$date Fri Sep 4 14:40:11 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 -* b0 ,* b1 +* b11 ** b10 )* b1 (* b0 '* b0 &* b111 %* b110 $* b101 #* b100 "* b11 !* b10 ~) b1 }) b0 |) b10000 {) b1000 z) b100000 y) b111 r) b10000 q) b1000 p) b100000 o) b110 h) b10000 g) b1000 f) b100000 e) b101 ^) b10000 ]) b1000 \) b100000 [) b100 T) b10000 S) b1000 R) b100000 Q) b11 J) b10000 I) b1000 H) b100000 G) b10 @) b10000 ?) b1000 >) b100000 =) b1 6) b10000 5) b1000 4) b100000 3) b0 ,) b11 +) b1000 *) b1000 )) b100000 () b1000 {( b100000 z( b10 y( b100 x( b1000 w( b1 v( b0 u( b100000 t( b101 a( b0 `( b10 _( b1 ^( b0 ]( b1 \( b11 [( b10 Z( b1 Y( b0 X( b0 W( b111 V( b110 U( b101 T( b100 S( b11 R( b10 Q( b1 P( b0 O( b10000 N( b1000 M( b100000 L( b111 E( b10000 D( b1000 C( b100000 B( b110 ;( b10000 :( b1000 9( b100000 8( b101 1( b10000 0( b1000 /( b100000 .( b100 '( b10000 &( b1000 %( b100000 $( b11 {' b10000 z' b1000 y' b100000 x' b10 q' b10000 p' b1000 o' b100000 n' b1 g' b10000 f' b1000 e' b100000 d' b0 ]' b11 \' b1000 [' b1000 Z' b100000 Y' b1000 N' b100000 M' b10 L' b100 K' b1000 J' b1 I' b0 H' b100000 G' b100 4' b0 3' b10 2' b1 1' b0 0' b1 /' b11 .' b10 -' b1 ,' b0 +' b0 *' b111 )' b110 (' b101 '' b100 &' b11 %' b10 $' b1 #' b0 "' b10000 !' b1000 ~& b100000 }& b111 v& b10000 u& b1000 t& b100000 s& b110 l& b10000 k& b1000 j& b100000 i& b101 b& b10000 a& b1000 `& b100000 _& b100 X& b10000 W& b1000 V& b100000 U& b11 N& b10000 M& b1000 L& b100000 K& b10 D& b10000 C& b1000 B& b100000 A& b1 :& b10000 9& b1000 8& b100000 7& b0 0& b11 /& b1000 .& b1000 -& b100000 ,& b1000 !& b100000 ~% b10 }% b100 |% b1000 {% b1 z% b0 y% b100000 x% b11 e% b0 d% b10 c% b1 b% b0 a% b1 `% b11 _% b10 ^% b1 ]% b0 \% b0 [% b111 Z% b110 Y% b101 X% b100 W% b11 V% b10 U% b1 T% b0 S% b10000 R% b1000 Q% b100000 P% b111 I% b10000 H% b1000 G% b100000 F% b110 ?% b10000 >% b1000 =% b100000 <% b101 5% b10000 4% b1000 3% b100000 2% b100 +% b10000 *% b1000 )% b100000 (% b11 !% b10000 ~$ b1000 }$ b100000 |$ b10 u$ b10000 t$ b1000 s$ b100000 r$ b1 k$ b10000 j$ b1000 i$ b100000 h$ b0 a$ b11 `$ b1000 _$ b1000 ^$ b100000 ]$ b1000 R$ b100000 Q$ b10 P$ b100 O$ b1000 N$ b1 M$ b0 L$ b100000 K$ b10 8$ b0 7$ b10 6$ b1 5$ b0 4$ b1 3$ b11 2$ b10 1$ b1 0$ b0 /$ b0 .$ b111 -$ b110 ,$ b101 +$ b100 *$ b11 )$ b10 ($ b1 '$ b0 &$ b10000 %$ b1000 $$ b100000 #$ b111 z# b10000 y# b1000 x# b100000 w# b110 p# b10000 o# b1000 n# b100000 m# b101 f# b10000 e# b1000 d# b100000 c# b100 \# b10000 [# b1000 Z# b100000 Y# b11 R# b10000 Q# b1000 P# b100000 O# b10 H# b10000 G# b1000 F# b100000 E# b1 ># b10000 =# b1000 <# b100000 ;# b0 4# b11 3# b1000 2# b1000 1# b100000 0# b1000 %# b100000 $# b10 ## b100 "# b1000 !