Files
FPGA-Neural/sim/parameter_sweep.vcd
T
micheleandClaude Sonnet 5 f81d7fa1b3 test: certify layer_sequencer chain (C.5), find critical BUG-005
Layer chain / ping-pong / busy-done certified via the existing
pre-session test, which already verifies the actual ping-pong buffer
address used (not just the value) and correct busy/done timing.

New finding, BUG-005 (CRITICAL): run_num_layers=0 has no guard at
compile time or runtime, and unlike BUG-002's 1-bit group_index (which
can never represent the wraparound value), layer_idx here is a full
8-bit register that naturally reaches it. Confirmed empirically with a
minimal neuron_memory stub: RUN_NETWORK(0) runs through all 256
possible layer indices (21761 cycles), reading arbitrary PSRAM bytes
far past the real descriptor table as if they were valid layer
descriptors, running real neuron_memory passes on them, and writing
results to ping-pong buffer addresses derived from that arbitrary
data. More severe than BUG-002/003/004: reachable via a single
documented SPI opcode (RUN_NETWORK), real PSRAM corruption risk rather
than just a hang or wrong result. Root cause fully isolated, not just
the symptom.

Full regression: 40/40 real tests pass, 1 new observational test
(no pass/fail by design) deterministically reproduces BUG-005.

Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_013xXuuRUWZScuo1DeYJxs3v
2026-09-04 14:47:41 +02:00

3018 lines
53 KiB
Plaintext

$date
Fri Sep 4 14:46:32 2026
$end
$version
Icarus Verilog
$end
$timescale
1ps
$end
$scope module tb $end
$var wire 8 ! y_g [7:0] $end
$var wire 8 " y_f [7:0] $end
$var wire 8 # y_d [7:0] $end
$var wire 8 $ y_a [7:0] $end
$var wire 1 % done_g $end
$var wire 1 & done_f $end
$var wire 1 ' done_d $end
$var wire 1 ( done_a $end
$var wire 1 ) busy_g $end
$var wire 1 * busy_f $end
$var wire 1 + busy_d $end
$var wire 1 , busy_a $end
$var parameter 32 - A_ACC_WIDTH $end
$var parameter 32 . A_DATA_WIDTH $end
$var parameter 32 / A_N_INPUTS $end
$var parameter 32 0 A_PARALLEL $end
$var parameter 32 1 D_ACC_WIDTH $end
$var parameter 32 2 D_DATA_WIDTH $end
$var parameter 32 3 D_N_INPUTS $end
$var parameter 32 4 D_PARALLEL $end
$var parameter 32 5 F_ACC_WIDTH $end
$var parameter 32 6 F_DATA_WIDTH $end
$var parameter 32 7 F_N_INPUTS $end
$var parameter 32 8 F_PARALLEL $end
$var parameter 32 9 G_ACC_WIDTH $end
$var parameter 32 : G_DATA_WIDTH $end
$var parameter 32 ; G_N_INPUTS $end
$var parameter 32 < G_PARALLEL $end
$var reg 8 = bias_a [7:0] $end
$var reg 8 > bias_d [7:0] $end
$var reg 8 ? bias_f [7:0] $end
$var reg 8 @ bias_g [7:0] $end
$var reg 1 A clk $end
$var reg 1 B rst $end
$var reg 1 C start_a $end
$var reg 1 D start_d $end
$var reg 1 E start_f $end
$var reg 1 F start_g $end
$var reg 256 G w_bus_a [255:0] $end
$var reg 512 H w_bus_d [511:0] $end
$var reg 256 I w_bus_f [255:0] $end
$var reg 256 J w_bus_g [255:0] $end
$var reg 256 K x_bus_a [255:0] $end
$var reg 512 L x_bus_d [511:0] $end
$var reg 256 M x_bus_f [255:0] $end
$var reg 256 N x_bus_g [255:0] $end
$var integer 32 O count [31:0] $end
$var integer 32 P errors [31:0] $end
$scope module u_a $end
$var wire 2 Q activation [1:0] $end
$var wire 8 R bias [7:0] $end
$var wire 1 A clk $end
$var wire 1 S final_acc_in_range $end
$var wire 1 T final_acc_le_zero $end
$var wire 1 U final_acc_upper_all0 $end
$var wire 16 V n_inputs_real [15:0] $end
$var wire 1 B rst $end
$var wire 1 C start $end
$var wire 256 W w_bus [255:0] $end
$var wire 256 X x_bus [255:0] $end
$var wire 8 Y y_relu [7:0] $end
$var wire 8 Z 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 , busy $end
$var reg 1 ( done $end
$var reg 1 l finishing $end
$var reg 2 m group_index [1:0] $end
$var reg 8 n y [7:0] $end
$scope module u_mac8 $end
$var wire 32 o acc_in [31:0] $end
$var wire 64 p w_bus [63:0] $end
$var wire 64 q x_bus [63:0] $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 32 u PARALLEL $end
$var parameter 32 v TREE_LEVELS $end
$scope begin GEN_MAC[0] $end
