$date Wed Apr 22 23:15:52 2026 $end $version Icarus Verilog $end $timescale 1ps $end $scope module mechanical_cycle_harness $end $var wire 16 ! virtual_warp_value [15:0] $end $var wire 16 " virtual_warp_metric [15:0] $end $var wire 2 # topology_metric [1:0] $end $var wire 16 $ sss_constant [15:0] $end $var wire 1 % slip_threshold_crossed $end $var wire 2 & schedule_decision [1:0] $end $var wire 1 ' mode_survival_trigger $end $var wire 16 ( effective_velocity [15:0] $end $var reg 1 ) clk $end $var reg 16 * cognitive_load [15:0] $end $var reg 16 + coherence [15:0] $end $var reg 16 , engram_length [15:0] $end $var reg 16 - entropy_displacement [15:0] $end $var reg 16 . extraneous_gradient [15:0] $end $var reg 16 / extraneous_weight [15:0] $end $var reg 16 0 heel_dig_limit [15:0] $end $var reg 16 1 kappa [15:0] $end $var reg 16 2 local_velocity [15:0] $end $var reg 16 3 memory_load [15:0] $end $var reg 16 4 opcode_efficacy [15:0] $end $var reg 16 5 proper_time [15:0] $end $var reg 1 6 reset_n $end $var reg 16 7 routing_load [15:0] $end $scope module dut $end $var wire 1 ) clk $end $var wire 16 8 cognitive_load [15:0] $end $var wire 16 9 coherence [15:0] $end $var wire 16 : effective_velocity_out [15:0] $end $var wire 16 ; engram_length [15:0] $end $var wire 16 < entropy_displacement [15:0] $end $var wire 16 = extraneous_gradient [15:0] $end $var wire 16 > extraneous_weight [15:0] $end $var wire 16 ? famm_load_out [15:0] $end $var wire 16 @ heel_dig_limit [15:0] $end $var wire 16 A interlocking_energy [15:0] $end $var wire 16 B kappa [15:0] $end $var wire 16 C laplacian_energy [15:0] $end $var wire 16 D local_velocity [15:0] $end $var wire 16 E memory_load [15:0] $end $var wire 16 F opcode_efficacy [15:0] $end $var wire 16 G proper_time [15:0] $end $var wire 1 6 reset_n $end $var wire 16 H routing_load [15:0] $end $var wire 2 I schedule_decision_out [1:0] $end $var wire 16 J sss_constant_out [15:0] $end $var wire 2 K topology_metric_out [1:0] $end $var wire 16 L torsional_stress [15:0] $end $var wire 1 M virtual_warp_value_wire $end $var wire 16 N virtual_warp_value_out [15:0] $end $var wire 1 O virtual_warp_metric_wire $end $var wire 16 P virtual_warp_metric_out [15:0] $end $var wire 2 Q topology_metric_wire [1:0] $end $var wire 16 R sss_constant_wire [15:0] $end $var wire 1 % slip_threshold_crossed $end $var wire 2 S schedule_decision_wire [1:0] $end $var wire 1 ' mode_survival_trigger $end $var wire 16 T famm_load_wire [15:0] $end $var wire 16 U effective_velocity_wire [15:0] $end $scope module famm_inst $end $var wire 1 ) clk $end $var wire 16 V interlocking_energy [15:0] $end $var wire 16 W laplacian_energy [15:0] $end $var wire 1 6 reset_n $end $var wire 16 X torsional_stress [15:0] $end $var wire 16 Y temp1 [15:0] $end $var wire 2 Z schedule_decision [1:0] $end $var wire 1 [ load_lt_050 $end $var wire 1 \ load_lt_025 $end $var wire 16 ] famm_load [15:0] $end $scope module add1_inst $end $var wire 16 ^ a [15:0] $end $var wire 16 _ b [15:0] $end $var wire 16 ` sum [15:0] $end $upscope $end $scope module add2_inst $end $var wire 16 