# b1 ~" b0 }" b100000 |" b1 i" b0 h" b10 g" b1 f" b0 e" b1 d" b11 c" b10 b" b1 a" b0 `" b0 _" b111 ^" b110 ]" b101 \" b100 [" b11 Z" b10 Y" b1 X" b0 W" b10000 V" b1000 U" b100000 T" b111 M" b10000 L" b1000 K" b100000 J" b110 C" b10000 B" b1000 A" b100000 @" b101 9" b10000 8" b1000 7" b100000 6" b100 /" b10000 ." b1000 -" b100000 ," b11 %" b10000 $" b1000 #" b100000 "" b10 y b10000 x b1000 w b100000 v b1 o b10000 n b1000 m b100000 l b0 e b11 d b1000 c b1000 b b100000 a b1000 V b100000 U b10 T b100 S b1000 R b1 Q b0 P b100000 O b0 < b1000 ; b1000 : b100000 9 b1000 8 b100000 7 b1000 ( b1000 ' b100000 & b1000 % b100000 $ $end #0 $dumpvars bx t, bx s, bx r, bx q, bx p, b0 o, bx j, bx i, bx h, bx g, bx f, b0 e, bx `, bx _, bx ^, bx ], bx \, b0 [, bx V, bx U, bx T, bx S, bx R, b0 Q, bx L, bx K, bx J, bx I, bx H, b0 G, bx B, bx A, bx @, bx ?, bx >, b0 =, bx 8, bx 7, bx 6, bx 5, bx 4, b0 3, bx ., bx -, bx ,, bx +, bx *, b0 ), bx #, bx ", bx !, bx ~+ bx }+ bx |+ x{+ xz+ xy+ bx x+ bx o+ b0 n+ bx m+ xl+ xk+ b100 j+ bx i+ bx h+ bx g+ bx f+ b0 e+ b0 d+ b100000 c+ xb+ xa+ x`+ b0 _+ b1 ^+ bx G+ bx F+ bx E+ bx D+ bx C+ b0 B+ bx =+ bx <+ bx ;+ bx :+ bx 9+ b0 8+ bx 3+ bx 2+ bx 1+ bx 0+ bx /+ b0 .+ bx )+ bx (+ bx '+ bx &+ bx %+ b0 $+ bx }* bx |* bx {* bx z* bx y* b0 x* bx s* bx r* bx q* bx p* bx o* b0 n* bx i* bx h* bx g* bx f* bx e* b0 d* bx _* bx ^* bx ]* bx \* bx [* b0 Z* bx T* bx S* bx R* bx Q* bx P* bx O* xN* xM* xL* bx K* bx B* b0 A* bx @* x?* x>* b100 =* bx <* bx ;* bx :* bx 9* b0 8* b0 7* b100000 6* x5* x4* x3* b0 2* b1 1* bx x) bx w) bx v) bx u) bx t) b0 s) bx n) bx m) bx l) bx k) bx j) b0 i) bx d) bx c) bx b) bx a) bx `) b0 _) bx Z) bx Y) bx X) bx W) bx V) b0 U) bx P) bx O) bx N) bx M) bx L) b0 K) bx F) bx E) bx D) bx C) bx B) b0 A) bx <) bx ;) bx :) bx 9) bx 8) b0 7) bx 2) bx 1) bx 0) bx /) bx .) b0 -) bx ') bx &) bx %) bx $) bx #) bx ") x!) x~( x}( bx |( bx s( b0 r( bx q( xp( xo( b100 n( bx m( bx l( bx k( bx j( b0 i( b0 h( b100000 g( xf( xe( xd( b0 c( b1 b( bx K( bx J( bx I( bx H( bx G( b0 F( bx A( bx @( bx ?( bx >( bx =( b0 <( bx 7( bx 6( bx 5( bx 4( bx 3( b0 2( bx -( bx ,( bx +( bx *( bx )( b0 (( bx #( bx "( bx !( bx ~' bx }' b0 |' bx w' bx v' bx u' bx t' bx s' b0 r' bx m' bx l' bx k' bx j' bx i' b0 h' bx c' bx b' bx a' bx `' bx _' b0 ^' bx X' bx W' bx V' bx U' bx T' bx S' xR' xQ' xP' bx O' bx F' b0 E' bx D' xC' xB' b100 A' bx @' bx ?' bx >' bx =' b0 <' b0 ;' b100000 :' x9' x8' x7' b0 6' b1 5' bx |& bx {& bx z& bx y& bx x& b0 w& bx r& bx q& bx p& bx o& bx n& b0 m& bx h& bx g& bx f& bx e& bx d& b0 c& bx ^& bx ]& bx \& bx [& bx Z& b0 Y& bx T& bx S& bx R& bx Q& bx P& b0 O& bx J& bx I& bx H& bx G& bx F& b0 E& bx @& bx ?