Files
FPGA-Neural/sim/layer.vcd
T
micheleandClaude Sonnet 5 313a1994a4 docs: certification campaign Phase 0 -- real inventory, new regression harness
Builds tools/run_regression.py (no reproducible regression script existed
before -- every prior "N testbenches, all pass" claim was assembled by
hand). Resolves each testbench's dependencies by static analysis of
instantiation sites, not from memory, then compiles+runs everything fresh.

Independently re-verifies the 33-testbench regression clean (0 real
failures) after fixing two false negatives in the harness itself (two
tests are deliberate compile-time-failure negative tests, one file is a
benchmark with no pass/fail verdict by design -- confirmed by reading
each file's own header, not assumed).

Findings recorded in docs/validation/: sim/top.v is dead code (references
a removed FRAC_BITS parameter from the pre-INT8 Q8.8 era); mac_unit.v/
mac8.v have no dedicated unit testbench, only indirect coverage; the
N_INPUTS%PARALLEL elaboration guard does not mathematically cover
N_INPUTS=0 (open finding, not yet confirmed reachable -- BUG-002).

Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_013xXuuRUWZScuo1DeYJxs3v
2026-09-04 13:26:11 +02:00

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$date
Fri Sep 4 13:22:54 2026
$end
$version
Icarus Verilog
$end
$timescale
1ps
$end
$scope module tb $end
$var wire 64 ! y_bus [63:0] $end
$var wire 1 " done $end
$var wire 1 # busy $end
$var parameter 32 $ ACC_WIDTH $end
$var parameter 32 % DATA_WIDTH $end
$var parameter 32 & N_INPUTS $end
$var parameter 32 ' N_NEURONS $end
$var parameter 32 ( PARALLEL $end
$var reg 64 ) bias_bus [63:0] $end
$var reg 1 * clk $end
$var reg 1 + rst $end
$var reg 1 , start $end
$var reg 2048 - weights_bus [2047:0] $end
$var reg 256 . x_bus [255:0] $end
$var integer 32 / errors [31:0] $end
$var integer 32 0 i [31:0] $end
$scope module dut $end
$var wire 64 1 bias_bus [63:0] $end
$var wire 1 * clk $end
$var wire 1 + rst $end
$var wire 1 , start $end
$var wire 2048 2 weights_bus [2047:0] $end
$var wire 256 3 x_bus [255:0] $end
$var wire 64 4 y_bus [63:0] $end
$var wire 8 5 neuron_done [7:0] $end
$var wire 8 6 neuron_busy [7:0] $end
$var wire 1 " done $end
$var wire 1 # busy $end
$var parameter 32 7 ACC_WIDTH $end
$var parameter 32 8 DATA_WIDTH $end
$var parameter 32 9 N_INPUTS $end
$var parameter 32 : N_NEURONS $end
$var parameter 32 ; PARALLEL $end
$scope begin GEN_NEURON[0] $end
$var parameter 2 < n $end
$scope module u_neuron $end
$var wire 2 = activation [1:0] $end
$var wire 8 > bias [7:0] $end
$var wire 1 * clk $end
$var wire 1 ? final_acc_in_range $end
$var wire 1 @ final_acc_le_zero $end
$var wire 1 A final_acc_upper_all0 $end
$var wire 16 B n_inputs_real [15:0] $end
$var wire 1 + rst $end
$var wire 1 , start $end
$var wire 256 C w_bus [255:0] $end
$var wire 256 D x_bus [255:0] $end
$var wire 8 E y_relu [7:0] $end
$var wire 8 F y_none [7:0] $end
$var wire 64 G x_group [63:0] $end
$var wire 64 H w_group [63:0] $end
$var wire 16 I groups_real [15:0] $end
$var wire 1 J final_acc_upper_all1 $end
$var wire 1 K final_acc_sign $end
$var wire 32 L final_acc [31:0] $end
$var wire 32 M bias_ext [31:0] $end
$var wire 32 N acc_next [31:0] $end
$var parameter 32 O ACC_WIDTH $end
$var parameter 2 P ACT_NONE $end
$var parameter 2 Q ACT_RELU $end
$var parameter 32 R DATA_WIDTH $end
$var parameter 32 S GROUPS $end
$var parameter 32 T GROUP_INDEX_WIDTH $end
$var parameter 32 U N_INPUTS $end
$var parameter 32 V PARALLEL $end
$var reg 32 W acc [31:0] $end
$var reg 1 X busy $end
$var reg 1 Y done $end
$var reg 1 Z finishing $end
$var reg 2 [ group_index [1:0] $end
$var reg 8 \ y [7:0] $end
$scope module u_mac8 $end
$var wire 32 ] acc_in [31:0] $end
$var wire 64 ^ w_bus [63:0] $end
$var wire 64 _ x_bus [63:0] $end
$var wire 32 ` acc_out [31:0] $end
$var parameter 32 a ACC_WIDTH $end
$var parameter 32 b DATA_WIDTH $end
$var parameter 32 c PARALLEL $end
$var parameter 32 d TREE_LEVELS $end
$scope begin GEN_MAC[0] $end
$var parameter 2 e i $end
$scope module u_mac $end
$var wire 32 f acc_in [31:0] $end
$var wire 8 g w [7:0] $end
$var wire 8 h x [7:0] $end
$var wire 32 i product_ext [31:0] $end
$var wire 16 j product [15:0] $end
$var wire 32 k acc_out [31:0] $end
$var parameter 32 l ACC_WIDTH $end
$var parameter 32 m DATA_WIDTH $end
$var parameter 64 n PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[1] $end
$var parameter 2 o i $end
$scope module u_mac $end
$var wire 32 p acc_in [31:0] $end
$var wire 8 q w [7:0] $end
$var wire 8 r x [7:0] $end
$var wire 32 s product_ext [31:0] $end
$var wire 16 t product [15:0] $end
$var wire 32 u acc_out [31:0] $end
$var parameter 32 v ACC_WIDTH $end
$var parameter 32 w DATA_WIDTH $end
$var parameter 64 x PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[2] $end
$var parameter 3 y i $end
$scope module u_mac $end
$var wire 32 z acc_in [31:0] $end
$var wire 8 { w [7:0] $end
$var wire 8 | x [7:0] $end
$var wire 32 } product_ext [31:0] $end
$var wire 16 ~ product [15:0] $end
$var wire 32 !" acc_out [31:0] $end
$var parameter 32 "" ACC_WIDTH $end
$var parameter 32 #" DATA_WIDTH $end
$var parameter 64 $" PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[3] $end
$var parameter 3 %" i $end
$scope module u_mac $end
$var wire 32 &" acc_in [31:0] $end
$var wire 8 '" w [7:0] $end
$var wire 8 (" x [7:0] $end
$var wire 32 )" product_ext [31:0] $end
$var wire 16 *" product [15:0] $end
$var wire 32 +" acc_out [31:0] $end
$var parameter 32 ," ACC_WIDTH $end
$var parameter 32 -" DATA_WIDTH $end
$var parameter 64 ." PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[4] $end
$var parameter 4 /" i $end
$scope module u_mac $end
$var wire 32 0" acc_in [31:0] $end
$var wire 8 1" w [7:0] $end
$var wire 8 2" x [7:0] $end
$var wire 32 3" product_ext [31:0] $end
$var wire 16 4" product [15:0] $end
$var wire 32 5" acc_out [31:0] $end
$var parameter 32 6" ACC_WIDTH $end
$var parameter 32 7" DATA_WIDTH $end
$var parameter 64 8" PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[5] $end
$var parameter 4 9" i $end
$scope module u_mac $end
$var wire 32 :" acc_in [31:0] $end
$var wire 8 ;" w [7:0] $end
$var wire 8 <" x [7:0] $end
$var wire 32 =" product_ext [31:0] $end
$var wire 16 >" product [15:0] $end
$var wire 32 ?" acc_out [31:0] $end
$var parameter 32 @" ACC_WIDTH $end
$var parameter 32 A" DATA_WIDTH $end
$var parameter 64 B" PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[6] $end
$var parameter 4 C" i $end
$scope module u_mac $end
$var wire 32 D" acc_in [31:0] $end
$var wire 8 E" w [7:0] $end
$var wire 8 F" x [7:0] $end
$var wire 32 G" product_ext [31:0] $end
$var wire 16 H" product [15:0] $end
$var wire 32 I" acc_out [31:0] $end
