add: half-baked reflectometer TB
fix: constraints port names; ready: reflectometer top module
This commit is contained in:
@ -1,3 +1,3 @@
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# Primary clocks
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create_clock -name eth_clk -period 8.000 [get_ports dac_clk_in]
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create_clock -name acc_clk -period 15.385 [get_ports adc_clk_in]
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create_clock -name eth_clk -period 8.000 [get_ports clk_dac]
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create_clock -name acc_clk -period 15.385 [get_ports clk_adc]
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@ -305,4 +305,4 @@ module tb_top;
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$finish;
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end
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endmodule
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endmodule
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@ -1 +1,4 @@
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set_clock_groups -name ASYNC_UDP_CTRL -asynchronous -group [get_clocks rgmii_rxc] -group [get_clocks clk_out1_clk_wiz_ctrl_inst] -group [get_clocks clk_out2_clk_wiz_ctrl_inst]
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# Primary clocks
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create_clock -name ref_clock -period 5.000 [get_ports clk_in]
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create_clock -name phy_rx_clock -period 8.000 [get_ports clk_m_axis]
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create_clock -name phy_tx_clock -period 8.000 [get_ports clk_s_axis]
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@ -11,75 +11,68 @@ module reflectometer_top #(
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parameter int unsigned WINDOW_SIZE = 65,
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parameter int unsigned PACKET_SIZE = 1024
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)(
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input sys_clk,
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input rst_n,
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input wire clk_in,
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input wire rst_n,
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output wire locked,
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output [3:0] led,
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// Accumulator AXI-S bus
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input wire clk_m_axis, // GMII PHY RX clock
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output wire [7:0] m_axis_tdata,
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output wire m_axis_tvalid,
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input wire m_axis_tready,
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output wire m_axis_tlast,
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input gmii_rx_clk,
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input gmii_tx_clk,
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// Control AXI-S bus
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input wire clk_s_axis, // GMII PHY TX clock
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input wire [7:0] s_axis__tdata,
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input wire s_axis_tvalid,
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input wire s_axis_tlast,
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output wire s_axis_tready,
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(* MARK_DEBUG="true" *) output logic [7:0] s_axis_tx_tdata,
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(* MARK_DEBUG="true" *) output logic s_axis_tx_tvalid,
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(* MARK_DEBUG="true" *) input logic s_axis_tx_tready,
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(* MARK_DEBUG="true" *) output logic s_axis_tx_tlast,
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(* MARK_DEBUG="true" *) input wire [7:0] m_axis_rx_tdata,
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(* MARK_DEBUG="true" *) input wire m_axis_rx_tvalid,
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(* MARK_DEBUG="true" *) input wire m_axis_rx_tlast,
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(* MARK_DEBUG="true" *) output wire m_axis_rx_tready,
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// axis_mac
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(* MARK_DEBUG="true" *) input logic req_ready,
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(* MARK_DEBUG="true" *) output logic send_req,
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// RTL-MAC handshake
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input wire request_ready,
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output wire send_request,
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// DAC
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output logic dac_clk_o,
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output logic [DAC_DATA_WIDTH-1:0] dac_data,
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output logic dac_wrt,
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output wire dac_clk_o,
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output wire [DAC_DATA_WIDTH-1:0] dac_data,
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output wire dac_wrt,
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// ADC
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output logic adc_clk_o,
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output wire adc_clk_o,
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input wire [ADC_DATA_WIDTH-1:0] adc_data,
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input wire adc_otr
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);
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wire [ADC_DATA_WIDTH*PACK_FACTOR-1:0] sampler_m_axis_tdata;
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wire sampler_m_axis_tvalid;
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// -------------------------------------------------------------------------
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// Generated clocks for controller
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// Need to create this IP in Vivado:
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// input : 200 MHz
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// output0: 130 MHz
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// output1: 65 MHz
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// input resetn
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// input clk_200 : 200 MHz : Reference clock
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// output clk_adc_65 : 65 MHz : ADC RTL clock
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// output clk_adc_65_180 : 65 MHz, phase 180 deg. : ADC PHY clock
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// output clk_adc_125 : 125 MHz : DAC RTL clock
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// output clk_adc_125_180 : 125 MHz, phase 180 deg. : DAC PHY clock
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// output locked
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// -------------------------------------------------------------------------
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wire dac_clk;
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wire adc_clk;
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wire clk_wiz_locked;
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wire clk_sampler, clk_generator, clk_locked;
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clk_wiz_ctrl_inst clock_wiz_inst
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clk_wiz_ctrl_inst clk_wiz_inst
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(
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// Clock in ports
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.clk_200(clk_in),
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// Clock out ports
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.clk_adc_65(clk_adc),