& bx >& bx =& bx <& b0 ;& bx 6& bx 5& bx 4& bx 3& bx 2& b0 1& bx +& bx *& bx )& bx (& bx '& bx && x%& x$& x#& bx "& bx w% b0 v% bx u% xt% xs% b100 r% bx q% bx p% bx o% bx n% b0 m% b0 l% b100000 k% xj% xi% xh% b0 g% b1 f% bx O% bx N% bx M% bx L% bx K% b0 J% bx E% bx D% bx C% bx B% bx A% b0 @% bx ;% bx :% bx 9% bx 8% bx 7% b0 6% bx 1% bx 0% bx /% bx .% bx -% b0 ,% bx '% bx &% bx %% bx $% bx #% b0 "% bx {$ bx z$ bx y$ bx x$ bx w$ b0 v$ bx q$ bx p$ bx o$ bx n$ bx m$ b0 l$ bx g$ bx f$ bx e$ bx d$ bx c$ b0 b$ bx \$ bx [$ bx Z$ bx Y$ bx X$ bx W$ xV$ xU$ xT$ bx S$ bx J$ b0 I$ bx H$ xG$ xF$ b100 E$ bx D$ bx C$ bx B$ bx A$ b0 @$ b0 ?$ b100000 >$ x=$ x<$ x;$ b0 :$ b1 9$ bx "$ bx !$ bx ~# bx }# bx |# b0 {# bx v# bx u# bx t# bx s# bx r# b0 q# bx l# bx k# bx j# bx i# bx h# b0 g# bx b# bx a# bx `# bx _# bx ^# b0 ]# bx X# bx W# bx V# bx U# bx T# b0 S# bx N# bx M# bx L# bx K# bx J# b0 I# bx D# bx C# bx B# bx A# bx @# b0 ?# bx :# bx 9# bx 8# bx 7# bx 6# b0 5# bx /# bx .# bx -# bx ,# bx +# bx *# x)# x(# x'# bx &# bx {" b0 z" bx y" xx" xw" b100 v" bx u" bx t" bx s" bx r" b0 q" b0 p" b100000 o" xn" xm" xl" b0 k" b1 j" bx S" bx R" bx Q" bx P" bx O" b0 N" bx I" bx H" bx G" bx F" bx E" b0 D" bx ?" bx >" bx =" bx <" bx ;" b0 :" bx 5" bx 4" bx 3" bx 2" bx 1" b0 0" bx +" bx *" bx )" bx (" bx '" b0 &" bx !" bx ~ bx } bx | bx { b0 z bx u bx t bx s bx r bx q b0 p bx k bx j bx i bx h bx g b0 f bx ` bx _ bx ^ bx ] bx \ bx [ xZ xY xX bx W bx N b0 M bx L xK xJ b100 I bx H bx G bx F bx E b0 D b0 C b100000 B xA x@ x? b0 > b1 = bx 6 bx 5 bx 4 b0 3 b0 2 b0 1 bx 0 b0 / b0 . b0 - 0, 1+ 0* b0 ) x# x" bx ! $end #5000 b0 N b0 ` b0 k b0 u b0 !" b0 +" b0 5" b0 ?" b0 I" b0 S" b0 {" b0 /# b0 :# b0 D# b0 N# b0 X# b0 b# b0 l# b0 v# b0 "$ b0 J$ b0 \$ b0 g$ b0 q$ b0 {$ b0 '% b0 1% b0 ;% b0 E% b0 O% b0 w% b0 +& b0 6& b0 @& b0 J& b0 T& b0 ^& b0 h& b0 r& b0 |& b0 F' b0 X' b0 c' b0 m' b0 w' b0 #( b0 -( b0 7( b0 A( b0 K( b0 s( b0 ') b0 2) b0 <) b0 F) b0 P) b0 Z) b0 d) b0 n) b0 x) b0 B* b0 T* b0 _* b0 i* b0 s* b0 }* b0 )+ b0 3+ b0 =+ b0 G+ b0 o+ b0 #, b0 ., b0 8, b0 B, b0 L, b0 V, b0 `, b0 j, b0 t, b0 F 1? b0 E b0 i b0 s b0 } b0 )" b0 3" b0 =" b0 G" b0 Q" b0 s" 1l" b0 r" b0 8# b0 B# b0 L# b0 V# b0 `# b0 j# b0 t# b0 ~# b0 B$ 1;$ b0 A$ b0 e$ b0 o$ b0 y$ b0 %% b0 /% b0 9% b0 C% b0 M% b0 o% 1h% b0 n% b0 4& b0 >& b0 H& b0 R& b0 \& b0 f& b0 p& b0 z& b0 >' 17' b0 =' b0 a' b0 k' b0 u' b0 !( b0 +( b0 5( b0 ?( b0 I( b0 k( 1d( b0 j( b0 0) b0 :) b0 D) b0 N) b0 X) b0 b) b0 l) b0 v) b0 :* 13* b0 9* b0 ]* b0 g* b0 q* b0 {* b0 '+ b0 1+ b0 ;+ b0 E+ b0 g+ 1`+ b0 f+ b0 ,, b0 6, b0 @, b0 J, b0 T, b0 ^, b0 h, b0 r, 1A 1@ b0 j b0 h b0 t b0 r b0 ~ b0 | b0 *" b0 (" b0 4" b0 2" b0 >" b0 <" b0 H" b0 F" b0 R" b0 P" b0 g b0 q b0 { b0 '" b0 1" b0 ;" b0 E" b0 O" 1n" 1m" b0 9# b0 7# b0 C# b0 A# b0 M# b0 K# b0 W# b0 U# b0 a# b0 _# b0 k# b0 i# b0 u# b0 s# b0 !