$var parameter 32 J" ACC_WIDTH $end
$var parameter 32 K" DATA_WIDTH $end
$var parameter 64 L" PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[7] $end
$var parameter 4 M" i $end
$scope module u_mac $end
$var wire 32 N" acc_in [31:0] $end
$var wire 8 O" w [7:0] $end
$var wire 8 P" x [7:0] $end
$var wire 32 Q" product_ext [31:0] $end
$var wire 16 R" product [15:0] $end
$var wire 32 S" acc_out [31:0] $end
$var parameter 32 T" ACC_WIDTH $end
$var parameter 32 U" DATA_WIDTH $end
$var parameter 64 V" PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_INPUT[0] $end
$var parameter 2 W" i $end
$upscope $end
$scope begin GEN_TREE_INPUT[1] $end
$var parameter 2 X" i $end
$upscope $end
$scope begin GEN_TREE_INPUT[2] $end
$var parameter 3 Y" i $end
$upscope $end
$scope begin GEN_TREE_INPUT[3] $end
$var parameter 3 Z" i $end
$upscope $end
$scope begin GEN_TREE_INPUT[4] $end
$var parameter 4 [" i $end
$upscope $end
$scope begin GEN_TREE_INPUT[5] $end
$var parameter 4 \" i $end
$upscope $end
$scope begin GEN_TREE_INPUT[6] $end
$var parameter 4 ]" i $end
$upscope $end
$scope begin GEN_TREE_INPUT[7] $end
$var parameter 4 ^" i $end
$upscope $end
$scope begin GEN_TREE_LEVEL[0] $end
$var parameter 2 _" level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 `" node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 a" node $end
$upscope $end
$scope begin GEN_TREE_NODE[2] $end
$var parameter 3 b" node $end
$upscope $end
$scope begin GEN_TREE_NODE[3] $end
$var parameter 3 c" node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[1] $end
$var parameter 2 d" level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 e" node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 f" node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[2] $end
$var parameter 3 g" level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 h" node $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$scope begin GEN_NEURON[1] $end
$var parameter 2 i" n $end
$scope module u_neuron $end
$var wire 2 j" activation [1:0] $end
$var wire 8 k" bias [7:0] $end
$var wire 1 * clk $end
$var wire 1 l" final_acc_in_range $end
$var wire 1 m" final_acc_le_zero $end
$var wire 1 n" final_acc_upper_all0 $end
$var wire 16 o" n_inputs_real [15:0] $end
$var wire 1 + rst $end
$var wire 1 , start $end
$var wire 256 p" w_bus [255:0] $end
$var wire 256 q" x_bus [255:0] $end
$var wire 8 r" y_relu [7:0] $end
$var wire 8 s" y_none [7:0] $end
$var wire 64 t" x_group [63:0] $end
$var wire 64 u" w_group [63:0] $end
$var wire 16 v" groups_real [15:0] $end
$var wire 1 w" final_acc_upper_all1 $end
$var wire 1 x" final_acc_sign $end
$var wire 32 y" final_acc [31:0] $end
$var wire 32 z" bias_ext [31:0] $end
$var wire 32 {" acc_next [31:0] $end
$var parameter 32 |" ACC_WIDTH $end
$var parameter 2 }" ACT_NONE $end
$var parameter 2 ~" ACT_RELU $end
$var parameter 32 !# DATA_WIDTH $end
$var parameter 32 "# GROUPS $end
$var parameter 32 ## GROUP_INDEX_WIDTH $end
$var parameter 32 $# N_INPUTS $end
$var parameter 32 %# PARALLEL $end
$var reg 32 &# acc [31:0] $end
$var reg 1 '# busy $end
$var reg 1 (# done $end
$var reg 1 )# finishing $end
$var reg 2 *# group_index [1:0] $end
$var reg 8 +# y [7:0] $end
$scope module u_mac8 $end
$var wire 32 ,# acc_in [31:0] $end
$var wire 64 -# w_bus [63:0] $end
$var wire 64 .# x_bus [63:0] $end
$var wire 32 /# acc_out [31:0] $end
$var parameter 32 0# ACC_WIDTH $end
$var parameter 32 1# DATA_WIDTH $end
$var parameter 32 2# PARALLEL $end
$var parameter 32 3# TREE_LEVELS $end
$scope begin GEN_MAC[0] $end
$var parameter 2 4# i $end
$scope module u_mac $end
$var wire 32 5# acc_in [31:0] $end
$var wire 8 6# w [7:0] $end
$var wire 8 7# x [7:0] $end
$var wire 32 8# product_ext [31:0] $end
$var wire 16 9# product [15:0] $end
$var wire 32 :# acc_out [31:0] $end
$var parameter 32 ;# ACC_WIDTH $end
$var parameter 32 <# DATA_WIDTH $end
$var parameter 64 =# PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[1] $end
$var parameter 2 ># i $end
$scope module u_mac $end
$var wire 32 ?# acc_in [31:0] $end
$var wire 8 @# w [7:0] $end
$var wire 8 A# x [7:0] $end
$var wire 32 B# product_ext [31:0] $end
$var wire 16 C# product [15:0] $end
$var wire 32 D# acc_out [31:0] $end
$var parameter 32 E# ACC_WIDTH $end
$var parameter 32 F# DATA_WIDTH $end
$var parameter 64 G# PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[2] $end
$var parameter 3 H# i $end
$scope module u_mac $end
$var wire 32 I# acc_in [31:0] $end
$var wire 8 J# w [7:0] $end
$var wire 8 K# x [7:0] $end
$var wire 32 L# product_ext [31:0] $end
$var wire 16 M# product [15:0] $end
$var wire 32 N# acc_out [31:0] $end
$var parameter 32 O# ACC_WIDTH $end
$var parameter 32 P# DATA_WIDTH $end
$var parameter 64 Q# PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[3] $end
$var parameter 3 R# i $end
$scope module u_mac $end
$var wire 32 S# acc_in [31:0] $end
$var wire 8 T# w [7:0] $end
$var wire 8 U# x [7:0] $end
$var wire 32 V# product_ext [31:0] $end
$var wire 16 W# product [15:0] $end
$var wire 32 X# acc_out [31:0] $end
$var parameter 32 Y# ACC_WIDTH $end
$var parameter 32 Z# DATA_WIDTH $end
$var parameter 64 [# PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[4] $end
$var parameter 4 \# i $end
$scope module u_mac $end
$var wire 32 ]# acc_in [31:0] $end
$var wire 8 ^# w [7:0] $end
$var wire 8 _# x [7:0] $end
$var wire 32 `# product_ext [31:0] $end
$var wire 16 a# product [15:0] $end
$var wire 32 b# acc_out [31:0] $end
$var parameter 32 c# ACC_WIDTH $end
$var parameter 32 d# DATA_WIDTH $end
$var parameter 64 e# PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[5] $end
$var parameter 4 f# i $end
$scope module u_mac $end
$var wire 32 g# acc_in [31:0] $end
$var wire 8 h# w [7:0] $end
$var wire 8 i# x [7:0] $end
$var wire 32 j# product_ext [31:0] $end
$var wire 16 k# product [15:0] $end
$var wire 32 l# acc_out [31:0] $end
$var parameter 32 m# ACC_WIDTH $end
$var parameter 32 n# DATA_WIDTH $end
$var parameter 64 o# PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[6] $end
$var parameter 4 p# i $end
$scope module u_mac $end
$var wire 32 q# acc_in [31:0] $end
$var wire 8 r# w [7:0] $end
$var wire 8 s# x [7:0] $end
$var wire 32 t# product_ext [31:0] $end
$var wire 16 u# product [15:0] $end
$var wire 32 v# acc_out [31:0] $end
$var parameter 32 w# ACC_WIDTH $end
$var parameter 32 x# DATA_WIDTH $end
$var parameter 64 y# PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[7] $end
$var parameter 4 z# i $end
$scope module u_mac $end
$var wire 32 {# acc_in [31:0] $end
$var wire 8 |# w [7:0] $end
$var wire 8 }# x [7:0] $end
$var wire 32 ~# product_ext [31:0] $end
$var wire 16 !$ product [15:0] $end
$var wire 32 "$ acc_out [31:0] $end
$var parameter 32 #$ ACC_WIDTH $end
$var parameter 32 $$ DATA_WIDTH $end
