Files
FPGA-Neural/sim/layer.vcd
T
micheleandClaude Sonnet 5 14c8d87194 test: certify runtime width early-termination (C.2), document BUG-003/004
n_inputs_real/n_neurons_real early termination for valid values is
certified real: a "poison" region (data that would saturate the result
if read past the claimed limit) confirms no over-read, cycle counts
scale proportionally. n_inputs_real non-multiple-of-PARALLEL at runtime
matches the documented silent-truncation risk exactly.

n_inputs_real=0 / n_neurons_real=0 (BUG-003/004): confirmed incorrect
behavior in every repetition, but the exact triggering mechanism was
NOT fully isolated -- nearly-identical repeated tests produced
different symptoms (clean hang vs. silently processing the full build
width vs. a third cycle count matching neither). Reported in full,
including the inconsistency itself, rather than picking the cleanest
result. The two new permanent testbenches reflect this honestly: the
solid early-termination checks are hard assertions, the n_*_real=0
probe is deliberately observe-only given the non-deterministic result.

Full regression: 38/38 real tests pass.

Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_013xXuuRUWZScuo1DeYJxs3v
2026-09-04 14:27:14 +02:00

4080 lines
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Plaintext

$date
Fri Sep 4 14:26:01 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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