Lines Matching refs:numref
129 The scheduling hierarchy is shown in :numref:`figure_sched_hier_per_port`.
412 :numref:`figure_prefetch_pipeline` illustrates a pipelined implementation for the enqueue operation…
590 … bucket generic parameters and operations are presented in :numref:`table_qos_6` and :numref:`tabl…
632 the current design uses the persistent data structure presented in :numref:`table_qos_8`,
633 while the implementation of the token bucket operations is described in :numref:`table_qos_9`.
752 as described in :numref:`table_qos_10` and :numref:`table_qos_11`.
824 … priority traffic class (best effort TC) from simple to complex is shown in :numref:`table_qos_12`.
1017 :numref:`table_qos_14` and :numref:`table_qos_15` illustrates the watermark operation.
1167 :numref:`figure_blk_diag_dropper` illustrates how the dropper integrates with the scheduler.
1199 The flow through the dropper is illustrated in :numref:`figure_flow_tru_dropper`.
1238 A RED configuration contains the parameters given in :numref:`table_qos_16`.
1271 A PIE configuration contains the parameters given in :numref:`table_qos_16a`.
1305 In the example shown in :numref:`figure_ex_data_flow_tru_dropper`, q (actual queue size) is the inp…
1432 :numref:`table_qos_17` lists the performance of each of these alternative approaches relative to th…
1499 The calculation of the packet drop probability using Equation 3 is illustrated in :numref:`figure_p…
1531 The initial and actual drop probabilities are shown in :numref:`figure_drop_probability_graph`.
1663 yellow and red packets in traffic class 0 is shown in :numref:`table_qos_18`.