UnityChipVerification/rtl_src/common/DelayN_4.sv

94 lines
3.8 KiB
Systemverilog

// Generated by CIRCT firtool-1.61.0
// Standard header to adapt well known macros for register randomization.
`ifndef RANDOMIZE
`ifdef RANDOMIZE_MEM_INIT
`define RANDOMIZE
`endif // RANDOMIZE_MEM_INIT
`endif // not def RANDOMIZE
`ifndef RANDOMIZE
`ifdef RANDOMIZE_REG_INIT
`define RANDOMIZE
`endif // RANDOMIZE_REG_INIT
`endif // not def RANDOMIZE
// RANDOM may be set to an expression that produces a 32-bit random unsigned value.
`ifndef RANDOM
`define RANDOM $random
`endif // not def RANDOM
// Users can define INIT_RANDOM as general code that gets injected into the
// initializer block for modules with registers.
`ifndef INIT_RANDOM
`define INIT_RANDOM
`endif // not def INIT_RANDOM
// If using random initialization, you can also define RANDOMIZE_DELAY to
// customize the delay used, otherwise 0.002 is used.
`ifndef RANDOMIZE_DELAY
`define RANDOMIZE_DELAY 0.002
`endif // not def RANDOMIZE_DELAY
// Define INIT_RANDOM_PROLOG_ for use in our modules below.
`ifndef INIT_RANDOM_PROLOG_
`ifdef RANDOMIZE
`ifdef VERILATOR
`define INIT_RANDOM_PROLOG_ `INIT_RANDOM
`else // VERILATOR
`define INIT_RANDOM_PROLOG_ `INIT_RANDOM #`RANDOMIZE_DELAY begin end
`endif // VERILATOR
`else // RANDOMIZE
`define INIT_RANDOM_PROLOG_
`endif // RANDOMIZE
`endif // not def INIT_RANDOM_PROLOG_
// Include register initializers in init blocks unless synthesis is set
`ifndef SYNTHESIS
`ifndef ENABLE_INITIAL_REG_
`define ENABLE_INITIAL_REG_
`endif // not def ENABLE_INITIAL_REG_
`endif // not def SYNTHESIS
// Include rmemory initializers in init blocks unless synthesis is set
`ifndef SYNTHESIS
`ifndef ENABLE_INITIAL_MEM_
`define ENABLE_INITIAL_MEM_
`endif // not def ENABLE_INITIAL_MEM_
`endif // not def SYNTHESIS
module DelayN_4( // utility/src/main/scala/utility/Hold.scala:83:7
input clock,
input [38:0] io_in, // utility/src/main/scala/utility/Hold.scala:84:14
output [38:0] io_out // utility/src/main/scala/utility/Hold.scala:84:14
);
reg [38:0] REG; // utility/src/main/scala/utility/Hold.scala:90:18
reg [38:0] REG_1; // utility/src/main/scala/utility/Hold.scala:90:18
always @(posedge clock) begin
REG <= io_in; // utility/src/main/scala/utility/Hold.scala:90:18
REG_1 <= REG; // utility/src/main/scala/utility/Hold.scala:90:18
end // always @(posedge)
`ifdef ENABLE_INITIAL_REG_ // utility/src/main/scala/utility/Hold.scala:83:7
`ifdef FIRRTL_BEFORE_INITIAL // utility/src/main/scala/utility/Hold.scala:83:7
`FIRRTL_BEFORE_INITIAL // utility/src/main/scala/utility/Hold.scala:83:7
`endif // FIRRTL_BEFORE_INITIAL
logic [31:0] _RANDOM[0:2]; // utility/src/main/scala/utility/Hold.scala:83:7
initial begin // utility/src/main/scala/utility/Hold.scala:83:7
`ifdef INIT_RANDOM_PROLOG_ // utility/src/main/scala/utility/Hold.scala:83:7
`INIT_RANDOM_PROLOG_ // utility/src/main/scala/utility/Hold.scala:83:7
`endif // INIT_RANDOM_PROLOG_
`ifdef RANDOMIZE_REG_INIT // utility/src/main/scala/utility/Hold.scala:83:7
for (logic [1:0] i = 2'h0; i < 2'h3; i += 2'h1) begin
_RANDOM[i] = `RANDOM; // utility/src/main/scala/utility/Hold.scala:83:7
end // utility/src/main/scala/utility/Hold.scala:83:7
REG = {_RANDOM[2'h0], _RANDOM[2'h1][6:0]}; // utility/src/main/scala/utility/Hold.scala:83:7, :90:18
REG_1 = {_RANDOM[2'h1][31:7], _RANDOM[2'h2][13:0]}; // utility/src/main/scala/utility/Hold.scala:83:7, :90:18
`endif // RANDOMIZE_REG_INIT
end // initial
`ifdef FIRRTL_AFTER_INITIAL // utility/src/main/scala/utility/Hold.scala:83:7
`FIRRTL_AFTER_INITIAL // utility/src/main/scala/utility/Hold.scala:83:7
`endif // FIRRTL_AFTER_INITIAL
`endif // ENABLE_INITIAL_REG_
assign io_out = REG_1; // utility/src/main/scala/utility/Hold.scala:83:7, :90:18
endmodule