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.clk_adc_65_180(clk_sampler),
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.clk_dac_125(clk_dac),
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.clk_dac_125_180(clk_generator),
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.clk_adc_65(clk_sampler),
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.clk_adc_65_180(adc_clk_o),
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.clk_dac_125(clk_generator),
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.clk_dac_125_180(dac_clk_o),
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// Status and control signals
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.resetn(rst_n),
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.locked(clk_locked)
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);
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// -------------------------------------------------------------------------
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// axis_mac interface
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// RX stream from Ethernet goes into controller
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// TX stream is unused for now
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// -------------------------------------------------------------------------
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assign locked = clk_locked;
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// -------------------------------------------------------------------------
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// Controller reset
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@ -87,40 +80,36 @@ module reflectometer_top #(
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// -------------------------------------------------------------------------
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wire ctrl_rst_n = rst_n & clk_locked;
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(* MARK_DEBUG="true" *) logic finish;
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// Controller outputs to debug
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(* MARK_DEBUG="true" *) wire [31:0] dac_pulse_width;
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(* MARK_DEBUG="true" *) wire [31:0] dac_pulse_period;
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(* MARK_DEBUG="true" *) wire [DAC_DATA_WIDTH-1:0] dac_pulse_height;
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(* MARK_DEBUG="true" *) wire [15:0] dac_pulse_num;
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(* MARK_DEBUG="true" *) wire [31:0] adc_pulse_period;
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(* MARK_DEBUG="true" *) wire [15:0] adc_pulse_num;
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(* MARK_DEBUG="true" *) wire dac_start;
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(* MARK_DEBUG="true" *) wire adc_start;
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(* MARK_DEBUG="true" *) wire dac_rst;
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(* MARK_DEBUG="true" *) wire adc_rst;
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// -------------------------------------------------------------------------
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// Controller
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// ETH domain = gmii_rx_clk, because RX AXI master comes from axis_mac RX side
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// -------------------------------------------------------------------------
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wire [31:0] dac_pulse_width;
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wire [31:0] dac_pulse_period;
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wire [DAC_DATA_WIDTH-1:0] dac_pulse_height;
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wire [15:0] dac_pulse_num;
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wire [31:0] adc_pulse_period;
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wire [15:0] adc_pulse_num;
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wire dac_start;
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wire adc_start;
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wire dac_rst;
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wire adc_rst;
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wire finish;
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control #(
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.DAC_DATA_WIDTH(DAC_DATA_WIDTH)
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) udp_ctrl_inst (
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.eth_clk_in (gmii_rx_clk),
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.dac_clk_in (dac_clk),
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.adc_clk_in (adc_clk),
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.eth_clk_in (clk_s_axis),
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.dac_clk_in (clk_generator),
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.adc_clk_in (clk_sampler),
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.rst_n (ctrl_rst_n),
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.s_axis_tdata (m_axis_rx_tdata),
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.s_axis_tvalid (m_axis_rx_tvalid),
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.s_axis_tready (m_axis_rx_tready),
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.s_axis_tlast (m_axis_rx_tlast),
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.s_axis_tdata (s_axis__tdata),
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.s_axis_tvalid (s_axis_tvalid),
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.s_axis_tready (s_axis_tready),
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.s_axis_tlast (s_axis_tlast),
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.finish (finish),
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@ -139,124 +128,80 @@ module reflectometer_top #(
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.adc_rst (adc_rst)
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);
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// -------------------------------------------------------------------------
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// DAC
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// -------------------------------------------------------------------------
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(* MARK_DEBUG="true" *) logic sample_req;
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(* MARK_DEBUG="true" *) logic sample_req_sync1;
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(* MARK_DEBUG="true" *) logic sample_req_sync2;
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(* MARK_DEBUG="true" *) logic sample_req_sync3;
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(* MARK_DEBUG="true" *) logic sample_done;
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(* MARK_DEBUG="true" *) logic sample_done_sync1;
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(* MARK_DEBUG="true" *) logic sample_done_sync2;
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(* MARK_DEBUG="true" *) logic sample_done_sync3;
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//------------------------------------------------------------
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//------------------------------------------------------------
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// DAC -> ADC CDC
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//------------------------------------------------------------
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always_ff @(posedge adc_clk or posedge adc_rst) begin
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if (adc_rst) begin
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sample_req <= 1'b0;
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sample_req_sync2 <= 1'b0;
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sample_req_sync3 <= 1'b0;
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end
