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Reset Domain Details

Summary

Name: Origin

Graph

Global

Local

Asynchronous

Synchronous

Active High

Active Low

Number of flip-flops
using this reset domain

Number of instances
using this reset domain

RST_N
  - RST_N: spacefibre_light_top.vhd#44 (Port)

Open Reset Hierarchy Graph

309/1245 (24.82%)

26/103

Instances using this reset domain

Count: 26

Instance

Asynchronous

Synchronous

Active High

Active Low

TOP (spacefibre_light_top) > inst_reset_sync_clk_from_GTY (reset_gen)

TOP (spacefibre_light_top) > inst_data_link (data_link) > inst_data_link_reset (data_link_reset)

TOP (spacefibre_light_top) > inst_data_link (data_link) > inst_data_out_bc_buf (data_out_bc_buf)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_out_buff(0).inst_data_out_buff (data_out_buff)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_out_buff(1).inst_data_out_buff (data_out_buff)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_out_buff(2).inst_data_out_buff (data_out_buff)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_out_buff(3).inst_data_out_buff (data_out_buff)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_out_buff(4).inst_data_out_buff (data_out_buff)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_out_buff(5).inst_data_out_buff (data_out_buff)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_out_buff(6).inst_data_out_buff (data_out_buff)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_out_buff(7).inst_data_out_buff (data_out_buff)

TOP (spacefibre_light_top) > inst_data_link (data_link) > inst_data_in_bc_buf (data_in_bc_buf)

TOP (spacefibre_light_top) > inst_data_link (data_link) > inst_mid_buf_bc (FIFO_DC_DROP_BAD_FRAME)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_in_buff(0).inst_data_in_buf (data_in_buf)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_in_buff(1).inst_data_in_buf (data_in_buf)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_in_buff(2).inst_data_in_buf (data_in_buf)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_in_buff(3).inst_data_in_buf (data_in_buf)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_in_buff(4).inst_data_in_buf (data_in_buf)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_in_buff(5).inst_data_in_buf (data_in_buf)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_in_buff(6).inst_data_in_buf (data_in_buf)

TOP (spacefibre_light_top) > inst_data_link (data_link) > gen_data_in_buff(7).inst_data_in_buf (data_in_buf)

TOP (spacefibre_light_top) > inst_data_link (data_link) > inst_mid_buf (FIFO_DC_DROP_BAD_FRAME)

TOP (spacefibre_light_top) > inst_mux_tx (mux_tx)

TOP (spacefibre_light_top) > inst_demux_rx (demux_rx)

TOP (spacefibre_light_top) > inst_phy_plus_lane (phy_plus_lane) > inst_fifo_rx_data (FIFO_DC)

TOP (spacefibre_light_top) > inst_phy_plus_lane (phy_plus_lane) > inst_fifo_out_ctrl (FIFO_DC)

Flip-flops using this reset domain

Count: 309

Asynchronous usage

Count: 309

fifo_dc.vhd#199

fifo_dc.vhd#222

fifo_dc.vhd#240

fifo_dc.vhd#256

fifo_dc.vhd#300

fifo_dc.vhd#321

fifo_dc.vhd#344

fifo_dc.vhd#362

fifo_dc.vhd#378

fifo_dc.vhd#440

fifo_dc_drop_bad_frame.vhd#202

fifo_dc_drop_bad_frame.vhd#254

fifo_dc_drop_bad_frame.vhd#271

fifo_dc_drop_bad_frame.vhd#288

fifo_dc_drop_bad_frame.vhd#329

fifo_dc_drop_bad_frame.vhd#349

fifo_dc_drop_bad_frame.vhd#371

fifo_dc_drop_bad_frame.vhd#388

fifo_dc_drop_bad_frame.vhd#403

fifo_dc_drop_bad_frame.vhd#461

demux_rx.vhd#59

mux_tx.vhd#75

reset_gen.vhd#56

data_in_bc_buf.vhd#170

data_in_buf.vhd#206

data_in_buf.vhd#225

data_in_buf.vhd#298

data_in_buf.vhd#345

data_link_reset.vhd#92

data_out_bc_buf.vhd#184

data_out_bc_buf.vhd#208

data_out_bc_buf.vhd#226

data_out_buf.vhd#252

data_out_buf.vhd#388

data_out_buf.vhd#404

data_out_buf.vhd#420

data_out_buf.vhd#458

data_out_buf.vhd#481

data_out_buf.vhd#499

data_out_buf.vhd#537

data_out_buf.vhd#560

data_out_buf.vhd#588

Synchronous usage

Count: 0

Active-high usage

Count: 0

Active-low usage

Count: 309

fifo_dc.vhd#199

fifo_dc.vhd#222

fifo_dc.vhd#240

fifo_dc.vhd#256

fifo_dc.vhd#300

fifo_dc.vhd#321

fifo_dc.vhd#344

fifo_dc.vhd#362

fifo_dc.vhd#378

fifo_dc.vhd#440

fifo_dc_drop_bad_frame.vhd#202

fifo_dc_drop_bad_frame.vhd#254

fifo_dc_drop_bad_frame.vhd#271

fifo_dc_drop_bad_frame.vhd#288

fifo_dc_drop_bad_frame.vhd#329

fifo_dc_drop_bad_frame.vhd#349

fifo_dc_drop_bad_frame.vhd#371

fifo_dc_drop_bad_frame.vhd#388

fifo_dc_drop_bad_frame.vhd#403

fifo_dc_drop_bad_frame.vhd#461

demux_rx.vhd#59

mux_tx.vhd#75

reset_gen.vhd#56

data_in_bc_buf.vhd#170

data_in_buf.vhd#206

data_in_buf.vhd#225

data_in_buf.vhd#298

data_in_buf.vhd#345

data_link_reset.vhd#92

data_out_bc_buf.vhd#184

data_out_bc_buf.vhd#208

data_out_bc_buf.vhd#226

data_out_buf.vhd#252

data_out_buf.vhd#388

data_out_buf.vhd#404

data_out_buf.vhd#420

data_out_buf.vhd#458

data_out_buf.vhd#481

data_out_buf.vhd#499

data_out_buf.vhd#537

data_out_buf.vhd#560

data_out_buf.vhd#588


Note that there could be fewer source code locations than the number of flip-flops because several flip-flops can be inferred from the same piece of code.


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