$ b0 }# b0 6# b0 @# b0 J# b0 T# b0 ^# b0 h# b0 r# b0 |# 1=$ 1<$ b0 f$ b0 d$ b0 p$ b0 n$ b0 z$ b0 x$ b0 &% b0 $% b0 0% b0 .% b0 :% b0 8% b0 D% b0 B% b0 N% b0 L% b0 c$ b0 m$ b0 w$ b0 #% b0 -% b0 7% b0 A% b0 K% 1j% 1i% b0 5& b0 3& b0 ?& b0 =& b0 I& b0 G& b0 S& b0 Q& b0 ]& b0 [& b0 g& b0 e& b0 q& b0 o& b0 {& b0 y& b0 2& b0 <& b0 F& b0 P& b0 Z& b0 d& b0 n& b0 x& 19' 18' b0 b' b0 `' b0 l' b0 j' b0 v' b0 t' b0 "( b0 ~' b0 ,( b0 *( b0 6( b0 4( b0 @( b0 >( b0 J( b0 H( b0 _' b0 i' b0 s' b0 }' b0 )( b0 3( b0 =( b0 G( 1f( 1e( b0 1) b0 /) b0 ;) b0 9) b0 E) b0 C) b0 O) b0 M) b0 Y) b0 W) b0 c) b0 a) b0 m) b0 k) b0 w) b0 u) b0 .) b0 8) b0 B) b0 L) b0 V) b0 `) b0 j) b0 t) 15* 14* b0 ^* b0 \* b0 h* b0 f* b0 r* b0 p* b0 |* b0 z* b0 (+ b0 &+ b0 2+ b0 0+ b0 <+ b0 :+ b0 F+ b0 D+ b0 [* b0 e* b0 o* b0 y* b0 %+ b0 /+ b0 9+ b0 C+ 0" b0 5 0# b0 6 b0 ! b0 4 1b+ 1a+ b0 -, b0 +, b0 7, b0 5, b0 A, b0 ?, b0 K, b0 I, b0 U, b0 S, b0 _, b0 ], b0 i, b0 g, b0 s, b0 q, b0 *, b0 4, b0 >, b0 H, b0 R, b0 \, b0 f, b0 p, 0K 0J b0 G b0 _ b0 H b0 ^ 0x" 0w" b0 t" b0 .# b0 u" b0 -# 0G$ 0F$ b0 C$ b0 [$ b0 D$ b0 Z$ 0t% 0s% b0 p% b0 *& b0 q% b0 )& 0C' 0B' b0 ?' b0 W' b0 @' b0 V' 0p( 0o( b0 l( b0 &) b0 m( b0 %) 0?* 0>* b0 ;* b0 S* b0 <* b0 R* 0l+ 0k+ b0 h+ b0 ", b0 i+ b0 !, 0Z 0Y 0X b0 \ b0 L b0 W b0 ] b0 [ 0)# 0(# 0'# b0 +# b0 y" b0 &# b0 ,# b0 *# 0V$ 0U$ 0T$ b0 X$ b0 H$ b0 S$ b0 Y$ b0 W$ 0%& 0$& 0#& b0 '& b0 u% b0 "& b0 (& b0 && 0R' 0Q' 0P' b0 T' b0 D' b0 O' b0 U' b0 S' 0!) 0~( 0}( b0 #) b0 q( b0 |( b0 $) b0 ") 0N* 0M* 0L* b0 P* b0 @* b0 K* b0 Q* b0 O* 0{+ 0z+ 0y+ b0 }+ b0 m+ b0 x+ b0 ~+ b0 |+ 1* #10000 0* #15000 b101 f+ b0 9* b0 j( b101 =' 0a+ b101 g+ 1?* 1>* 05* 14* b11110110 :* 1p( 1o( 0f( 1e( b11111011 k( 08' b101 >' b1 ., b1 ,, b1 8, b1 6, b1 B, b1 @, b1 L, b1 J, b1 V, b1 T, b1 `, b1 ^, b1 j, b1 h, b1000 o+ b1000 #, b1 t, b1 r, b1 _* b1 ]* b1 i* b1 g* b1 s* b1 q* b1 }* b1 {* b1 )+ b1 '+ b1 3+ b1 1+ b1 =+ b1 ;+ b1000 B* b1000 T* b1 G+ b1 E+ b1000 6& b1000 4& b1000 @& b1000 >& b1000 J& b1000 H& b1000 T& b1000 R& b1000 ^& b1000 \& b1000 h& b1000 f& b1000 r& b1000 p& b1000000 w% b1000000 +& b1000 |& b1000 z& b11111111111111111111111111111111 g$ b11111111111111111111111111111111 e$ b11111111111111111111111111111111 q$ b11111111111111111111111111111111 o$ b11111111111111111111111111111111 {$ b11111111111111111111111111111111 y$ b11111111111111111111111111111111 '% b11111111111111111111111111111111 %% b11111111111111111111111111111111 1% b11111111111111111111111111111111 /% b11111111111111111111111111111111 ;% b11111111111111111111111111111111 9% b11111111111111111111111111111111 