/* default DSC policy enables DSC only when needed */
 static bool dsc_policy_enable_dsc_when_not_needed;
 
+static bool dsc_policy_disable_dsc_stream_overhead;
+
 static bool dsc_buff_block_size_from_dpcd(int dpcd_buff_block_size, int *buff_block_size)
 {
 
        if (pixel_encoding == PIXEL_ENCODING_YCBCR422 || pixel_encoding == PIXEL_ENCODING_YCBCR420)
                dsc_common_caps->bpp_increment_div = min(dsc_common_caps->bpp_increment_div, (uint32_t)8);
 
+       dsc_common_caps->is_dp = dsc_sink_caps->is_dp;
        return true;
 }
 
 
 static struct fixed31_32 compute_dsc_max_bandwidth_overhead(
                const struct dc_crtc_timing *timing,
-               const int num_slices_h)
+               const int num_slices_h,
+               const bool is_dp)
 {
        struct fixed31_32 max_dsc_overhead;
        struct fixed31_32 refresh_rate;
 
+       if (dsc_policy_disable_dsc_stream_overhead || !is_dp)
+               return dc_fixpt_from_int(0);
+
        /* use target bpp that can take entire target bandwidth */
        refresh_rate = dc_fixpt_from_int(timing->pix_clk_100hz);
        refresh_rate = dc_fixpt_div_int(refresh_rate, timing->h_total);
        refresh_rate = dc_fixpt_mul_int(refresh_rate, 100);
 
        max_dsc_overhead = dc_fixpt_from_int(num_slices_h);
-       max_dsc_overhead = dc_fixpt_mul_int(max_dsc_overhead, timing->v_addressable);
+       max_dsc_overhead = dc_fixpt_mul_int(max_dsc_overhead, timing->v_total);
        max_dsc_overhead = dc_fixpt_mul_int(max_dsc_overhead, 256);
        max_dsc_overhead = dc_fixpt_div_int(max_dsc_overhead, 1000);
        max_dsc_overhead = dc_fixpt_mul(max_dsc_overhead, refresh_rate);
                const uint32_t bandwidth_in_kbps,
                const struct dc_crtc_timing *timing,
                const uint32_t num_slices_h,
-               const uint32_t bpp_increment_div)
+               const uint32_t bpp_increment_div,
+               const bool is_dp)
 {
        struct fixed31_32 overhead_in_kbps;
        struct fixed31_32 effective_bandwidth_in_kbps;
        struct fixed31_32 bpp_x16;
 
        overhead_in_kbps = compute_dsc_max_bandwidth_overhead(
-                               timing, num_slices_h);
+                               timing, num_slices_h, is_dp);
        effective_bandwidth_in_kbps = dc_fixpt_from_int(bandwidth_in_kbps);
        effective_bandwidth_in_kbps = dc_fixpt_sub(effective_bandwidth_in_kbps,
                        overhead_in_kbps);
 
        /* max dsc target bpp */
        range->max_kbps = dc_dsc_stream_bandwidth_in_kbps(timing,
-                       max_bpp_x16, num_slices_h);
+                       max_bpp_x16, num_slices_h, dsc_caps->is_dp);
        range->max_target_bpp_x16 = max_bpp_x16;
        if (range->max_kbps > range->stream_kbps) {
                /* max dsc target bpp is capped to native bandwidth */
                range->max_kbps = range->stream_kbps;
                range->max_target_bpp_x16 = compute_bpp_x16_from_target_bandwidth(
                                range->max_kbps, timing, num_slices_h,
-                               dsc_caps->bpp_increment_div);
+                               dsc_caps->bpp_increment_div,
+                               dsc_caps->is_dp);
        }
 
        /* min dsc target bpp */
        range->min_kbps = dc_dsc_stream_bandwidth_in_kbps(timing,
-                       min_bpp_x16, num_slices_h);
+                       min_bpp_x16, num_slices_h, dsc_caps->is_dp);
        range->min_target_bpp_x16 = min_bpp_x16;
        if (range->min_kbps > range->max_kbps) {
                /* min dsc target bpp is capped to max dsc bandwidth*/
        } else if (target_bandwidth_kbps >= range.min_kbps) {
                /* use target bpp that can take entire target bandwidth */
                *target_bpp_x16 = compute_bpp_x16_from_target_bandwidth(
-                               range.max_kbps, timing, num_slices_h,
-                               dsc_common_caps->bpp_increment_div);
-               if (*target_bpp_x16 < range.min_kbps)
-                       *target_bpp_x16 = range.min_kbps;
+                               target_bandwidth_kbps, timing, num_slices_h,
+                               dsc_common_caps->bpp_increment_div,
+                               dsc_common_caps->is_dp);
                should_use_dsc = true;
        } else {
                /* not enough bandwidth to fulfill minimum requirement */
                dsc_cfg->block_pred_enable = dsc_common_caps.is_block_pred_supported;
                dsc_cfg->linebuf_depth = dsc_common_caps.lb_bit_depth;
                dsc_cfg->version_minor = (dsc_common_caps.dsc_version & 0xf0) >> 4;
+               dsc_cfg->is_dp = dsc_sink_caps->is_dp;
        }
 
 done:
        dsc_sink_caps->branch_max_line_width = dpcd_dsc_branch_decoder_caps[DP_DSC_BRANCH_MAX_LINE_WIDTH - DP_DSC_BRANCH_OVERALL_THROUGHPUT_0] * 320;
        ASSERT(dsc_sink_caps->branch_max_line_width == 0 || dsc_sink_caps->branch_max_line_width >= 5120);
 
+       dsc_sink_caps->is_dp = true;
        return true;
 }
 
 }
 
 uint32_t dc_dsc_stream_bandwidth_in_kbps(const struct dc_crtc_timing *timing,
-               uint32_t bpp_x16, uint32_t num_slices_h)
+               uint32_t bpp_x16, uint32_t num_slices_h, bool is_dp)
 {
        struct fixed31_32 overhead_in_kbps;
        struct fixed31_32 bpp;
        struct fixed31_32 actual_bandwidth_in_kbps;
 
        overhead_in_kbps = compute_dsc_max_bandwidth_overhead(
-                       timing, num_slices_h);
+                       timing, num_slices_h, is_dp);
        bpp = dc_fixpt_from_fraction(bpp_x16, 16);
        actual_bandwidth_in_kbps = dc_fixpt_from_fraction(timing->pix_clk_100hz, 10);
        actual_bandwidth_in_kbps = dc_fixpt_mul(actual_bandwidth_in_kbps, bpp);
 {
        dsc_policy_enable_dsc_when_not_needed = enable;
 }
+
+void dc_dsc_policy_set_disable_dsc_stream_overhead(bool disable)
+{
+       dsc_policy_disable_dsc_stream_overhead = disable;
+}