return dpcd_tr_pattern;
 }
 
+static uint8_t dc_dp_initialize_scrambling_data_symbols(
+       struct dc_link *link,
+       enum dc_dp_training_pattern pattern)
+{
+       uint8_t disable_scrabled_data_symbols = 0;
+
+       switch (pattern) {
+       case DP_TRAINING_PATTERN_SEQUENCE_1:
+       case DP_TRAINING_PATTERN_SEQUENCE_2:
+       case DP_TRAINING_PATTERN_SEQUENCE_3:
+               disable_scrabled_data_symbols = 1;
+               break;
+       case DP_TRAINING_PATTERN_SEQUENCE_4:
+               disable_scrabled_data_symbols = 0;
+               break;
+       default:
+               ASSERT(0);
+               DC_LOG_HW_LINK_TRAINING("%s: Invalid HW Training pattern: %d\n",
+                       __func__, pattern);
+               break;
+       }
+       return disable_scrabled_data_symbols;
+}
+
 static inline bool is_repeater(struct dc_link *link, uint32_t offset)
 {
        return (!link->is_lttpr_mode_transparent && offset != 0);
        dpcd_pattern.v1_4.TRAINING_PATTERN_SET =
                dc_dp_training_pattern_to_dpcd_training_pattern(link, pattern);
 
+       dpcd_pattern.v1_4.SCRAMBLING_DISABLE =
+               dc_dp_initialize_scrambling_data_symbols(link, pattern);
+
        dpcd_lt_buffer[DP_TRAINING_PATTERN_SET - DP_TRAINING_PATTERN_SET]
                = dpcd_pattern.raw;