$var parameter 64 %$ PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_INPUT[0] $end
$var parameter 2 &$ i $end
$upscope $end
$scope begin GEN_TREE_INPUT[1] $end
$var parameter 2 '$ i $end
$upscope $end
$scope begin GEN_TREE_INPUT[2] $end
$var parameter 3 ($ i $end
$upscope $end
$scope begin GEN_TREE_INPUT[3] $end
$var parameter 3 )$ i $end
$upscope $end
$scope begin GEN_TREE_INPUT[4] $end
$var parameter 4 *$ i $end
$upscope $end
$scope begin GEN_TREE_INPUT[5] $end
$var parameter 4 +$ i $end
$upscope $end
$scope begin GEN_TREE_INPUT[6] $end
$var parameter 4 ,$ i $end
$upscope $end
$scope begin GEN_TREE_INPUT[7] $end
$var parameter 4 -$ i $end
$upscope $end
$scope begin GEN_TREE_LEVEL[0] $end
$var parameter 2 .$ level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 /$ node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 0$ node $end
$upscope $end
$scope begin GEN_TREE_NODE[2] $end
$var parameter 3 1$ node $end
$upscope $end
$scope begin GEN_TREE_NODE[3] $end
$var parameter 3 2$ node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[1] $end
$var parameter 2 3$ level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 4$ node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 5$ node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[2] $end
$var parameter 3 6$ level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 7$ node $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$scope begin GEN_NEURON[2] $end
$var parameter 3 8$ n $end
$scope module u_neuron $end
$var wire 2 9$ activation [1:0] $end
$var wire 8 :$ bias [7:0] $end
$var wire 1 * clk $end
$var wire 1 ;$ final_acc_in_range $end
$var wire 1 <$ final_acc_le_zero $end
$var wire 1 =$ final_acc_upper_all0 $end
$var wire 16 >$ n_inputs_real [15:0] $end
$var wire 1 + rst $end
$var wire 1 , start $end
$var wire 256 ?$ w_bus [255:0] $end
$var wire 256 @$ x_bus [255:0] $end
$var wire 8 A$ y_relu [7:0] $end
$var wire 8 B$ y_none [7:0] $end
$var wire 64 C$ x_group [63:0] $end
$var wire 64 D$ w_group [63:0] $end
$var wire 16 E$ groups_real [15:0] $end
$var wire 1 F$ final_acc_upper_all1 $end
$var wire 1 G$ final_acc_sign $end
$var wire 32 H$ final_acc [31:0] $end
$var wire 32 I$ bias_ext [31:0] $end
$var wire 32 J$ acc_next [31:0] $end
$var parameter 32 K$ ACC_WIDTH $end
$var parameter 2 L$ ACT_NONE $end
$var parameter 2 M$ ACT_RELU $end
$var parameter 32 N$ DATA_WIDTH $end
$var parameter 32 O$ GROUPS $end
$var parameter 32 P$ GROUP_INDEX_WIDTH $end
$var parameter 32 Q$ N_INPUTS $end
$var parameter 32 R$ PARALLEL $end
$var reg 32 S$ acc [31:0] $end
$var reg 1 T$ busy $end
$var reg 1 U$ done $end
$var reg 1 V$ finishing $end
$var reg 2 W$ group_index [1:0] $end
$var reg 8 X$ y [7:0] $end
$scope module u_mac8 $end
$var wire 32 Y$ acc_in [31:0] $end
$var wire 64 Z$ w_bus [63:0] $end
$var wire 64 [$ x_bus [63:0] $end
$var wire 32 \$ acc_out [31:0] $end
$var parameter 32 ]$ ACC_WIDTH $end
$var parameter 32 ^$ DATA_WIDTH $end
$var parameter 32 _$ PARALLEL $end
$var parameter 32 `$ TREE_LEVELS $end
$scope begin GEN_MAC[0] $end
$var parameter 2 a$ i $end
$scope module u_mac $end
$var wire 32 b$ acc_in [31:0] $end
$var wire 8 c$ w [7:0] $end
$var wire 8 d$ x [7:0] $end
$var wire 32 e$ product_ext [31:0] $end
$var wire 16 f$ product [15:0] $end
$var wire 32 g$ acc_out [31:0] $end
$var parameter 32 h$ ACC_WIDTH $end
$var parameter 32 i$ DATA_WIDTH $end
$var parameter 64 j$ PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[1] $end
$var parameter 2 k$ i $end
$scope module u_mac $end
$var wire 32 l$ acc_in [31:0] $end
$var wire 8 m$ w [7:0] $end
$var wire 8 n$ x [7:0] $end
$var wire 32 o$ product_ext [31:0] $end
$var wire 16 p$ product [15:0] $end
$var wire 32 q$ acc_out [31:0] $end
$var parameter 32 r$ ACC_WIDTH $end
$var parameter 32 s$ DATA_WIDTH $end
$var parameter 64 t$ PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[2] $end
$var parameter 3 u$ i $end
$scope module u_mac $end
$var wire 32 v$ acc_in [31:0] $end
$var wire 8 w$ w [7:0] $end
$var wire 8 x$ x [7:0] $end
$var wire 32 y$ product_ext [31:0] $end
$var wire 16 z$ product [15:0] $end
$var wire 32 {$ acc_out [31:0] $end
$var parameter 32 |$ ACC_WIDTH $end
$var parameter 32 }$ DATA_WIDTH $end
$var parameter 64 ~$ PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[3] $end
$var parameter 3 !% i $end
$scope module u_mac $end
$var wire 32 "% acc_in [31:0] $end
$var wire 8 #% w [7:0] $end
$var wire 8 $% x [7:0] $end
$var wire 32 %% product_ext [31:0] $end
$var wire 16 &% product [15:0] $end
$var wire 32 '% acc_out [31:0] $end
$var parameter 32 (% ACC_WIDTH $end
$var parameter 32 )% DATA_WIDTH $end
$var parameter 64 *% PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[4] $end
$var parameter 4 +% i $end
$scope module u_mac $end
$var wire 32 ,% acc_in [31:0] $end
$var wire 8 -% w [7:0] $end
$var wire 8 .% x [7:0] $end
$var wire 32 /% product_ext [31:0] $end
$var wire 16 0% product [15:0] $end
$var wire 32 1% acc_out [31:0] $end
$var parameter 32 2% ACC_WIDTH $end
$var parameter 32 3% DATA_WIDTH $end
$var parameter 64 4% PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[5] $end
$var parameter 4 5% i $end
$scope module u_mac $end
$var wire 32 6% acc_in [31:0] $end
$var wire 8 7% w [7:0] $end
$var wire 8 8% x [7:0] $end
$var wire 32 9% product_ext [31:0] $end
$var wire 16 :% product [15:0] $end
$var wire 32 ;% acc_out [31:0] $end
$var parameter 32 <% ACC_WIDTH $end
$var parameter 32 =% DATA_WIDTH $end
$var parameter 64 >% PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[6] $end
$var parameter 4 ?% i $end
$scope module u_mac $end
$var wire 32 @% acc_in [31:0] $end
$var wire 8 A% w [7:0] $end
$var wire 8 B% x [7:0] $end
$var wire 32 C% product_ext [31:0] $end
$var wire 16 D% product [15:0] $end
$var wire 32 E% acc_out [31:0] $end
$var parameter 32 F% ACC_WIDTH $end
$var parameter 32 G% DATA_WIDTH $end
$var parameter 64 H% PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[7] $end
$var parameter 4 I% i $end
$scope module u_mac $end
$var wire 32 J% acc_in [31:0] $end
$var wire 8 K% w [7:0] $end
$var wire 8 L% x [7:0] $end
$var wire 32 M% product_ext [31:0] $end
$var wire 16 N% product [15:0] $end
$var wire 32 O% acc_out [31:0] $end
$var parameter 32 P% ACC_WIDTH $end
$var parameter 32 Q% DATA_WIDTH $end
$var parameter 64 R% PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_INPUT[0] $end
$var parameter 2 S% i $end
$upscope $end
$scope begin GEN_TREE_INPUT[1] $end
$var parameter 2 T% i $end
$upscope $end
$scope begin GEN_TREE_INPUT[2] $end
$var parameter 3 U% i $end
$upscope $end
$scope begin GEN_TREE_INPUT[3] $end
$var parameter 3 V% i $end
$upscope $end
$scope begin GEN_TREE_INPUT[4] $end
$var parameter 4 W% i $end
$upscope $end