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logic [2:0] stretch; // 125/65~=2. Чтобы поймать единичный импульс, растянем его во времени
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logic [1:0] sync_DA;
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wire dac_done_stretched;
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wire generator_done, generator_request;
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wire sampler_done, sampler_request;
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always_ff @(posedge clk_generator or posedge dac_rst)
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begin
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if (dac_rst)
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stretch <= 0;
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else begin
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sample_req_sync2 <= sample_req_sync1;
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sample_req_sync3 <= sample_req_sync2;
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sample_req <= sample_req_sync3;
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stretch[0] <= generator_done;
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stretch[1] <= stretch[0];
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stretch[2] <= stretch[1];
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end
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end
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assign dac_done_stretched = |stretch;
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//------------------------------------------------------------
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always_ff @(posedge clk_sampler or posedge adc_rst) begin
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if (adc_rst)
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sync_DA <= 0;
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else begin
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sync_DA[0] <= dac_done_stretched;
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sync_DA[1] <= sync_DA[0];
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end
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end
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assign sampler_request = sync_DA[1];
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//------------------------------------------------------------
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// ADC -> DAC CDC
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//------------------------------------------------------------
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always_ff @(posedge dac_clk or posedge dac_rst) begin
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if (dac_rst) begin
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sample_done <= 1'b0;
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sample_done_sync2 <= 1'b0;
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sample_done_sync3 <= 1'b0;
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end
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logic [1:0] sync_AD;
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always_ff @(posedge clk_generator or posedge dac_rst) begin
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if (dac_rst)
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sync_AD <= 0;
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else begin
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sample_done_sync2 <= sample_done_sync1;
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sample_done_sync3 <= sample_done_sync2;
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sample_done <= sample_done_sync3;
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sync_AD[0] <= sampler_done;
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sync_AD[1] <= sync_AD[0];
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end
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end
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assign generator_request = sync_AD[1];
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//------------------------------------------------------------
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// Generator
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//------------------------------------------------------------
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// Generator (DAC)
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//------------------------------------------------------------
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generator #(
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.DATA_WIDTH(DAC_DATA_WIDTH),
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.ZERO_LEVEL(ZERO_LEVEL)
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) generator_inst (
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.clk_in(dac_clk),
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.clk_dac(clk_generator),
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.rst(dac_rst),
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.start(dac_start),
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.pulse_width(dac_pulse_width),
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.pulse_period(dac_pulse_period),
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.pulse_height(dac_pulse_height),
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.pulse_num(dac_pulse_num),
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.pulse(p2_wrt),
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.pulse_height_out(p2_data),
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.sample_done(sample_done),
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.sample_req(sample_req_sync1)
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.dac_out(dac_data),
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.done(generator_done),
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.request(generator_request)
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);
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assign dac_wrt = dac_clk_o;
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wire ch2_clk_oddr;
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ODDR #(
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.DDR_CLK_EDGE("SAME_EDGE"),
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.INIT(1'b0),
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.SRTYPE("SYNC")
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) ODDR_ch2_clk (
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.Q (ch2_clk_oddr),
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.C (adc_clk),
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.CE(1'b1),
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.D1(1'b1),
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.D2(1'b0),
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.R (1'b0),
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.S (1'b0)
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);
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OBUF OBUF_ch2_clk (
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.I(ch2_clk_oddr),
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.O(ch2_clk)
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);
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wire p2_clk_oddr;
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ODDR #(
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.DDR_CLK_EDGE("SAME_EDGE"),
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.INIT(1'b0),
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.SRTYPE("SYNC")
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) ODDR_p2_clk (
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.Q (p2_clk_oddr),
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.C (dac_clk),
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.CE(1'b1),
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.D1(1'b1),
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.D2(1'b0),
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.R (1'b0),
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.S (1'b0)
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);
