`timescale 1ns/1ps module vrlp_to_compressed_vita_tb(); reg clk = 0; reg reset = 1; always #10 clk = ~clk; initial $dumpfile("vrlp_to_compressed_vita_tb.vcd"); initial $dumpvars(0,vrlp_to_compressed_vita_tb); task send_packet; input [63:0] data_start; input [31:0] len; begin // Send a packet @(posedge clk); {i_tlast, i_tdata} <= { 1'b0, data_start }; i_tvalid <= 1; @(posedge clk); i_tdata <= 64'hAAAA_BBBB_CCCC_0000; repeat(len-2) begin i_tvalid <= 1; @(posedge clk); i_tdata <= i_tdata + 1; end i_tlast <= 1; i_tdata <= i_tdata + 1; @(posedge clk); i_tvalid <= 1'b0; @(posedge clk); end endtask // send_packet initial begin #1000 reset = 0; #200000; $finish; end wire [63:0] o_tdata; reg [63:0] i_tdata; wire [2:0] o_tuser; reg [2:0] i_tuser; reg i_tlast; wire o_tlast; wire o_tvalid, i_tready; reg i_tvalid, o_tready; reg i_terror; localparam RPT_COUNT = 16; initial begin i_tvalid <= 0; o_tready <= 0; while(reset) @(posedge clk); @(posedge clk); //send_packet(64'hA0,3'd0, 16, 0); send_packet(64'hAABC_0008_DEAD_BEEF, 4); send_packet(64'h7DEF_0008_8765_4321, 4); send_packet(64'hAABC_0007_F00D_1234, 4); send_packet(64'h7DEF_0007_ABCD_4321, 4); o_tready <= 1; //send_packet(64'hC0,3'd0, 16, 1); //send_packet(64'hD0,3'd0, 16, 0); //send_packet(64'hE0,3'd0, 16, 0); //send_packet(64'hF0,3'd0, 16, 0); @(posedge clk); end // initial begin wire i_terror_int, i_tlast_int, i_tready_int, i_tvalid_int; wire [2:0] i_tuser_int; wire [63:0] i_tdata_int; wire o_tlast_int, o_tready_int, o_tvalid_int; wire [2:0] o_tuser_int; wire [63:0] o_tdata_int; wire [63:0] vrlp_tdata; wire vrlp_tlast, vrlp_tvalid, vrlp_tready; axi_fifo #(.WIDTH(65), .SIZE(10)) fifo (.clk(clk), .reset(reset), .clear(1'b0), .i_tdata({i_tlast,i_tdata}), .i_tvalid(i_tvalid), .i_tready(i_tready), .o_tdata({i_tlast_int,i_tdata_int}), .o_tvalid(i_tvalid_int), .o_tready(i_tready_int)); compressed_vita_to_vrlp dut0 (.clk(clk), .reset(reset), .clear(1'b0), .i_tdata(i_tdata_int), .i_tlast(i_tlast_int), .i_tvalid(i_tvalid_int), .i_tready(i_tready_int), .o_tdata(vrlp_tdata), .o_tlast(vrlp_tlast), .o_tvalid(vrlp_tvalid), .o_tready(vrlp_tready)); vrlp_to_compressed_vita dut1 (.clk(clk), .reset(reset), .clear(1'b0), .i_tdata(vrlp_tdata), .i_tlast(vrlp_tlast), .i_tvalid(vrlp_tvalid), .i_tready(vrlp_tready), .o_tdata(o_tdata_int), .o_tlast(o_tlast_int), .o_tvalid(o_tvalid_int), .o_tready(o_tready_int)); axi_fifo #(.WIDTH(65), .SIZE(10)) fifo_out (.clk(clk), .reset(reset), .clear(1'b0), .i_tdata({o_tlast_int,o_tdata_int}), .i_tvalid(o_tvalid_int), .i_tready(o_tready_int), .o_tdata({o_tlast,o_tdata}), .o_tvalid(o_tvalid), .o_tready(o_tready)); always @(posedge clk) if(o_tvalid & o_tready) begin $display("%x",o_tdata); if(o_tlast) $display("======EOF========"); end endmodule // vrlp_to_compressed_vita_tb