}
static int lov_init_sub(const struct lu_env *env, struct lov_object *lov,
- struct cl_object *stripe,
- struct lov_layout_raid0 *r0, int idx)
+ struct cl_object *stripe, struct lov_layout_raid0 *r0,
+ int idx)
{
struct cl_object_header *hdr;
struct cl_object_header *subhdr;
hdr = cl_object_header(lov2cl(lov));
subhdr = cl_object_header(stripe);
- parent = subhdr->coh_parent;
oinfo = lov->lo_lsm->lsm_oinfo[idx];
CDEBUG(D_INODE, DFID"@%p[%d] -> "DFID"@%p: ostid: "DOSTID
PFID(&hdr->coh_lu.loh_fid), hdr, POSTID(&oinfo->loi_oi),
oinfo->loi_ost_idx, oinfo->loi_ost_gen);
+ /* reuse ->coh_attr_guard to protect coh_parent change */
+ spin_lock(&subhdr->coh_attr_guard);
+ parent = subhdr->coh_parent;
if (parent == NULL) {
subhdr->coh_parent = hdr;
+ spin_unlock(&subhdr->coh_attr_guard);
subhdr->coh_nesting = hdr->coh_nesting + 1;
lu_object_ref_add(&stripe->co_lu, "lov-parent", lov);
r0->lo_sub[idx] = cl2lovsub(stripe);
struct lov_object *old_lov;
unsigned int mask = D_INODE;
+ spin_unlock(&subhdr->coh_attr_guard);
old_obj = lu_object_locate(&parent->coh_lu, &lov_device_type);
LASSERT(old_obj != NULL);
old_lov = cl2lov(lu2cl(old_obj));
struct lovsub_device *lsd = lu2lovsub_dev(d);
struct lu_device *next = cl2lu_dev(lsd->acid_next);
+ if (atomic_read(&d->ld_ref) && d->ld_site) {
+ LIBCFS_DEBUG_MSG_DATA_DECL(msgdata, D_ERROR, NULL);
+ lu_site_print(env, d->ld_site, &msgdata, lu_cdebug_printer);
+ }
cl_device_fini(lu2cl_dev(d));
OBD_FREE_PTR(lsd);
return next;