E% b11111111111111111111111111111111 C% b11111111111111111111111111111000 J$ b11111111111111111111111111111000 \$ b11111111111111111111111111111111 O% b11111111111111111111111111111111 M% b11 :# b11 8# b11 D# b11 B# b11 N# b11 L# b11 X# b11 V# b11 b# b11 `# b11 l# b11 j# b11 v# b11 t# b11000 {" b11000 /# b11 "$ b11 ~# b1 k b1 i b1 u b1 s b1 !" b1 } b1 +" b1 )" b1 5" b1 3" b1 ?" b1 =" b1 I" b1 G" b1000 N b1000 ` b1 S" b1 Q" b101 m+ b101 n+ b1 -, b1 *, b1 7, b1 4, b1 A, b1 >, b1 K, b1 H, b1 U, b1 R, b1 _, b1 \, b1 i, b1 f, b1 s, b1 p, b11111111111111111111111111110110 @* b11111111111111111111111111110110 A* b1 ^* b1 [* b1 h* b1 e* b1 r* b1 o* b1 |* b1 y* b1 (+ b1 %+ b1 2+ b1 /+ b1 <+ b1 9+ b1 F+ b1 C+ b11111111111111111111111111111011 q( b11111111111111111111111111111011 r( b101 D' b101 E' b1000 5& b1000 2& b1000 ?& b1000 <& b1000 I& b1000 F& b1000 S& b1000 P& b1000 ]& b1000 Z& b1000 g& b1000 d& b1000 q& b1000 n& b1000 {& b1000 x& b1111111111111111 f$ b11111111 c$ b1111111111111111 p$ b11111111 m$ b1111111111111111 z$ b11111111 w$ b1111111111111111 &% b11111111 #% b1111111111111111 0% b11111111 -% b1111111111111111 :% b11111111 7% b1111111111111111 D% b11111111 A% b1111111111111111 N% b11111111 K% b11 9# b11 6# b11 C# b11 @# b11 M# b11 J# b11 W# b11 T# b11 a# b11 ^# b11 k# b11 h# b11 u# b11 r# b11 !$ b11 |# b1 j b1 g b1 t b1 q b1 ~ b1 { b1 *" b1 '" b1 4" b1 1" b1 >" b1 ;" b1 H" b1 E" b1 R" b1 O" b101 _+ b100000001000000010000000100000001000000010000000100000001 i+ b100000001000000010000000100000001000000010000000100000001 !, b1000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 d+ b11110110 2* b100000001000000010000000100000001000000010000000100000001 <* b100000001000000010000000100000001000000010000000100000001 R* b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 7* b11111011 c( b101 6' b100000001000000010000000100000001000000010000000100000001000 q% b100000001000000010000000100000001000000010000000100000001000 )& b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000 l% b1111111111111111111111111111111111111111111111111111111111111111 D$ b1111111111111111111111111111111111111111111111111111111111111111 Z$ b1111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111111 ?$ b1100000011000000110000001100000011000000110000001100000011 u" b1100000011000000110000001100000011000000110000001100000011 -# b1100000011000000110000001100000011000000110000001100000011000000110000001100000011000000110000001100000011000000110000001100000011000000110000001100000011000000110000001100000011000000110000001100000011000000110000001100000011000000110000001100000011 p" b100000001000000010000000100000001000000010000000100000001 H b100000001000000010000000100000001000000010000000100000001 ^ b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 C b1 P" b1 }# b1 L% b1 y& b1 H( b1 u) b1 D+ b1 q, b1 F" b1 s# b1 B% b1 o& b1 >( b1 k) b1 :+ b1 g, b1 <" b1 i# b1 8% b1 e& b1 4( b1 a) b1 0+ b1 ], b1 2" b1 _# b1 .