a a [15:0] $end $var wire 16 b b [15:0] $end $var wire 16 c sum [15:0] $end $upscope $end $upscope $end $scope module sss_inst $end $var wire 1 ) clk $end $var wire 16 d engram_length [15:0] $end $var wire 16 e extraneous_gradient [15:0] $end $var wire 16 f extraneous_weight [15:0] $end $var wire 16 g heel_dig_limit [15:0] $end $var wire 16 h memory_load [15:0] $end $var wire 1 6 reset_n $end $var wire 16 i routing_load [15:0] $end $var wire 1 % slip_threshold_crossed $end $var wire 16 j torsional_term [15:0] $end $var wire 16 k temp1 [15:0] $end $var wire 1 l sss_lt_threshold $end $var wire 16 m sss_constant [15:0] $end $var wire 16 n negative_heel_dig [15:0] $end $var wire 1 ' mode_survival_trigger $end $var wire 16 o counter_torque [15:0] $end $var reg 4 p slip_counter [3:0] $end $var reg 1 q slip_crossed_reg $end $scope module compare_inst $end $var wire 16 r b [15:0] $end $var wire 1 l lt $end $var wire 1 s gt $end $var wire 1 t eq $end $var wire 16 u a [15:0] $end $upscope $end $scope module counter_torque_inst $end $var wire 16 v a [15:0] $end $var wire 16 w b [15:0] $end $var wire 16 x sum [15:0] $end $upscope $end $scope module mul1_inst $end $var wire 16 y a [15:0] $end $var wire 16 z b [15:0] $end $var wire 32 { temp [31:0] $end $var wire 16 | product [15:0] $end $upscope $end $scope module mul2_inst $end $var wire 16 } a [15:0] $end $var wire 16 ~ b [15:0] $end $var wire 32 !" temp [31:0] $end $var wire 16 "" product [15:0] $end $upscope $end $scope module sss_inst $end $var wire 16 #" a [15:0] $end $var wire 16 $" b [15:0] $end $var wire 16 %" diff [15:0] $end $upscope $end $upscope $end $scope module topo_inst $end $var wire 1 ) clk $end $var wire 16 &" cognitive_load [15:0] $end $var wire 1 6 reset_n $end $var wire 2 '" topology_metric [1:0] $end $var wire 1 (" load_lt_075 $end $var wire 1 )" load_lt_050 $end $var wire 1 *" load_lt_025 $end $upscope $end $scope module virtual_warp_inst $end $var wire 1 ) clk $end $var wire 16 +" coherence [15:0] $end $var wire 16 ," entropy_displacement [15:0] $end $var wire 16 -" kappa [15:0] $end $var wire 16 ." local_velocity [15:0] $end $var wire 16 /" opcode_efficacy [15:0] $end $var wire 16 0" proper_time [15:0] $end $var wire 1 6 reset_n $end $var wire 16 1" sss_constant [15:0] $end $var wire 16 2" virtual_warp_value [15:0] $end $var wire 16 3" virtual_warp_metric_value [15:0] $end $var wire 16 4" virtual_warp_final [15:0] $end $var wire 1 5" virtual_warp_coupling $end $var wire 16 6" v_eff_warp_dtau [15:0] $end $var wire 16 7" time_term [15:0] $end $var wire 16 8" space_term_inner [15:0] $end $var wire 16 9" space_term [15:0] $end $var wire 16 :" one_minus_coherence [15:0] $end $var wire 16 ;" neg_kappa_sss [15:0] $end $var wire 16 <" effective_velocity [15:0] $end $var wire 16 =" denominator [15:0] $end $scope module div_velocity_inst $end $var wire 16 >" denominator [15:0] $end $var wire 16 ?" numerator [15:0] $end $var wire 32 @" temp [31:0] $end $var wire 16 A" quotient [15:0] $end $upscope $end $scope module mul_kappa_inst $end $var wire 16 B" a [15:0] $end $var wire 16 