$var parameter 2 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[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 *" 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 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[3] $end
$var parameter 3 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[4] $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_MAC[5] $end
$var parameter 4 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[6] $end
$var parameter 4 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[7] $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_TREE_INPUT[0] $end
$var parameter 2 i" i $end
$upscope $end
$scope begin GEN_TREE_INPUT[1] $end
$var parameter 2 j" i $end
$upscope $end
$scope begin GEN_TREE_INPUT[2] $end
$var parameter 3 k" i $end
$upscope $end
$scope begin GEN_TREE_INPUT[3] $end
$var parameter 3 l" i $end
$upscope $end
$scope begin GEN_TREE_INPUT[4] $end
$var parameter 4 m" i $end
$upscope $end
$scope begin GEN_TREE_INPUT[5] $end
$var parameter 4 n" i $end
$upscope $end
$scope begin GEN_TREE_INPUT[6] $end
$var parameter 4 o" i $end
$upscope $end
$scope begin GEN_TREE_INPUT[7] $end
$var parameter 4 p" i $end
$upscope $end
$scope begin GEN_TREE_LEVEL[0] $end
$var parameter 2 q" level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 r" node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 s" node $end
$upscope $end
$scope begin GEN_TREE_NODE[2] $end
$var parameter 3 t" node $end
$upscope $end
$scope begin GEN_TREE_NODE[3] $end
$var parameter 3 u" node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[1] $end
$var parameter 2 v" level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 w" node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 x" node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[2] $end
$var parameter 3 y" level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 z" node $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$scope module u_d $end
$var wire 2 {" activation [1:0] $end
$var wire 8 |" bias [7:0] $end
$var wire 1 A 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 B rst $end
$var wire 1 D start $end
$var wire 512 ## w_bus [511:0] $end
$var wire 512 $# x_bus [511:0] $end
$var wire 8 %# y_relu [7:0] $end
$var wire 8 &# y_none [7:0] $end
$var wire 256 '# x_group [255:0] $end
$var wire 256 (# w_group [255:0] $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 -# bias_ext [31:0] $end
$var wire 32 .# acc_next [31:0] $end
$var parameter 32 /# ACC_WIDTH $end
$var parameter 2 0# ACT_NONE $end
$var parameter 2 1# ACT_RELU $end
$var parameter 32 2# DATA_WIDTH $end
$var parameter 32 3# GROUPS $end
$var parameter 32 4# GROUP_INDEX_WIDTH $end
$var parameter 32 5# N_INPUTS $end
$var parameter 32 6# PARALLEL $end
$var reg 32 7# acc [31:0] $end
$var reg 1 + busy $end
$var reg 1 ' done $end
$var reg 1 8# finishing $end
$var reg 1 9# group_index $end
$var reg 8 :# y [7:0] $end
$scope module u_mac8 $end
$var wire 32 ;# acc_in [31:0] $end
$var wire 256 <# w_bus [255:0] $end
$var wire 256 =# x_bus [255:0] $end
$var wire 32 ># acc_out [31:0] $end
$var parameter 32 ?# ACC_WIDTH $end
$var parameter 32 @# DATA_WIDTH $end
$var parameter 32 A# PARALLEL $end
$var parameter 32 B# TREE_LEVELS $end
$scope begin GEN_MAC[0] $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[1] $end
$var parameter 2 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[2] $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[3] $end
$var parameter 3 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[4] $end
$var parameter 4 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[5] $end
$var parameter 4 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[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
$var wire 32 '$ 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
$var parameter 4 +$ 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[8] $end
$var parameter 5 5$ 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[9] $end
$var parameter 5 ?$ 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[10] $end
