HW_SYNC);
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if (needs_sync) {
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rc = cxlflash_afu_sync(afu, ctxid, rhndl, AFU_HW_SYNC);
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if (unlikely(rc))
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rc = -EAGAIN;
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}
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if (needs_ws) {
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/*
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@ -792,6 +797,21 @@ int _cxlflash_vlun_resize(struct scsi_device *sdev,
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rc = grow_lxt(afu, sdev, ctxid, rhndl, rhte, &new_size);
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else if (new_size < rhte->lxt_cnt)
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rc = shrink_lxt(afu, sdev, rhndl, rhte, ctxi, &new_size);
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else {
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/*
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* Rare case where there is already sufficient space, just
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* need to perform a translation sync with the AFU. This
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* scenario likely follows a previous sync failure during
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* a resize operation. Accordingly, perform the heavyweight
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* form of translation sync as it is unknown which type of
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* resize failed previously.
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*/
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rc = cxlflash_afu_sync(afu, ctxid, rhndl, AFU_HW_SYNC);
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if (unlikely(rc)) {
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rc = -EAGAIN;
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goto out;
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}
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}
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resize->hdr.return_flags = 0;
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resize->last_lba = (new_size * MC_CHUNK_SIZE * gli->blk_len);
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@ -1084,10 +1104,13 @@ static int clone_lxt(struct afu *afu,
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{
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struct cxlflash_cfg *cfg = afu->parent;
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struct device *dev = &cfg->dev->dev;
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struct sisl_lxt_entry *lxt;
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struct sisl_lxt_entry *lxt = NULL;
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bool locked = false;
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u32 ngrps;
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u64 aun; /* chunk# allocated by block allocator */
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int i, j;
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int j;
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int i = 0;
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int rc = 0;
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ngrps = LXT_NUM_GROUPS(rhte_src->lxt_cnt);
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/* allocate new LXTs for clone */
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lxt = kzalloc((sizeof(*lxt) * LXT_GROUP_SIZE * ngrps),
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GFP_KERNEL);
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if (unlikely(!lxt))
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return -ENOMEM;
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if (unlikely(!lxt)) {
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rc = -ENOMEM;
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goto out;
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}
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/* copy over */
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memcpy(lxt, rhte_src->lxt_start,
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(sizeof(*lxt) * rhte_src->lxt_cnt));
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/* clone the LBAs in block allocator via ref_cnt */
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/* clone the LBAs in block allocator via ref_cnt, note that the
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* block allocator mutex must be held until it is established
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* that this routine will complete without the need for a
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* cleanup.
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*/
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mutex_lock(&blka->mutex);
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locked = true;
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for (i = 0; i < rhte_src->lxt_cnt; i++) {
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aun = (lxt[i].rlba_base >> MC_CHUNK_SHIFT);
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if (ba_clone(&blka->ba_lun, aun) == -1ULL) {
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/* free the clones already made */
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for (j = 0; j < i; j++) {
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aun = (lxt[j].rlba_base >>
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MC_CHUNK_SHIFT);
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ba_free(&blka->ba_lun, aun);
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}
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mutex_unlock(&blka->mutex);
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kfree(lxt);
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return -EIO;
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rc = -EIO;
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goto err;
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}
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}
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mutex_unlock(&blka->mutex);
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} else {
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lxt = NULL;
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}
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/*
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rhte->lxt_cnt = rhte_src->lxt_cnt;
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dma_wmb(); /* Make RHT entry's LXT table size update visible */
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cxlflash_afu_sync(afu, ctxid, rhndl, AFU_LW_SYNC);
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rc = cxlflash_afu_sync(afu, ctxid, rhndl, AFU_LW_SYNC);
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if (unlikely(rc)) {
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rc = -EAGAIN;
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goto err2;
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}
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dev_dbg(dev, "%s: returning\n", __func__);
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return 0;
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out:
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if (locked)
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mutex_unlock(&blka->mutex);
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dev_dbg(dev, "%s: returning rc=%d\n", __func__, rc);
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return rc;
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err2:
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/* Reset the RHTE */
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rhte->lxt_cnt = 0;
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dma_wmb();
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rhte->lxt_start = NULL;
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dma_wmb();
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err:
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/* free the clones already made */
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for (j = 0; j < i; j++) {
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aun = (lxt[j].rlba_base >> MC_CHUNK_SHIFT);
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ba_free(&blka->ba_lun, aun);
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}
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kfree(lxt);
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goto out;
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}
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/**
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