$scope begin GEN_TREE_INPUT[5] $end
$var parameter 4 X% i $end
$upscope $end
$scope begin GEN_TREE_INPUT[6] $end
$var parameter 4 Y% i $end
$upscope $end
$scope begin GEN_TREE_INPUT[7] $end
$var parameter 4 Z% i $end
$upscope $end
$scope begin GEN_TREE_LEVEL[0] $end
$var parameter 2 [% level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 \% node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 ]% node $end
$upscope $end
$scope begin GEN_TREE_NODE[2] $end
$var parameter 3 ^% node $end
$upscope $end
$scope begin GEN_TREE_NODE[3] $end
$var parameter 3 _% node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[1] $end
$var parameter 2 `% level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 a% node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 b% node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[2] $end
$var parameter 3 c% level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 d% node $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$scope begin GEN_NEURON[3] $end
$var parameter 3 e% n $end
$scope module u_neuron $end
$var wire 2 f% activation [1:0] $end
$var wire 8 g% bias [7:0] $end
$var wire 1 * clk $end
$var wire 1 h% final_acc_in_range $end
$var wire 1 i% final_acc_le_zero $end
$var wire 1 j% final_acc_upper_all0 $end
$var wire 16 k% n_inputs_real [15:0] $end
$var wire 1 + rst $end
$var wire 1 , start $end
$var wire 256 l% w_bus [255:0] $end
$var wire 256 m% x_bus [255:0] $end
$var wire 8 n% y_relu [7:0] $end
$var wire 8 o% y_none [7:0] $end
$var wire 64 p% x_group [63:0] $end
$var wire 64 q% w_group [63:0] $end
$var wire 16 r% groups_real [15:0] $end
$var wire 1 s% final_acc_upper_all1 $end
$var wire 1 t% final_acc_sign $end
$var wire 32 u% final_acc [31:0] $end
$var wire 32 v% bias_ext [31:0] $end
$var wire 32 w% acc_next [31:0] $end
$var parameter 32 x% ACC_WIDTH $end
$var parameter 2 y% ACT_NONE $end
$var parameter 2 z% ACT_RELU $end
$var parameter 32 {% DATA_WIDTH $end
$var parameter 32 |% GROUPS $end
$var parameter 32 }% GROUP_INDEX_WIDTH $end
$var parameter 32 ~% N_INPUTS $end
$var parameter 32 !& PARALLEL $end
$var reg 32 "& acc [31:0] $end
$var reg 1 #& busy $end
$var reg 1 $& done $end
$var reg 1 %& finishing $end
$var reg 2 && group_index [1:0] $end
$var reg 8 '& y [7:0] $end
$scope module u_mac8 $end
$var wire 32 (& acc_in [31:0] $end
$var wire 64 )& w_bus [63:0] $end
$var wire 64 *& x_bus [63:0] $end
$var wire 32 +& acc_out [31:0] $end
$var parameter 32 ,& ACC_WIDTH $end
$var parameter 32 -& DATA_WIDTH $end
$var parameter 32 .& PARALLEL $end
$var parameter 32 /& TREE_LEVELS $end
$scope begin GEN_MAC[0] $end
$var parameter 2 0& i $end
$scope module u_mac $end
$var wire 32 1& acc_in [31:0] $end
$var wire 8 2& w [7:0] $end
$var wire 8 3& x [7:0] $end
$var wire 32 4& product_ext [31:0] $end
$var wire 16 5& product [15:0] $end
$var wire 32 6& acc_out [31:0] $end
$var parameter 32 7& ACC_WIDTH $end
$var parameter 32 8& DATA_WIDTH $end
$var parameter 64 9& PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[1] $end
$var parameter 2 :& i $end
$scope module u_mac $end
$var wire 32 ;& acc_in [31:0] $end
$var wire 8 <& w [7:0] $end
$var wire 8 =& x [7:0] $end
$var wire 32 >& product_ext [31:0] $end
$var wire 16 ?& product [15:0] $end
$var wire 32 @& acc_out [31:0] $end
$var parameter 32 A& ACC_WIDTH $end
$var parameter 32 B& DATA_WIDTH $end
$var parameter 64 C& PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[2] $end
$var parameter 3 D& i $end
$scope module u_mac $end
$var wire 32 E& acc_in [31:0] $end
$var wire 8 F& w [7:0] $end
$var wire 8 G& x [7:0] $end
$var wire 32 H& product_ext [31:0] $end
$var wire 16 I& product [15:0] $end
$var wire 32 J& acc_out [31:0] $end
$var parameter 32 K& ACC_WIDTH $end
$var parameter 32 L& DATA_WIDTH $end
$var parameter 64 M& PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[3] $end
$var parameter 3 N& i $end
$scope module u_mac $end
$var wire 32 O& acc_in [31:0] $end
$var wire 8 P& w [7:0] $end
$var wire 8 Q& x [7:0] $end
$var wire 32 R& product_ext [31:0] $end
$var wire 16 S& product [15:0] $end
$var wire 32 T& acc_out [31:0] $end
$var parameter 32 U& ACC_WIDTH $end
$var parameter 32 V& DATA_WIDTH $end
$var parameter 64 W& PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[4] $end
$var parameter 4 X& i $end
$scope module u_mac $end
$var wire 32 Y& acc_in [31:0] $end
$var wire 8 Z& w [7:0] $end
$var wire 8 [& x [7:0] $end
$var wire 32 \& product_ext [31:0] $end
$var wire 16 ]& product [15:0] $end
$var wire 32 ^& acc_out [31:0] $end
$var parameter 32 _& ACC_WIDTH $end
$var parameter 32 `& DATA_WIDTH $end
$var parameter 64 a& PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[5] $end
$var parameter 4 b& i $end
$scope module u_mac $end
$var wire 32 c& acc_in [31:0] $end
$var wire 8 d& w [7:0] $end
$var wire 8 e& x [7:0] $end
$var wire 32 f& product_ext [31:0] $end
$var wire 16 g& product [15:0] $end
$var wire 32 h& acc_out [31:0] $end
$var parameter 32 i& ACC_WIDTH $end
$var parameter 32 j& DATA_WIDTH $end
$var parameter 64 k& PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[6] $end
$var parameter 4 l& i $end
$scope module u_mac $end
$var wire 32 m& acc_in [31:0] $end
$var wire 8 n& w [7:0] $end
$var wire 8 o& x [7:0] $end
$var wire 32 p& product_ext [31:0] $end
$var wire 16 q& product [15:0] $end
$var wire 32 r& acc_out [31:0] $end
$var parameter 32 s& ACC_WIDTH $end
$var parameter 32 t& DATA_WIDTH $end
$var parameter 64 u& PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[7] $end
$var parameter 4 v& i $end
$scope module u_mac $end
$var wire 32 w& acc_in [31:0] $end
$var wire 8 x& w [7:0] $end
$var wire 8 y& x [7:0] $end
$var wire 32 z& product_ext [31:0] $end
$var wire 16 {& product [15:0] $end
$var wire 32 |& acc_out [31:0] $end
$var parameter 32 }& ACC_WIDTH $end
$var parameter 32 ~& DATA_WIDTH $end
$var parameter 64 !' PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_INPUT[0] $end
$var parameter 2 "' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[1] $end
$var parameter 2 #' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[2] $end
$var parameter 3 $' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[3] $end
$var parameter 3 %' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[4] $end
$var parameter 4 &' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[5] $end
$var parameter 4 '' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[6] $end
$var parameter 4 (' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[7] $end
$var parameter 4 )' i $end
$upscope $end
$scope begin GEN_TREE_LEVEL[0] $end
$var parameter 2 *' level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 +' node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 ,' node $end