C" b [15:0] $end $var wire 32 D" temp [31:0] $end $var wire 16 E" product [15:0] $end $upscope $end $scope module mul_space1_inst $end $var wire 16 F" a [15:0] $end $var wire 16 G" b [15:0] $end $var wire 32 H" temp [31:0] $end $var wire 16 I" product [15:0] $end $upscope $end $scope module mul_space2_inst $end $var wire 16 J" a [15:0] $end $var wire 16 K" b [15:0] $end $var wire 32 L" temp [31:0] $end $var wire 16 M" product [15:0] $end $upscope $end $scope module mul_space_final_inst $end $var wire 32 N" temp [31:0] $end $var wire 16 O" product [15:0] $end $var wire 16 P" b [15:0] $end $var wire 16 Q" a [15:0] $end $upscope $end $scope module mul_time_inst $end $var wire 16 R" a [15:0] $end $var wire 16 S" b [15:0] $end $var wire 32 T" temp [31:0] $end $var wire 16 U" product [15:0] $end $upscope $end $scope module mul_warp_inst $end $var wire 16 V" b [15:0] $end $var wire 32 W" temp [31:0] $end $var wire 16 X" product [15:0] $end $var wire 16 Y" a [15:0] $end $upscope $end $scope module sigmoid_inst $end $var wire 16 Z" x [15:0] $end $var wire 16 [" y [15:0] $end $var wire 16 \" x_plus_5 [15:0] $end $var wire 1 ]" x_lt_neg5 $end $var wire 1 ^" x_gt_pos5 $end $var wire 16 _" x_div_10 [15:0] $end $scope module add_inst $end $var wire 16 `" a [15:0] $end $var wire 16 a" b [15:0] $end $var wire 16 b" sum [15:0] $end $upscope $end $scope module div_inst $end $var wire 16 c" denominator [15:0] $end $var wire 16 d" numerator [15:0] $end $var wire 32 e" temp [31:0] $end $var wire 16 f" quotient [15:0] $end $upscope $end $upscope $end $scope module sub_coherence_inst $end $var wire 16 g" a [15:0] $end $var wire 16 h" b [15:0] $end $var wire 16 i" diff [15:0] $end $upscope $end $scope module sub_space_inst $end $var wire 16 j" a [15:0] $end $var wire 16 k" b [15:0] $end $var wire 16 l" diff [15:0] $end $upscope $end $upscope $end $upscope $end $scope task run_mechanical_cycle $end $upscope $end $upscope $end $enddefinitions $end $comment Show the parameter values. $end $dumpall $end #0 $dumpvars bx l" bx k" b0 j" b1111111111111111 i" b0 h" b1111111111111111 g" bx f" bx e" bx d" b1010000000000000 c" bx b" b101000000000000 a" bx `" bx _" x^" x]" bx \" bx [" bx Z" bx Y" bx X" bx W" b1111111111111111 V" b111111110 U" b111111110000000000000000 T" b100000000 S" b1111111100000000 R" bx Q" bx P" bx O" bx N" bx M" bx L" b100000000 K" bx J" bx I" bx H" b0x G" b1000000000000 F" bx E" bx D" bx C" b1111000000000000 B" b1000000000000 A" b1000000000000 @" b1000000000000 ?" b1111111111111111 >" b1111111111111111 =" b1000000000000 <" bx ;" b1111111111111111 :" bx 9" bx 8" b111111110 7" bx 6" x5" bx 4" bx 3" bx 2" bx 1" b100000000 0" b1111111111111111 /" b1000000000000 ." b1000000000000 -" b0 ," b0 +" 1*" 1)" 1(" b0 '" b0 &" bx %" bx $" b0 #" bx "" bx !" bx ~ bx } bx | bx { bx z bx y b0 x b0 w b0 v bx u xt xs b1100000000000000 r 0q b0 p b0 o b1100000000000000 n bx m xl bx k bx j b0 i b0 h b100000000000000 g bx f bx e bx d b0 c b0 b b0 a b0 ` b0 _ b0 ^ b0 ] 1\ 1[ b0 Z b0 Y b0 X b0 W b0 V b1000000000000 U b0 T b0 S bx R b0 Q b0x P xO b0x N xM b0 L b0 K bx J