% b1 [& b1 *( b1 W) b1 &+ b1 S, b1 (" b1 U# b1 $% b1 Q& b1 ~' b1 M) b1 z* b1 I, b1 | b1 K# b1 x$ b1 G& b1 t' b1 C) b1 p* b1 ?, b1 r b1 A# b1 n$ b1 =& b1 j' b1 9) b1 f* b1 5, b1 h b1 7# b1 d$ b1 3& b1 `' b1 /) b1 \* b1 +, b10111110110111110110000010100000000000000000000000000000000 ) b10111110110111110110000010100000000000000000000000000000000 1 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2 b100000001000000010000000100000001000000010000000100000001 G b100000001000000010000000100000001000000010000000100000001 _ b100000001000000010000000100000001000000010000000100000001 t" b100000001000000010000000100000001000000010000000100000001 .# b100000001000000010000000100000001000000010000000100000001 C$ b100000001000000010000000100000001000000010000000100000001 [$ b100000001000000010000000100000001000000010000000100000001 p% b100000001000000010000000100000001000000010000000100000001 *& b100000001000000010000000100000001000000010000000100000001 ?' b100000001000000010000000100000001000000010000000100000001 W' b100000001000000010000000100000001000000010000000100000001 l( b100000001000000010000000100000001000000010000000100000001 &) b100000001000000010000000100000001000000010000000100000001 ;* b100000001000000010000000100000001000000010000000100000001 S* b100000001000000010000000100000001000000010000000100000001 h+ b100000001000000010000000100000001000000010000000100000001 ", b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 . b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 3 b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 D b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 q" b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 @$ b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 m% b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 <' b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 i( b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 8* b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 e+ b100000 0 0+ 1* #20000 0* #25000 1# b11111111 6 1X 1'# 1T$ 1#& 1P' 1}( 1L* 1y+ 1, 1* #30000 0* #35000 b1101 f+ b1000000 n% b11000 r" b1000 E b1101 g+ b11111110 :* 0i% b1000000 o% 0=$ b11111000 B$ 0m" b11000 s" 0@ b1000 F 1G$ 1F$ b1 |+ b1101 m+ b10000 o+ b10000 #, b1000 x+ b1000 ~+ b1 O* b11111111111111111111111111111110 @* b10000 B* b10000 T* b1000 K* b1000 Q* b1 ") b1 S' b1 && b1000000 u% b10000000 w% b10000000 +& b1000000 "& b1000000 (& b1 W$ b11111111111111111111111111111000 H$ b11111111111111111111111111110000 J$ b11111111111111111111111111110000 \$ b11111111111111111111111111111000 S$ b11111111111111111111111111111000 Y$ b1 *# b11000 y" b110000 {" b110000 /# b11000 &# b11000 ,# b1 [ b1000 L b10000 N b10000 ` b1000 W b1000 ] 0, 1* #40000 0* #45000 b10000 E b110000 r" 0h% b1111111 n% b110 9* b0 ., b0 ,, b0 8, b0 6, b0 B, b0 @, b0 L, b0 J, b0 V, b0 T, b0 `, b0 ^, b0 j, b0 h, b0 t, b0 r, b10101 f+ b10000 F b110000 s" b11110000 B$ 0j% b1111111 o% 04* 15* 13* b110 :* b0 -, b0 *, b0 7, b0 4, b0 A, b0 >, b0 K, b0 H, b0 U, b0 R, b0 _, b0 \, b0 i, b0 f, b0 s, b0 p, b10101 g+ 0?* 0>* b0 i+ b0 !, b10 [ b10000 L b11000 N b11000 ` b10000 W b10000 ] b10 *# b110000 y" b1001000 {" b1001000 /# b110000 &# b110000 ,# b10 W$ b11111111111111111111111111110000 H$ b11111111111111111111111111101000 J$ b11111111111111111111111111101000 \$ b11111111111111111111111111110000 S$ b11111111111111111111111111110000 Y$ b10 && b10000000 u% b11000000 w% b11000000 +& b10000000 "& b10000000 (& b10 S' b10 ") b10 O* b110 @* b11000 B* b11000 T* b10000 K* b10000 Q* b10 |+ b10101 m+ b10000 o+ b10000 #, b10000 x+ b10000 ~+ 1* #50000 0* #55000 b1110 9* b1001000 r" b11000 E b1110 :* b11101000 B$ b1001000 s" b11000 F b11 |+ b11 O* b1110 @* b100000 B* b100000 T* b11000 K* b11000 Q* b11 ") b11 S' b11 && b11000000 u% b100000000 w% b100000000 +& b11000000 "& b11000000 (& b11 W$ b11111111111111111111111111101000 H$ b11111111111111111111111111100000 J$ b11111111111111111111111111100000 \$ b11111111111111111111111111101000 S$ b11111111111111111111111111101000 Y$ b11 *# b1001000 y" b1100000 {" b1100000 /# b1001000 &# b1001000 ,# b11 [ b11000 L b100000 N b100000 ` b11000 W b11000 ] 1* #60000 0* #65000 b100000 E b1100000 r" b10110 9* b100000 F b1100000 s" b11100000 B$ b10110 :* 1Z b100000 L b101000 N b101000 ` b100000 W b100000 ] 1)# b1100000 y" b1111000 {" b1111000 /# b1100000 &# b1100000 ,# 1V$ b11111111111111111111111111100000 H$ b11111111111111111111111111011000 J$ b11111111111111111111111111011000 \$ b11111111111111111111111111100000 S$ b11111111111111111111111111100000 Y$ 1%& b100000000 u% b101000000 w% b101000000 +& b100000000 "& b100000000 (& 1R' 1!) 1N* b10110 @* b101000 B* b101000 T* b100000 K* b100000 Q* 1{+ 1* #70000 0* #75000 1" b11111111 5 0# b0 6 b1010100010110000000000000010101111111000000000110000000100000 ! b1010100010110000000000000010101111111000000000110000000100000 4 0{+ 1z+ 0y+ b10101 }+ 0N* 1M* 0L* b10110 P* 0!) 1~( 0}( 0R' 1Q' 0P' b101 T' 0%& 1$& 0#& b1111111 '& 0V$ 1U$ 0T$ 0)# 1(# 0'# b1100000 +# 0Z 1Y 0X b100000 \ 1* #80000 0* #85000 0" b0 5 0Y 0(# 0U$ 0$& 0Q' 0~( 0M* 0z+ 1*