$upscope $end
$scope begin GEN_TREE_NODE[2] $end
$var parameter 3 -' node $end
$upscope $end
$scope begin GEN_TREE_NODE[3] $end
$var parameter 3 .' node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[1] $end
$var parameter 2 /' level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 0' node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 1' node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[2] $end
$var parameter 3 2' level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 3' node $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$scope begin GEN_NEURON[4] $end
$var parameter 4 4' n $end
$scope module u_neuron $end
$var wire 2 5' activation [1:0] $end
$var wire 8 6' bias [7:0] $end
$var wire 1 * clk $end
$var wire 1 7' final_acc_in_range $end
$var wire 1 8' final_acc_le_zero $end
$var wire 1 9' final_acc_upper_all0 $end
$var wire 16 :' n_inputs_real [15:0] $end
$var wire 1 + rst $end
$var wire 1 , start $end
$var wire 256 ;' w_bus [255:0] $end
$var wire 256 <' x_bus [255:0] $end
$var wire 8 =' y_relu [7:0] $end
$var wire 8 >' y_none [7:0] $end
$var wire 64 ?' x_group [63:0] $end
$var wire 64 @' w_group [63:0] $end
$var wire 16 A' groups_real [15:0] $end
$var wire 1 B' final_acc_upper_all1 $end
$var wire 1 C' final_acc_sign $end
$var wire 32 D' final_acc [31:0] $end
$var wire 32 E' bias_ext [31:0] $end
$var wire 32 F' acc_next [31:0] $end
$var parameter 32 G' ACC_WIDTH $end
$var parameter 2 H' ACT_NONE $end
$var parameter 2 I' ACT_RELU $end
$var parameter 32 J' DATA_WIDTH $end
$var parameter 32 K' GROUPS $end
$var parameter 32 L' GROUP_INDEX_WIDTH $end
$var parameter 32 M' N_INPUTS $end
$var parameter 32 N' PARALLEL $end
$var reg 32 O' acc [31:0] $end
$var reg 1 P' busy $end
$var reg 1 Q' done $end
$var reg 1 R' finishing $end
$var reg 2 S' group_index [1:0] $end
$var reg 8 T' y [7:0] $end
$scope module u_mac8 $end
$var wire 32 U' acc_in [31:0] $end
$var wire 64 V' w_bus [63:0] $end
$var wire 64 W' x_bus [63:0] $end
$var wire 32 X' acc_out [31:0] $end
$var parameter 32 Y' ACC_WIDTH $end
$var parameter 32 Z' DATA_WIDTH $end
$var parameter 32 [' PARALLEL $end
$var parameter 32 \' TREE_LEVELS $end
$scope begin GEN_MAC[0] $end
$var parameter 2 ]' i $end
$scope module u_mac $end
$var wire 32 ^' acc_in [31:0] $end
$var wire 8 _' w [7:0] $end
$var wire 8 `' x [7:0] $end
$var wire 32 a' product_ext [31:0] $end
$var wire 16 b' product [15:0] $end
$var wire 32 c' acc_out [31:0] $end
$var parameter 32 d' ACC_WIDTH $end
$var parameter 32 e' DATA_WIDTH $end
$var parameter 64 f' PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[1] $end
$var parameter 2 g' i $end
$scope module u_mac $end
$var wire 32 h' acc_in [31:0] $end
$var wire 8 i' w [7:0] $end
$var wire 8 j' x [7:0] $end
$var wire 32 k' product_ext [31:0] $end
$var wire 16 l' product [15:0] $end
$var wire 32 m' acc_out [31:0] $end
$var parameter 32 n' ACC_WIDTH $end
$var parameter 32 o' DATA_WIDTH $end
$var parameter 64 p' PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[2] $end
$var parameter 3 q' i $end
$scope module u_mac $end
$var wire 32 r' acc_in [31:0] $end
$var wire 8 s' w [7:0] $end
$var wire 8 t' x [7:0] $end
$var wire 32 u' product_ext [31:0] $end
$var wire 16 v' product [15:0] $end
$var wire 32 w' acc_out [31:0] $end
$var parameter 32 x' ACC_WIDTH $end
$var parameter 32 y' DATA_WIDTH $end
$var parameter 64 z' PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[3] $end
$var parameter 3 {' i $end
$scope module u_mac $end
$var wire 32 |' acc_in [31:0] $end
$var wire 8 }' w [7:0] $end
$var wire 8 ~' x [7:0] $end
$var wire 32 !( product_ext [31:0] $end
$var wire 16 "( product [15:0] $end
$var wire 32 #( acc_out [31:0] $end
$var parameter 32 $( ACC_WIDTH $end
$var parameter 32 %( DATA_WIDTH $end
$var parameter 64 &( PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[4] $end
$var parameter 4 '( i $end
$scope module u_mac $end
$var wire 32 (( acc_in [31:0] $end
$var wire 8 )( w [7:0] $end
$var wire 8 *( x [7:0] $end
$var wire 32 +( product_ext [31:0] $end
$var wire 16 ,( product [15:0] $end
$var wire 32 -( acc_out [31:0] $end
$var parameter 32 .( ACC_WIDTH $end
$var parameter 32 /( DATA_WIDTH $end
$var parameter 64 0( PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[5] $end
$var parameter 4 1( i $end
$scope module u_mac $end
$var wire 32 2( acc_in [31:0] $end
$var wire 8 3( w [7:0] $end
$var wire 8 4( x [7:0] $end
$var wire 32 5( product_ext [31:0] $end
$var wire 16 6( product [15:0] $end
$var wire 32 7( acc_out [31:0] $end
$var parameter 32 8( ACC_WIDTH $end
$var parameter 32 9( DATA_WIDTH $end
$var parameter 64 :( PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[6] $end
$var parameter 4 ;( i $end
$scope module u_mac $end
$var wire 32 <( acc_in [31:0] $end
$var wire 8 =( w [7:0] $end
$var wire 8 >( x [7:0] $end
$var wire 32 ?( product_ext [31:0] $end
$var wire 16 @( product [15:0] $end
$var wire 32 A( acc_out [31:0] $end
$var parameter 32 B( ACC_WIDTH $end
$var parameter 32 C( DATA_WIDTH $end
$var parameter 64 D( PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[7] $end
$var parameter 4 E( i $end
$scope module u_mac $end
$var wire 32 F( acc_in [31:0] $end
$var wire 8 G( w [7:0] $end
$var wire 8 H( x [7:0] $end
$var wire 32 I( product_ext [31:0] $end
$var wire 16 J( product [15:0] $end
$var wire 32 K( acc_out [31:0] $end
$var parameter 32 L( ACC_WIDTH $end
$var parameter 32 M( DATA_WIDTH $end
$var parameter 64 N( PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_INPUT[0] $end
$var parameter 2 O( i $end
$upscope $end
$scope begin GEN_TREE_INPUT[1] $end
$var parameter 2 P( i $end
$upscope $end
$scope begin GEN_TREE_INPUT[2] $end
$var parameter 3 Q( i $end
$upscope $end
$scope begin GEN_TREE_INPUT[3] $end
$var parameter 3 R( i $end
$upscope $end
$scope begin GEN_TREE_INPUT[4] $end
$var parameter 4 S( i $end
$upscope $end
$scope begin GEN_TREE_INPUT[5] $end
$var parameter 4 T( i $end
$upscope $end
$scope begin GEN_TREE_INPUT[6] $end
$var parameter 4 U( i $end
$upscope $end
$scope begin GEN_TREE_INPUT[7] $end
$var parameter 4 V( i $end
$upscope $end
$scope begin GEN_TREE_LEVEL[0] $end
$var parameter 2 W( level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 X( node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 Y( node $end
$upscope $end
$scope begin GEN_TREE_NODE[2] $end
$var parameter 3 Z( node $end
$upscope $end
$scope begin GEN_TREE_NODE[3] $end
$var parameter 3 [( node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[1] $end
$var parameter 2 \( level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 ]( node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 ^( node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[2] $end