$var parameter 5 I$ 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_MAC[11] $end
$var parameter 5 S$ i $end
$scope module u_mac $end
$var wire 32 T$ acc_in [31:0] $end
$var wire 8 U$ w [7:0] $end
$var wire 8 V$ x [7:0] $end
$var wire 32 W$ product_ext [31:0] $end
$var wire 16 X$ product [15:0] $end
$var wire 32 Y$ acc_out [31:0] $end
$var parameter 32 Z$ ACC_WIDTH $end
$var parameter 32 [$ DATA_WIDTH $end
$var parameter 64 \$ PROD_WIDTH $end
$upscope $end
$upscope $end
$scope begin GEN_MAC[12] $end
$var parameter 5 ]$ 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[13] $end
$var parameter 5 g$ 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[14] $end
$var parameter 5 q$ 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[15] $end
$var parameter 5 {$ 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[16] $end
$var parameter 6 '% 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[17] $end
$var parameter 6 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[18] $end
$var parameter 6 ;% 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[19] $end
$var parameter 6 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[20] $end
$var parameter 6 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[21] $end
$var parameter 6 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[22] $end
$var parameter 6 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[23] $end
$var parameter 6 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[24] $end
$var parameter 6 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[25] $end
$var parameter 6 #& 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[26] $end
$var parameter 6 -& 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[27] $end
$var parameter 6 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[28] $end
$var parameter 6 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[29] $end
$var parameter 6 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[30] $end
$var parameter 6 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[31] $end
$var parameter 6 _& 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_TREE_INPUT[0] $end
$var parameter 2 i& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[1] $end
$var parameter 2 j& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[2] $end
$var parameter 3 k& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[3] $end
$var parameter 3 l& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[4] $end
$var parameter 4 m& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[5] $end
$var parameter 4 n& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[6] $end
$var parameter 4 o& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[7] $end
$var parameter 4 p& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[8] $end
$var parameter 5 q& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[9] $end
$var parameter 5 r& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[10] $end
$var parameter 5 s& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[11] $end
$var parameter 5 t& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[12] $end
$var parameter 5 u& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[13] $end
$var parameter 5 v& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[14] $end
$var parameter 5 w& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[15] $end
$var parameter 5 x& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[16] $end
$var parameter 6 y& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[17] $end
$var parameter 6 z& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[18] $end
$var parameter 6 {& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[19] $end
$var parameter 6 |& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[20] $end
$var parameter 6 }& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[21] $end
$var parameter 6 ~& i $end
$upscope $end
$scope begin GEN_TREE_INPUT[22] $end
$var parameter 6 !' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[23] $end
