#define RESERVED_BY_OTHER(h, r) \
        ((h)->rsvp && ((h)->rsvp->enc_id != (r)->enc_id))
 
-#define RM_IS_TOPOLOGY_MATCH(t, r) ((t).num_lm == (r).num_lm && \
-                               (t).num_comp_enc == (r).num_enc && \
-                               (t).num_intf == (r).num_intf)
-
-struct dpu_rm_topology_def {
-       enum dpu_rm_topology_name top_name;
-       int num_lm;
-       int num_comp_enc;
-       int num_intf;
-       int num_ctl;
-       int needs_split_display;
-};
-
-static const struct dpu_rm_topology_def g_top_table[] = {
-       {   DPU_RM_TOPOLOGY_NONE,                 0, 0, 0, 0, false },
-       {   DPU_RM_TOPOLOGY_SINGLEPIPE,           1, 0, 1, 1, false },
-       {   DPU_RM_TOPOLOGY_DUALPIPE,             2, 0, 2, 2, true  },
-       {   DPU_RM_TOPOLOGY_DUALPIPE_3DMERGE,     2, 0, 1, 1, false },
-};
-
 /**
  * struct dpu_rm_requirements - Reservation requirements parameter bundle
- * @top:       selected topology for the display
+ * @topology:  selected topology for the display
  * @hw_res:       Hardware resources required as reported by the encoders
  */
 struct dpu_rm_requirements {
-       const struct dpu_rm_topology_def *topology;
+       struct msm_display_topology topology;
        struct dpu_encoder_hw_resources hw_res;
 };
 
  * @enc_id:    Reservations are tracked by Encoder DRM object ID.
  *             CRTCs may be connected to multiple Encoders.
  *             An encoder or connector id identifies the display path.
- * @topology   DRM<->HW topology use case
  */
 struct dpu_rm_rsvp {
        struct list_head list;
        uint32_t seq;
        uint32_t enc_id;
-       enum dpu_rm_topology_name topology;
 };
 
 /**
        DPU_DEBUG("%d\n", stage);
 
        list_for_each_entry(rsvp, &rm->rsvps, list) {
-               DRM_DEBUG_KMS("%d rsvp[s%ue%u] topology %d\n", stage, rsvp->seq,
-                             rsvp->enc_id, rsvp->topology);
+               DRM_DEBUG_KMS("%d rsvp[s%ue%u]\n", stage, rsvp->seq,
+                             rsvp->enc_id);
        }
 
        for (type = 0; type < DPU_HW_BLK_MAX; type++) {
        return rm->hw_mdp;
 }
 
-enum dpu_rm_topology_name
-dpu_rm_get_topology_name(struct msm_display_topology topology)
-{
-       int i;
-
-       for (i = 0; i < DPU_RM_TOPOLOGY_MAX; i++)
-               if (RM_IS_TOPOLOGY_MATCH(g_top_table[i], topology))
-                       return g_top_table[i].top_name;
-
-       return DPU_RM_TOPOLOGY_NONE;
-}
-
 void dpu_rm_init_hw_iter(
                struct dpu_rm_hw_iter *iter,
                uint32_t enc_id,
        return rc;
 }
 
+static bool _dpu_rm_needs_split_display(const struct msm_display_topology *top)
+{
+       return top->num_intf > 1;
+}
+
 /**
  * _dpu_rm_check_lm_and_get_connected_blks - check if proposed layer mixer meets
  *     proposed use case requirements, incl. hardwired dependent blocks like
        int lm_count = 0;
        int i, rc = 0;
 
-       if (!reqs->topology->num_lm) {
-               DPU_ERROR("invalid number of lm: %d\n", reqs->topology->num_lm);
+       if (!reqs->topology.num_lm) {
+               DPU_ERROR("invalid number of lm: %d\n", reqs->topology.num_lm);
                return -EINVAL;
        }
 
        /* Find a primary mixer */
        dpu_rm_init_hw_iter(&iter_i, 0, DPU_HW_BLK_LM);
-       while (lm_count != reqs->topology->num_lm &&
+       while (lm_count != reqs->topology.num_lm &&
                        _dpu_rm_get_hw_locked(rm, &iter_i)) {
                memset(&lm, 0, sizeof(lm));
                memset(&pp, 0, sizeof(pp));
                /* Valid primary mixer found, find matching peers */
                dpu_rm_init_hw_iter(&iter_j, 0, DPU_HW_BLK_LM);
 
-               while (lm_count != reqs->topology->num_lm &&
+               while (lm_count != reqs->topology.num_lm &&
                                _dpu_rm_get_hw_locked(rm, &iter_j)) {
                        if (iter_i.blk == iter_j.blk)
                                continue;
                }
        }
 
-       if (lm_count != reqs->topology->num_lm) {
+       if (lm_count != reqs->topology.num_lm) {
                DPU_DEBUG("unable to find appropriate mixers\n");
                return -ENAVAIL;
        }
 static int _dpu_rm_reserve_ctls(
                struct dpu_rm *rm,
                struct dpu_rm_rsvp *rsvp,
-               const struct dpu_rm_topology_def *top)
+               const struct msm_display_topology *top)
 {
        struct dpu_rm_hw_blk *ctls[MAX_BLOCKS];
        struct dpu_rm_hw_iter iter;
-       int i = 0;
+       int i = 0, num_ctls = 0;
+       bool needs_split_display = false;
 
        memset(&ctls, 0, sizeof(ctls));
 