$var parameter 3 _( level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 `( node $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$scope begin GEN_NEURON[5] $end
$var parameter 4 a( n $end
$scope module u_neuron $end
$var wire 2 b( activation [1:0] $end
$var wire 8 c( bias [7:0] $end
$var wire 1 * clk $end
$var wire 1 d( final_acc_in_range $end
$var wire 1 e( final_acc_le_zero $end
$var wire 1 f( final_acc_upper_all0 $end
$var wire 16 g( n_inputs_real [15:0] $end
$var wire 1 + rst $end
$var wire 1 , start $end
$var wire 256 h( w_bus [255:0] $end
$var wire 256 i( x_bus [255:0] $end
$var wire 8 j( y_relu [7:0] $end
$var wire 8 k( y_none [7:0] $end
$var wire 64 l( x_group [63:0] $end
$var wire 64 m( w_group [63:0] $end
$var wire 16 n( groups_real [15:0] $end
$var wire 1 o( final_acc_upper_all1 $end
$var wire 1 p( final_acc_sign $end
$var wire 32 q( final_acc [31:0] $end
$var wire 32 r( bias_ext [31:0] $end
$var wire 32 s( acc_next [31:0] $end
$var parameter 32 t( ACC_WIDTH $end
$var parameter 2 u( ACT_NONE $end
$var parameter 2 v( ACT_RELU $end
$var parameter 32 w( DATA_WIDTH $end
$var parameter 32 x( GROUPS $end
$var parameter 32 y( GROUP_INDEX_WIDTH $end
$var parameter 32 z( N_INPUTS $end
$var parameter 32 {( PARALLEL $end
$var reg 32 |( acc [31:0] $end
$var reg 1 }( busy $end
$var reg 1 ~( done $end
$var reg 1 !) finishing $end
$var reg 2 ") group_index [1:0] $end
$var reg 8 #) y [7:0] $end
$scope module u_mac8 $end
$var wire 32 $) acc_in [31:0] $end
$var wire 64 %) w_bus [63:0] $end
$var wire 64 &) x_bus [63:0] $end
$var wire 32 ') acc_out [31:0] $end
$var parameter 32 () ACC_WIDTH $end
$var parameter 32 )) DATA_WIDTH $end
$var parameter 32 *) PARALLEL $end
$var parameter 32 +) TREE_LEVELS $end
$scope begin GEN_MAC[0] $end
$var parameter 2 ,) i $end
$scope module u_mac $end
$var wire 32 -) acc_in [31:0] $end
$var wire 8 .) w [7:0] $end
$var wire 8 /) x [7:0] $end
$var wire 32 0) product_ext [31:0] $end
$var wire 16 1) product [15:0] $end
$var wire 32 2) acc_out [31:0] $end
$var parameter 32 3) ACC_WIDTH $end
$var parameter 32 4) DATA_WIDTH $end
$var parameter 64 5) PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[1] $end
$var parameter 2 6) i $end
$scope module u_mac $end
$var wire 32 7) acc_in [31:0] $end
$var wire 8 8) w [7:0] $end
$var wire 8 9) x [7:0] $end
$var wire 32 :) product_ext [31:0] $end
$var wire 16 ;) product [15:0] $end
$var wire 32 <) acc_out [31:0] $end
$var parameter 32 =) ACC_WIDTH $end
$var parameter 32 >) DATA_WIDTH $end
$var parameter 64 ?) PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[2] $end
$var parameter 3 @) i $end
$scope module u_mac $end
$var wire 32 A) acc_in [31:0] $end
$var wire 8 B) w [7:0] $end
$var wire 8 C) x [7:0] $end
$var wire 32 D) product_ext [31:0] $end
$var wire 16 E) product [15:0] $end
$var wire 32 F) acc_out [31:0] $end
$var parameter 32 G) ACC_WIDTH $end
$var parameter 32 H) DATA_WIDTH $end
$var parameter 64 I) PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[3] $end
$var parameter 3 J) i $end
$scope module u_mac $end
$var wire 32 K) acc_in [31:0] $end
$var wire 8 L) w [7:0] $end
$var wire 8 M) x [7:0] $end
$var wire 32 N) product_ext [31:0] $end
$var wire 16 O) product [15:0] $end
$var wire 32 P) acc_out [31:0] $end
$var parameter 32 Q) ACC_WIDTH $end
$var parameter 32 R) DATA_WIDTH $end
$var parameter 64 S) PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[4] $end
$var parameter 4 T) i $end
$scope module u_mac $end
$var wire 32 U) acc_in [31:0] $end
$var wire 8 V) w [7:0] $end
$var wire 8 W) x [7:0] $end
$var wire 32 X) product_ext [31:0] $end
$var wire 16 Y) product [15:0] $end
$var wire 32 Z) acc_out [31:0] $end
$var parameter 32 [) ACC_WIDTH $end
$var parameter 32 \) DATA_WIDTH $end
$var parameter 64 ]) PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[5] $end
$var parameter 4 ^) i $end
$scope module u_mac $end
$var wire 32 _) acc_in [31:0] $end
$var wire 8 `) w [7:0] $end
$var wire 8 a) x [7:0] $end
$var wire 32 b) product_ext [31:0] $end
$var wire 16 c) product [15:0] $end
$var wire 32 d) acc_out [31:0] $end
$var parameter 32 e) ACC_WIDTH $end
$var parameter 32 f) DATA_WIDTH $end
$var parameter 64 g) PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[6] $end
$var parameter 4 h) i $end
$scope module u_mac $end
$var wire 32 i) acc_in [31:0] $end
$var wire 8 j) w [7:0] $end
$var wire 8 k) x [7:0] $end
$var wire 32 l) product_ext [31:0] $end
$var wire 16 m) product [15:0] $end
$var wire 32 n) acc_out [31:0] $end
$var parameter 32 o) ACC_WIDTH $end
$var parameter 32 p) DATA_WIDTH $end
$var parameter 64 q) PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[7] $end
$var parameter 4 r) i $end
$scope module u_mac $end
$var wire 32 s) acc_in [31:0] $end
$var wire 8 t) w [7:0] $end
$var wire 8 u) x [7:0] $end
$var wire 32 v) product_ext [31:0] $end
$var wire 16 w) product [15:0] $end
$var wire 32 x) acc_out [31:0] $end
$var parameter 32 y) ACC_WIDTH $end
$var parameter 32 z) DATA_WIDTH $end
$var parameter 64 {) PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_INPUT[0] $end
$var parameter 2 |) i $end
$upscope $end
$scope begin GEN_TREE_INPUT[1] $end
$var parameter 2 }) i $end
$upscope $end
$scope begin GEN_TREE_INPUT[2] $end
$var parameter 3 ~) i $end
$upscope $end
$scope begin GEN_TREE_INPUT[3] $end
$var parameter 3 !* i $end
$upscope $end
$scope begin GEN_TREE_INPUT[4] $end
$var parameter 4 "* i $end
$upscope $end
$scope begin GEN_TREE_INPUT[5] $end
$var parameter 4 #* i $end
$upscope $end
$scope begin GEN_TREE_INPUT[6] $end
$var parameter 4 $* i $end
$upscope $end
$scope begin GEN_TREE_INPUT[7] $end
$var parameter 4 %* i $end
$upscope $end
$scope begin GEN_TREE_LEVEL[0] $end
$var parameter 2 &* level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 '* node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 (* node $end
$upscope $end
$scope begin GEN_TREE_NODE[2] $end
$var parameter 3 )* node $end
$upscope $end
$scope begin GEN_TREE_NODE[3] $end
$var parameter 3 ** node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[1] $end
$var parameter 2 +* level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 ,* node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 -* node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[2] $end
$var parameter 3 .* level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 /* node $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$scope begin GEN_NEURON[6] $end
$var parameter 4 0* n $end
$scope module u_neuron $end
$var wire 2 1* activation [1:0] $end
$var wire 8 2* bias [7:0] $end
$var wire 1 * clk $end
$var wire 1 3* final_acc_in_range $end
$var wire 1 4* final_acc_le_zero $end
$var wire 1 5* final_acc_upper_all0 $end
$var wire 16 6* n_inputs_real [15:0] $end
$var wire 1 + rst $end