$var parameter 6 "' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[24] $end
$var parameter 6 #' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[25] $end
$var parameter 6 $' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[26] $end
$var parameter 6 %' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[27] $end
$var parameter 6 &' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[28] $end
$var parameter 6 '' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[29] $end
$var parameter 6 (' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[30] $end
$var parameter 6 )' i $end
$upscope $end
$scope begin GEN_TREE_INPUT[31] $end
$var parameter 6 *' 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
$scope begin GEN_TREE_NODE[4] $end
$var parameter 4 0' node $end
$upscope $end
$scope begin GEN_TREE_NODE[5] $end
$var parameter 4 1' node $end
$upscope $end
$scope begin GEN_TREE_NODE[6] $end
$var parameter 4 2' node $end
$upscope $end
$scope begin GEN_TREE_NODE[7] $end
$var parameter 4 3' node $end
$upscope $end
$scope begin GEN_TREE_NODE[8] $end
$var parameter 5 4' node $end
$upscope $end
$scope begin GEN_TREE_NODE[9] $end
$var parameter 5 5' node $end
$upscope $end
$scope begin GEN_TREE_NODE[10] $end
$var parameter 5 6' node $end
$upscope $end
$scope begin GEN_TREE_NODE[11] $end
$var parameter 5 7' node $end
$upscope $end
$scope begin GEN_TREE_NODE[12] $end
$var parameter 5 8' node $end
$upscope $end
$scope begin GEN_TREE_NODE[13] $end
$var parameter 5 9' node $end
$upscope $end
$scope begin GEN_TREE_NODE[14] $end
$var parameter 5 :' node $end
$upscope $end
$scope begin GEN_TREE_NODE[15] $end
$var parameter 5 ;' 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
$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
$scope begin GEN_TREE_NODE[4] $end
$var parameter 4 A' node $end
$upscope $end
$scope begin GEN_TREE_NODE[5] $end
$var parameter 4 B' node $end
$upscope $end
$scope begin GEN_TREE_NODE[6] $end
$var parameter 4 C' node $end
$upscope $end
$scope begin GEN_TREE_NODE[7] $end
$var parameter 4 D' node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[2] $end
$var parameter 3 E' level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 F' node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 G' node $end
$upscope $end
$scope begin GEN_TREE_NODE[2] $end
$var parameter 3 H' node $end
$upscope $end
$scope begin GEN_TREE_NODE[3] $end
$var parameter 3 I' node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[3] $end
$var parameter 3 J' level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 K' node $end
$upscope $end
$scope begin GEN_TREE_NODE[1] $end
$var parameter 2 L' node $end
$upscope $end
$upscope $end
$scope begin GEN_TREE_LEVEL[4] $end
$var parameter 4 M' level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 N' node $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$scope module u_f $end
$var wire 2 O' activation [1:0] $end
$var wire 8 P' bias [7:0] $end
$var wire 1 A clk $end
$var wire 1 Q' final_acc_in_range $end
$var wire 1 R' final_acc_le_zero $end
$var wire 1 S' final_acc_upper_all0 $end
$var wire 16 T' n_inputs_real [15:0] $end
$var wire 1 B rst $end
$var wire 1 E start $end
$var wire 256 U' w_bus [255:0] $end
$var wire 256 V' x_bus [255:0] $end
$var wire 8 W' y_relu [7:0] $end
$var wire 8 X' y_none [7:0] $end
$var wire 16 Y' x_group [15:0] $end
$var wire 16 Z' w_group [15:0] $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 _' bias_ext [31:0] $end
$var wire 32 `' acc_next [31:0] $end
$var parameter 32 a' ACC_WIDTH $end
$var parameter 2 b' ACT_NONE $end
$var parameter 2 c' ACT_RELU $end
$var parameter 32 d' DATA_WIDTH $end
$var parameter 32 e' GROUPS $end
$var parameter 32 f' GROUP_INDEX_WIDTH $end
$var parameter 32 g' N_INPUTS $end
$var parameter 32 h' PARALLEL $end
$var reg 32 i' acc [31:0] $end
$var reg 1 * busy $end
$var reg 1 & done $end
$var reg 1 j' finishing $end
$var reg 4 k' group_index [3:0] $end
$var reg 8 l' y [7:0] $end
$scope module u_mac8 $end