b0 I b0 H b100000000 G b1111111111111111 F b0 E b1000000000000 D b0 C b1000000000000 B b0 A b100000000000000 @ b0 ? bx > bx = b0 < bx ; b1000000000000 : b0 9 b0 8 b0 7 06 b100000000 5 b1111111111111111 4 b0 3 b1000000000000 2 b1000000000000 1 b100000000000000 0 bx / bx . b0 - bx , b0 + b0 * 0) b1000000000000 ( 0' b0 & 0% bx $ b0 # b0x " b0x ! $end #10000 1) #20000 0) #30000 1) #40000 0) #50000 x% xq 1) b10000000000000 3 b10000000000000 E b10000000000000 h b10000000000000 w b110000000000000 o b110000000000000 x b110000000000000 #" b100000000000000 7 b100000000000000 H b100000000000000 i b100000000000000 v 16 #60000 0) #70000 1) #80000 0) #90000 1) #100000 0) #110000 1) #120000 0) #130000 1) #140000 0) #150000 b0 " b0 P 0O b0 3" b0 O" b0 N" b0 9" b0 P" b0 Q" b0 l" b0 8" b0 M" b0 k" b0 L" b0 6" b0 I" b0 J" b0 H" b0 G" 05" b1100110 _" b1100110 f" b1111111111111100 4" b1111111111111100 X" b1 ! b1 N b1100110 e" b11111111111111100000000000000001 W" 1M b1111111111111111 2" b1111111111111111 Y" b1111111111111111 [" 0]" 1^" b1000000 \" b1000000 b" b1000000 d" b1011000001000000 ;" b1011000001000000 E" b1011000001000000 Z" b1011000001000000 `" b1011000001000000000000000000000 D" 0s 0t 1l b101111000000000 $ b101111000000000 J b101111000000000 R b101111000000000 m b101111000000000 u b101111000000000 %" b101111000000000 1" b101111000000000 C" b1000000000 j b1000000000 "" b1000000000 $" b1000000000000000000000000 !" b1000000000000 k b1000000000000 | b1000000000000 } b1000000000000000000000000000 { 1) b1000000000000 . b1000000000000 = b1000000000000 e b1000000000000 ~ b100000000000000 , b100000000000000 ; b100000000000000 d b100000000000000 z b10000000000000 / b10000000000000 > b10000000000000 f b10000000000000 y #160000 0) #170000 b1 p 1% 1q 1) #180000 0) #190000 b10 p 1) #200000 0) #210000 b11 p 1) #220000 0) #230000 b100 p 1) #240000 0) #250000 b101 p b11010000011 _" b11010000011 f" b1111111111111100 4" b1111111111111100 X" b1 ! b1 N b11010000011 e" b11111111111111100000000000000001 W" 1M b1111111111111111 2" b1111111111111111 Y" b1111111111111111 [" 0]" b10000010010 \" b10000010010 b" b10000010010 d" b1011010000010010 ;" b1011010000010010 E" b1011010000010010 Z" b1011010000010010 `" b1011010000010010110000000000000 D" b110000000001010 $ b110000000001010 J b110000000001010 R b110000000001010 m b110000000001010 u b110000000001010 %" b110000000001010 1" b110000000001010 C" b1111111111110110 j b1111111111110110 "" b1111111111110110 $" b1111111111111100 k b1111111111111100 | b1111111111111100 } b11111111111110110000000000000100 !" b11111111111111100000000000000001 { 1) b1111111111111111 . b1111111111111111 = b1111111111111111 e b1111111111111111 ~ b1111111111111111 , b1111111111111111 ; b1111111111111111 d b1111111111111111 z b1111111111111111 / b1111111111111111 > b1111111111111111 f b1111111111111111 y #260000 0) #270000 b110 p 1) #280000 0) #290000 b111 p 1) #300000 0) #310000 1' b1000 p 1) #320000 0) #330000 b1001 p 1) #340000 0) #350000 b1010 p 1) #360000 0) #370000 b1011 p 1) #380000 0) #390000 b1100 p 1) #400000 0) #410000 b1101 p 1) #420000 0)