$var wire 1 , start $end
$var wire 256 7* w_bus [255:0] $end
$var wire 256 8* x_bus [255:0] $end
$var wire 8 9* y_relu [7:0] $end
$var wire 8 :* y_none [7:0] $end
$var wire 64 ;* x_group [63:0] $end
$var wire 64 <* w_group [63:0] $end
$var wire 16 =* groups_real [15:0] $end
$var wire 1 >* final_acc_upper_all1 $end
$var wire 1 ?* final_acc_sign $end
$var wire 32 @* final_acc [31:0] $end
$var wire 32 A* bias_ext [31:0] $end
$var wire 32 B* acc_next [31:0] $end
$var parameter 32 C* ACC_WIDTH $end
$var parameter 2 D* ACT_NONE $end
$var parameter 2 E* ACT_RELU $end
$var parameter 32 F* DATA_WIDTH $end
$var parameter 32 G* GROUPS $end
$var parameter 32 H* GROUP_INDEX_WIDTH $end
$var parameter 32 I* N_INPUTS $end
$var parameter 32 J* PARALLEL $end
$var reg 32 K* acc [31:0] $end
$var reg 1 L* busy $end
$var reg 1 M* done $end
$var reg 1 N* finishing $end
$var reg 2 O* group_index [1:0] $end
$var reg 8 P* y [7:0] $end
$scope module u_mac8 $end
$var wire 32 Q* acc_in [31:0] $end
$var wire 64 R* w_bus [63:0] $end
$var wire 64 S* x_bus [63:0] $end
$var wire 32 T* acc_out [31:0] $end
$var parameter 32 U* ACC_WIDTH $end
$var parameter 32 V* DATA_WIDTH $end
$var parameter 32 W* PARALLEL $end
$var parameter 32 X* TREE_LEVELS $end
$scope begin GEN_MAC[0] $end
$var parameter 2 Y* i $end
$scope module u_mac $end
$var wire 32 Z* acc_in [31:0] $end
$var wire 8 [* w [7:0] $end
$var wire 8 \* x [7:0] $end
$var wire 32 ]* product_ext [31:0] $end
$var wire 16 ^* product [15:0] $end
$var wire 32 _* acc_out [31:0] $end
$var parameter 32 `* ACC_WIDTH $end
$var parameter 32 a* DATA_WIDTH $end
$var parameter 64 b* PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[1] $end
$var parameter 2 c* i $end
$scope module u_mac $end
$var wire 32 d* acc_in [31:0] $end
$var wire 8 e* w [7:0] $end
$var wire 8 f* x [7:0] $end
$var wire 32 g* product_ext [31:0] $end
$var wire 16 h* product [15:0] $end
$var wire 32 i* acc_out [31:0] $end
$var parameter 32 j* ACC_WIDTH $end
$var parameter 32 k* DATA_WIDTH $end
$var parameter 64 l* PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[2] $end
$var parameter 3 m* i $end
$scope module u_mac $end
$var wire 32 n* acc_in [31:0] $end
$var wire 8 o* w [7:0] $end
$var wire 8 p* x [7:0] $end
$var wire 32 q* product_ext [31:0] $end
$var wire 16 r* product [15:0] $end
$var wire 32 s* acc_out [31:0] $end
$var parameter 32 t* ACC_WIDTH $end
$var parameter 32 u* DATA_WIDTH $end
$var parameter 64 v* PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[3] $end
$var parameter 3 w* i $end
$scope module u_mac $end
$var wire 32 x* acc_in [31:0] $end
$var wire 8 y* w [7:0] $end
$var wire 8 z* x [7:0] $end
$var wire 32 {* product_ext [31:0] $end
$var wire 16 |* product [15:0] $end
$var wire 32 }* acc_out [31:0] $end
$var parameter 32 ~* ACC_WIDTH $end
$var parameter 32 !+ DATA_WIDTH $end
$var parameter 64 "+ PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[4] $end
$var parameter 4 #+ i $end
$scope module u_mac $end
$var wire 32 $+ acc_in [31:0] $end
$var wire 8 %+ w [7:0] $end
$var wire 8 &+ x [7:0] $end
$var wire 32 '+ product_ext [31:0] $end
$var wire 16 (+ product [15:0] $end
$var wire 32 )+ acc_out [31:0] $end
$var parameter 32 *+ ACC_WIDTH $end
$var parameter 32 ++ DATA_WIDTH $end
$var parameter 64 ,+ PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[5] $end
$var parameter 4 -+ i $end
$scope module u_mac $end
$var wire 32 .+ acc_in [31:0] $end
$var wire 8 /+ w [7:0] $end
$var wire 8 0+ x [7:0] $end
$var wire 32 1+ product_ext [31:0] $end
$var wire 16 2+ product [15:0] $end
$var wire 32 3+ acc_out [31:0] $end
$var parameter 32 4+ ACC_WIDTH $end
$var parameter 32 5+ DATA_WIDTH $end
$var parameter 64 6+ PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[6] $end
$var parameter 4 7+ i $end
$scope module u_mac $end
$var wire 32 8+ acc_in [31:0] $end
$var wire 8 9+ w [7:0] $end
$var wire 8 :+ x [7:0] $end
$var wire 32 ;+ product_ext [31:0] $end
$var wire 16 <+ product [15:0] $end
$var wire 32 =+ acc_out [31:0] $end
$var parameter 32 >+ ACC_WIDTH $end
$var parameter 32 ?+ DATA_WIDTH $end
$var parameter 64 @+ PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[7] $end
$var parameter 4 A+ i $end
$scope module u_mac $end
$var wire 32 B+ acc_in [31:0] $end
$var wire 8 C+ w [7:0] $end
$var wire 8 D+ x [7:0] $end
$var wire 32 E+ product_ext [31:0] $end
$var wire 16 F+ product [15:0] $end
$var wire 32 G+ acc_out [31:0] $end
$var parameter 32 H+ ACC_WIDTH $end
$var parameter 32 I+ DATA_WIDTH $end
$var parameter 64 J+ PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_INPUT[0] $end
$var parameter 2 K+ i $end
$upscope $end
$scope begin GEN_TREE_INPUT[1] $end
$var parameter 2 L+ i $end
$upscope $end
$scope begin GEN_TREE_INPUT[2] $end
$var parameter 3 M+ i $end
$upscope $end
$scope begin GEN_TREE_INPUT[3] $end
$var parameter 3 N+ i $end
$upscope $end
$scope begin GEN_TREE_INPUT[4] $end
$var parameter 4 O+ i $end
$upscope $end
$scope begin GEN_TREE_INPUT[5] $end
$var parameter 4 P+ i $end
$upscope $end
$scope begin GEN_TREE_INPUT[6] $end
$var parameter 4 Q+ i $end
$upscope $end
$scope begin GEN_TREE_INPUT[7] $end
$var parameter 4 R+ i $end
$upscope $end
$scope begin GEN_TREE_LEVEL[0] $end
$var parameter 2 S+ level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 T+ node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 U+ node $end
$upscope $end
$scope begin GEN_TREE_NODE[2] $end
$var parameter 3 V+ node $end
$upscope $end
$scope begin GEN_TREE_NODE[3] $end
$var parameter 3 W+ node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[1] $end
$var parameter 2 X+ level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 Y+ node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 Z+ node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[2] $end
$var parameter 3 [+ level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 \+ node $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$scope begin GEN_NEURON[7] $end
$var parameter 4 ]+ n $end
$scope module u_neuron $end
$var wire 2 ^+ activation [1:0] $end
$var wire 8 _+ bias [7:0] $end
$var wire 1 * clk $end
$var wire 1 `+ final_acc_in_range $end
$var wire 1 a+ final_acc_le_zero $end
$var wire 1 b+ final_acc_upper_all0 $end
$var wire 16 c+ n_inputs_real [15:0] $end
$var wire 1 + rst $end
$var wire 1 , start $end
$var wire 256 d+ w_bus [255:0] $end
$var wire 256 e+ x_bus [255:0] $end
$var wire 8 f+ y_relu [7:0] $end
$var wire 8 g+ y_none [7:0] $end
$var wire 64 h+ x_group [63:0] $end
$var wire 64 i+ w_group [63:0] $end
$var wire 16 j+ groups_real [15:0] $end
$var wire 1 k+ final_acc_upper_all1 $end
$var wire 1 l+ final_acc_sign $end
$var wire 32 m+ final_acc [31:0] $end
$var wire 32 n+ bias_ext [31:0] $end