$var wire 32 m' acc_in [31:0] $end
$var wire 16 n' w_bus [15:0] $end
$var wire 16 o' x_bus [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 32 s' PARALLEL $end
$var parameter 32 t' TREE_LEVELS $end
$scope begin GEN_MAC[0] $end
$var parameter 2 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[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 (( 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_LEVEL[0] $end
$var parameter 2 -( level $end
$scope begin GEN_TREE_NODE[0] $end
$var parameter 2 .( node $end
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$scope module u_g $end
$var wire 2 /( activation [1:0] $end
$var wire 8 0( bias [7:0] $end
$var wire 1 A clk $end
$var wire 1 1( final_acc_in_range $end
$var wire 1 2( final_acc_le_zero $end
$var wire 1 3( final_acc_upper_all0 $end
$var wire 16 4( n_inputs_real [15:0] $end
$var wire 1 B rst $end
$var wire 1 F start $end
$var wire 256 5( w_bus [255:0] $end
$var wire 256 6( x_bus [255:0] $end
$var wire 8 7( y_relu [7:0] $end
$var wire 8 8( y_none [7:0] $end
$var wire 32 9( x_group [31:0] $end
$var wire 32 :( w_group [31:0] $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 ?( bias_ext [31:0] $end
$var wire 32 @( acc_next [31:0] $end
$var parameter 32 A( ACC_WIDTH $end
$var parameter 2 B( ACT_NONE $end
$var parameter 2 C( ACT_RELU $end
$var parameter 32 D( DATA_WIDTH $end
$var parameter 32 E( GROUPS $end
$var parameter 32 F( GROUP_INDEX_WIDTH $end
$var parameter 32 G( N_INPUTS $end
$var parameter 32 H( PARALLEL $end
$var reg 32 I( acc [31:0] $end
$var reg 1 ) busy $end
$var reg 1 % done $end
$var reg 1 J( finishing $end
$var reg 3 K( group_index [2:0] $end
$var reg 8 L( y [7:0] $end
$scope module u_mac8 $end
$var wire 32 M( acc_in [31:0] $end
$var wire 32 N( w_bus [31:0] $end
$var wire 32 O( x_bus [31:0] $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 32 S( PARALLEL $end
$var parameter 32 T( TREE_LEVELS $end
$scope begin GEN_MAC[0] $end
$var parameter 2 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[1] $end
$var parameter 2 _( 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[2] $end
$var parameter 3 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_MAC[3] $end
$var parameter 3 s( i $end
$scope module u_mac $end
$var wire 32 t( acc_in [31:0] $end
$var wire 8 u( w [7:0] $end
$var wire 8 v( x [7:0] $end
$var wire 32 w( product_ext [31:0] $end
$var wire 16 x( product [15:0] $end
$var wire 32 y( acc_out [31:0] $end
$var parameter 32 z( 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_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
$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
$upscope $end
$upscope $end
$upscope $end
$upscope $end
$enddefinitions $end
$comment Show the parameter values. $end
$dumpall
b0 ')
b1 &)
b1 %)
b0 $)
b0 #)
b11 ")
b10 !)
b1 ~(
b0 }(
b10000 |(
b1000 {(
b100000 z(
b11 s(
b10000 r(
b1000 q(
b100000 p(
b10 i(
b10000 h(
b1000 g(
b100000 f(
b1 _(
b10000 ^(
b1000 ](
b100000 \(
b0 U(
b10 T(
b100 S(
b1000 R(
b100000 Q(
b100 H(
b100000 G(
b11 F(
b1000 E(
b1000 D(
b1 C(
b0 B(
b100000 A(
b0 .(
b0 -(
b1 ,(
b0 +(
b10000 *(
b1000 )(
b100000 ((
b1 !(
b10000 ~'
b1000 }'
b100000 |'
b0 u'
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$end
#0
$dumpvars
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#5000
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b100000001000000010000000100000001000000010000000100000001 \
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b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 (#
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b1000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 H
b1000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 ##
b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 '#
b100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 =#
b1000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 L
b1000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001000000010000000100000001 $#
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