+       /* each hw_intf needs its own hw_ctrl to program its control path */
+       num_ctls = top->num_intf;
+
+       needs_split_display = _dpu_rm_needs_split_display(top);
+
        dpu_rm_init_hw_iter(&iter, 0, DPU_HW_BLK_CTL);
        while (_dpu_rm_get_hw_locked(rm, &iter)) {
                const struct dpu_hw_ctl *ctl = to_dpu_hw_ctl(iter.blk->hw);
 
                DPU_DEBUG("ctl %d caps 0x%lX\n", iter.blk->id, features);
 
-               if (top->needs_split_display != has_split_display)
+               if (needs_split_display != has_split_display)
                        continue;
 
                ctls[i] = iter.blk;
                DPU_DEBUG("ctl %d match\n", iter.blk->id);
 
-               if (++i == top->num_ctl)
+               if (++i == num_ctls)
                        break;
        }
 
-       if (i != top->num_ctl)
+       if (i != num_ctls)
                return -ENAVAIL;
 
-       for (i = 0; i < ARRAY_SIZE(ctls) && i < top->num_ctl; i++) {
+       for (i = 0; i < ARRAY_SIZE(ctls) && i < num_ctls; i++) {
                ctls[i]->rsvp_nxt = rsvp;
                trace_dpu_rm_reserve_ctls(ctls[i]->id, ctls[i]->type,
                                          rsvp->enc_id);
                struct dpu_rm_requirements *reqs)
 {
        int ret;
-       struct dpu_rm_topology_def topology;
 
        /* Create reservation info, tag reserved blocks with it as we go */
        rsvp->seq = ++rm->rsvp_next_seq;
        rsvp->enc_id = enc->base.id;
-       rsvp->topology = reqs->topology->top_name;
        list_add_tail(&rsvp->list, &rm->rsvps);
 
        ret = _dpu_rm_reserve_lms(rm, rsvp, reqs);
                return ret;
        }
 
-       /*
-        * Do assignment preferring to give away low-resource CTLs first:
-        * - Check mixers without Split Display
-        * - Only then allow to grab from CTLs with split display capability
-        */
-       _dpu_rm_reserve_ctls(rm, rsvp, reqs->topology);
-       if (ret && !reqs->topology->needs_split_display) {
-               memcpy(&topology, reqs->topology, sizeof(topology));
-               topology.needs_split_display = true;
-               _dpu_rm_reserve_ctls(rm, rsvp, &topology);
-       }
+       ret = _dpu_rm_reserve_ctls(rm, rsvp, &reqs->topology);
        if (ret) {
                DPU_ERROR("unable to find appropriate CTL\n");
                return ret;
                struct dpu_rm_requirements *reqs,
                struct msm_display_topology req_topology)
 {
-       int i;
-
-       memset(reqs, 0, sizeof(*reqs));
-
        dpu_encoder_get_hw_resources(enc, &reqs->hw_res);
 
-       for (i = 0; i < DPU_RM_TOPOLOGY_MAX; i++) {
-               if (RM_IS_TOPOLOGY_MATCH(g_top_table[i],
-                                       req_topology)) {
-                       reqs->topology = &g_top_table[i];
-                       break;
-               }
-       }
-
-       if (!reqs->topology) {
-               DPU_ERROR("invalid topology for the display\n");
-               return -EINVAL;
-       }
+       reqs->topology = req_topology;
 
-       DRM_DEBUG_KMS("num_lm: %d num_ctl: %d topology: %d split_display: %d\n",
-                     reqs->topology->num_lm, reqs->topology->num_ctl,
-                     reqs->topology->top_name,
-                     reqs->topology->needs_split_display);
+       DRM_DEBUG_KMS("num_lm: %d num_enc: %d num_intf: %d\n",
+                     reqs->topology.num_lm, reqs->topology.num_enc,
+                     reqs->topology.num_intf);
 
        return 0;
 }
        mutex_unlock(&rm->rm_lock);
 }
 
-static int _dpu_rm_commit_rsvp(struct dpu_rm *rm, struct dpu_rm_rsvp *rsvp)
+static void _dpu_rm_commit_rsvp(struct dpu_rm *rm, struct dpu_rm_rsvp *rsvp)
 {
        struct dpu_rm_hw_blk *blk;
        enum dpu_hw_blk_type type;
-       int ret = 0;
 
        /* Swap next rsvp to be the active */
        for (type = 0; type < DPU_HW_BLK_MAX; type++) {
                        }
                }
        }
-
-       if (!ret)
-               DRM_DEBUG_KMS("rsrv enc %d topology %d\n", rsvp->enc_id,
-                             rsvp->topology);
-
-       return ret;
 }
 
 int dpu_rm_reserve(