NULL
 };
 
+static const char *zfcp_rec_dbf_tags[] = {
+};
+
+static const char *zfcp_rec_dbf_ids[] = {
+};
+
+static int zfcp_rec_dbf_view_format(debug_info_t *id, struct debug_view *view,
+                                   char *buf, const char *_rec)
+{
+       struct zfcp_rec_dbf_record *r = (struct zfcp_rec_dbf_record *)_rec;
+       char *p = buf;
+
+       zfcp_dbf_outs(&p, "tag", zfcp_rec_dbf_tags[r->id]);
+       zfcp_dbf_outs(&p, "hint", zfcp_rec_dbf_ids[r->id2]);
+       zfcp_dbf_out(&p, "id", "%d", r->id2);
+       switch (r->id) {
+       }
+       sprintf(p, "\n");
+       return (p - buf) + 1;
+}
+
+static struct debug_view zfcp_rec_dbf_view = {
+       "structured",
+       NULL,
+       &zfcp_dbf_view_header,
+       &zfcp_rec_dbf_view_format,
+       NULL,
+       NULL
+};
+
 static void
 _zfcp_san_dbf_event_common_ct(const char *tag, struct zfcp_fsf_req *fsf_req,
                              u32 s_id, u32 d_id, void *buffer, int buflen)
        debug_register_view(adapter->erp_dbf, &debug_hex_ascii_view);
        debug_set_level(adapter->erp_dbf, 3);
 
+       /* debug feature area which records recovery activity */
+       sprintf(dbf_name, "zfcp_%s_rec", zfcp_get_busid_by_adapter(adapter));
+       adapter->rec_dbf = debug_register(dbf_name, dbfsize, 1,
+                                         sizeof(struct zfcp_rec_dbf_record));
+       if (!adapter->rec_dbf)
+               goto failed;
+       debug_register_view(adapter->rec_dbf, &debug_hex_ascii_view);
+       debug_register_view(adapter->rec_dbf, &zfcp_rec_dbf_view);
+       debug_set_level(adapter->rec_dbf, 3);
+
        /* debug feature area which records HBA (FSF and QDIO) conditions */
        sprintf(dbf_name, "zfcp_%s_hba", zfcp_get_busid_by_adapter(adapter));
        adapter->hba_dbf = debug_register(dbf_name, dbfsize, 1,
        debug_unregister(adapter->scsi_dbf);
        debug_unregister(adapter->san_dbf);
        debug_unregister(adapter->hba_dbf);
+       debug_unregister(adapter->rec_dbf);
        debug_unregister(adapter->erp_dbf);
        adapter->scsi_dbf = NULL;
        adapter->san_dbf = NULL;
        adapter->hba_dbf = NULL;
+       adapter->rec_dbf = NULL;
        adapter->erp_dbf = NULL;
 }
 
 
        u8 dummy[16];
 } __attribute__ ((packed));
 
+struct zfcp_rec_dbf_record {
+       u8 id;
+       u8 id2;
+       union {
+       } u;
+} __attribute__ ((packed));
+
 struct zfcp_hba_dbf_record_response {
        u32 fsf_command;
        u64 fsf_reqid;
                                                      for memory */
        struct zfcp_port        *nameserver_port;  /* adapter's nameserver */
        debug_info_t            *erp_dbf;
+       debug_info_t            *rec_dbf;
        debug_info_t            *hba_dbf;
        debug_info_t            *san_dbf;          /* debug feature areas */
        debug_info_t            *scsi_dbf;
        spinlock_t              erp_dbf_lock;
+       spinlock_t              rec_dbf_lock;
        spinlock_t              hba_dbf_lock;
        spinlock_t              san_dbf_lock;
        spinlock_t              scsi_dbf_lock;
        struct zfcp_erp_dbf_record      erp_dbf_buf;
+       struct zfcp_rec_dbf_record      rec_dbf_buf;
        struct zfcp_hba_dbf_record      hba_dbf_buf;
        struct zfcp_san_dbf_record      san_dbf_buf;
        struct zfcp_scsi_dbf_record     scsi_dbf_buf;