$var wire 32 o+ acc_next [31:0] $end
$var parameter 32 p+ ACC_WIDTH $end
$var parameter 2 q+ ACT_NONE $end
$var parameter 2 r+ ACT_RELU $end
$var parameter 32 s+ DATA_WIDTH $end
$var parameter 32 t+ GROUPS $end
$var parameter 32 u+ GROUP_INDEX_WIDTH $end
$var parameter 32 v+ N_INPUTS $end
$var parameter 32 w+ PARALLEL $end
$var reg 32 x+ acc [31:0] $end
$var reg 1 y+ busy $end
$var reg 1 z+ done $end
$var reg 1 {+ finishing $end
$var reg 2 |+ group_index [1:0] $end
$var reg 8 }+ y [7:0] $end
$scope module u_mac8 $end
$var wire 32 ~+ acc_in [31:0] $end
$var wire 64 !, w_bus [63:0] $end
$var wire 64 ", x_bus [63:0] $end
$var wire 32 #, acc_out [31:0] $end
$var parameter 32 $, ACC_WIDTH $end
$var parameter 32 %, DATA_WIDTH $end
$var parameter 32 &, PARALLEL $end
$var parameter 32 ', TREE_LEVELS $end
$scope begin GEN_MAC[0] $end
$var parameter 2 (, i $end
$scope module u_mac $end
$var wire 32 ), acc_in [31:0] $end
$var wire 8 *, w [7:0] $end
$var wire 8 +, x [7:0] $end
$var wire 32 ,, product_ext [31:0] $end
$var wire 16 -, product [15:0] $end
$var wire 32 ., acc_out [31:0] $end
$var parameter 32 /, ACC_WIDTH $end
$var parameter 32 0, DATA_WIDTH $end
$var parameter 64 1, PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[1] $end
$var parameter 2 2, i $end
$scope module u_mac $end
$var wire 32 3, acc_in [31:0] $end
$var wire 8 4, w [7:0] $end
$var wire 8 5, x [7:0] $end
$var wire 32 6, product_ext [31:0] $end
$var wire 16 7, product [15:0] $end
$var wire 32 8, acc_out [31:0] $end
$var parameter 32 9, ACC_WIDTH $end
$var parameter 32 :, DATA_WIDTH $end
$var parameter 64 ;, PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[2] $end
$var parameter 3 <, i $end
$scope module u_mac $end
$var wire 32 =, acc_in [31:0] $end
$var wire 8 >, w [7:0] $end
$var wire 8 ?, x [7:0] $end
$var wire 32 @, product_ext [31:0] $end
$var wire 16 A, product [15:0] $end
$var wire 32 B, acc_out [31:0] $end
$var parameter 32 C, ACC_WIDTH $end
$var parameter 32 D, DATA_WIDTH $end
$var parameter 64 E, PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[3] $end
$var parameter 3 F, i $end
$scope module u_mac $end
$var wire 32 G, acc_in [31:0] $end
$var wire 8 H, w [7:0] $end
$var wire 8 I, x [7:0] $end
$var wire 32 J, product_ext [31:0] $end
$var wire 16 K, product [15:0] $end
$var wire 32 L, acc_out [31:0] $end
$var parameter 32 M, ACC_WIDTH $end
$var parameter 32 N, DATA_WIDTH $end
$var parameter 64 O, PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[4] $end
$var parameter 4 P, i $end
$scope module u_mac $end
$var wire 32 Q, acc_in [31:0] $end
$var wire 8 R, w [7:0] $end
$var wire 8 S, x [7:0] $end
$var wire 32 T, product_ext [31:0] $end
$var wire 16 U, product [15:0] $end
$var wire 32 V, acc_out [31:0] $end
$var parameter 32 W, ACC_WIDTH $end
$var parameter 32 X, DATA_WIDTH $end
$var parameter 64 Y, PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[5] $end
$var parameter 4 Z, i $end
$scope module u_mac $end
$var wire 32 [, acc_in [31:0] $end
$var wire 8 \, w [7:0] $end
$var wire 8 ], x [7:0] $end
$var wire 32 ^, product_ext [31:0] $end
$var wire 16 _, product [15:0] $end
$var wire 32 `, acc_out [31:0] $end
$var parameter 32 a, ACC_WIDTH $end
$var parameter 32 b, DATA_WIDTH $end
$var parameter 64 c, PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[6] $end
$var parameter 4 d, i $end
$scope module u_mac $end
$var wire 32 e, acc_in [31:0] $end
$var wire 8 f, w [7:0] $end
$var wire 8 g, x [7:0] $end
$var wire 32 h, product_ext [31:0] $end
$var wire 16 i, product [15:0] $end
$var wire 32 j, acc_out [31:0] $end
$var parameter 32 k, ACC_WIDTH $end
$var parameter 32 l, DATA_WIDTH $end
$var parameter 64 m, PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[7] $end
$var parameter 4 n, i $end
$scope module u_mac $end
$var wire 32 o, acc_in [31:0] $end
$var wire 8 p, w [7:0] $end
$var wire 8 q, x [7:0] $end
$var wire 32 r, product_ext [31:0] $end
$var wire 16 s, product [15:0] $end
$var wire 32 t, acc_out [31:0] $end
$var parameter 32 u, ACC_WIDTH $end
$var parameter 32 v, DATA_WIDTH $end
$var parameter 64 w, PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_INPUT[0] $end
$var parameter 2 x, i $end
$upscope $end
$scope begin GEN_TREE_INPUT[1] $end
$var parameter 2 y, i $end
$upscope $end
$scope begin GEN_TREE_INPUT[2] $end
$var parameter 3 z, i $end
$upscope $end
$scope begin GEN_TREE_INPUT[3] $end
$var parameter 3 {, i $end
$upscope $end
$scope begin GEN_TREE_INPUT[4] $end
$var parameter 4 |, i $end
$upscope $end
$scope begin GEN_TREE_INPUT[5] $end
$var parameter 4 }, i $end
$upscope $end
$scope begin GEN_TREE_INPUT[6] $end
$var parameter 4 ~, i $end
$upscope $end
$scope begin GEN_TREE_INPUT[7] $end
$var parameter 4 !- i $end
$upscope $end
$scope begin GEN_TREE_LEVEL[0] $end
$var parameter 2 "- level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 #- node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 $- node $end
$upscope $end
$scope begin GEN_TREE_NODE[2] $end
$var parameter 3 %- node $end
$upscope $end
$scope begin GEN_TREE_NODE[3] $end
$var parameter 3 &- node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[1] $end
$var parameter 2 '- level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 (- node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 )- node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[2] $end
$var parameter 3 *- level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 +- node $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$scope task run_layer $end
$upscope $end
$upscope $end
$enddefinitions $end
$comment Show the parameter values. $end
$dumpall
b0 +-
b10 *-
b1 )-
b0 (-
b1 '-
b11 &-
b10 %-
b1 $-
b0 #-
b0 "-
b111 !-
b110 ~,
b101 },
b100 |,
b11 {,
b10 z,
b1 y,
b0 x,
b10000 w,
b1000 v,
b100000 u,
b111 n,
b10000 m,
b1000 l,
b100000 k,
b110 d,
b10000 c,
b1000 b,
b100000 a,
b101 Z,
b10000 Y,
b1000 X,
b100000 W,
b100 P,
b10000 O,
b1000 N,
b100000 M,
b11 F,
b10000 E,
b1000 D,
b100000 C,
b10 <,
b10000 ;,
b1000 :,
b100000 9,
b1 2,
b10000 1,
b1000 0,
b100000 /,
b0 (,
b11 ',
b1000 &,
b1000 %,
b100000 $,
b1000 w+
b100000 v+
b10 u+
b100 t+
b1000 s+
b1 r+
b0 q+
b100000 p+
b111 ]+
b0 \+
b10 [+
b1 Z+
b0 Y+
b1 X+
b11 W+
b10 V+
b1 U+
b0 T+
b0 S+
b111 R+
b110 Q+
b101 P+
b100 O+
b11 N+
b10 M+
b1 L+
b0 K+
b10000 J+
b1000 I+
b100000 H+
b111 A+
b10000 @+
b1000 ?+
b100000 >+
b110 7+
b10000 6+
b1000 5+
b100000 4+
b101 -+
b10000 ,+
b1000 ++
b100000 *+
b100 #+
b10000 "+
b1000 !+
b100000 ~*
b11 w*
b10000 v*
b1000 u*
b100000 t*
b10 m*
b10000 l*
b1000 k*
b100000 j*
b1 c*
b10000 b*
b1000 a*
b100000 `*
b0 Y*
b11 X*
b1000 W*
b1000 V*
b100000 U*
b1000 J*
b100000 I*
b10 H*
b100 G*
b1000 F*
b1 E*
b0 D*
b100000 C*
b110 0*
b0 /*
b10 .*
b1 -*
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