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OBUF OBUF_p2_clk (
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.I(p2_clk_oddr),
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.O(p2_clk)
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);
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// -------------------------------------------------------------------------
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// ADC
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// -------------------------------------------------------------------------
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// Sampler (ADC)
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// -------------------------------------------------------------------------
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wire [ADC_DATA_WIDTH*PACK_FACTOR-1:0] sampler_m_axis_tdata;
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wire sampler_m_axis_tvalid;
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(* MARK_DEBUG="true" *) logic [ADC_DATA_WIDTH*PACK_FACTOR-1:0] accum_m_axis_tdata;
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(* MARK_DEBUG="true" *) logic acum_m_axis_tvalid;
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sampler
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#(
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sampler #(
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.DATA_WIDTH(ADC_DATA_WIDTH),
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.PACK_FACTOR(PACK_FACTOR),
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.PROCESS_MODE(PROCESS_MODE)
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@ -268,50 +213,37 @@ module reflectometer_top #(
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.m_axis_tdata(sampler_m_axis_tdata),
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.m_axis_tvalid(sampler_m_axis_tvalid),
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.smp_num(adc_pulse_period),
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.sample_req(sample_req),
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.sample_done(sample_done_sync1)
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.done(sampler_done),
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.request(sampler_request)
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);
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// -------------------------------------------------------------------------
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// Accumulator
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// -------------------------------------------------------------------------
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accumulator_top
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#(
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accumulator_top #(
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.DATA_WIDTH(ADC_DATA_WIDTH),
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.ACCUM_WIDTH(ACCUM_WIDTH),
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.N_MAX(N_MAX),
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.WINDOW_SIZE(WINDOW_SIZE),
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.PACKET_SIZE(PACKET_SIZE)
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)
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accumulator_top_dut
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(
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.clk_in(adc_clk),
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) accumulator_top_dut (
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.clk_in(clk_sampler),
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.rst(adc_rst),
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.s_axis_tdata(accum_m_axis_tdata),
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.s_axis_tvalid(acum_m_axis_tvalid),
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.s_axis_tdata(sampler_m_axis_tdata),
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.s_axis_tvalid(sampler_m_axis_tvalid),
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.start(adc_start),
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.smp_num(adc_pulse_period),
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.seq_num(adc_pulse_num),
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.eth_clk_in(gmii_tx_clk),
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.req_ready(req_ready),
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.send_req(send_req),
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.m_axis_tdata(s_axis_tx_tdata),
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.m_axis_tvalid(s_axis_tx_tvalid),
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.m_axis_tready(s_axis_tx_tready),
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.m_axis_tlast(s_axis_tx_tlast),
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.req_ready(request_ready),
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.send_req(send_request),
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.eth_clk_in(clk_m_axis),
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.m_axis_tdata(m_axis_tdata),
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.m_axis_tvalid(m_axis_tvalid),
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.m_axis_tready(m_axis_tready),
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.m_axis_tlast(m_axis_tlast),
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.finish(finish)
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);
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// -------------------------------------------------------------------------
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// Simple LED status
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// -------------------------------------------------------------------------
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assign status_led[0] = rst_n;
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assign status_led[1] = clk_locked;
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// assign status_led[2] = ;
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// assign status_led[3] = ;
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endmodule
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@ -1,75 +1,91 @@
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`timescale 1ns / 1ps
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module tb_reflectometer;
|
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|
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// parameters
|
||||
//------------------------------------------------------------
|
||||
// Параметры
|
||||
//------------------------------------------------------------
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localparam int unsigned DAC_DATA_WIDTH = 14;
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localparam int unsigned ADC_DATA_WIDTH = 12;
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localparam LOGIC_ZERO_LEVEL = 0; // DAC -5V for logic zero
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localparam VOLTAGE_ZERO_LEVEL = 2**(DAC_DATA_WIDTH-1); // DAC 0V for logic zero
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localparam PACK_FACTOR = 1; // not used in TB
|
||||
localparam PROCESS_MODE = 0; // 0 - uint, 1 - int
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localparam ZERO_LEVEL = 8192; // DAC zero voltage representation (2^14 / 2)
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localparam ACCUM_WIDTH = 32; // accumulator number bit witdth
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||||
localparam N_MAX = 4096; // max value of windows to average by experiments
|
||||
localparam WINDOW_SIZE = 65; // fixed subwindow size to average by time
|
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localparam PACKET_SIZE = 1024; // bytes per UDP packet
|
||||
|
||||
localparam int unsigned ADC_CLK_MHZ = 65;
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localparam int unsigned DAC_CLK_MHZ = 125;
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localparam ZERO_LEVEL = LOGIC_ZERO_LEVEL; // "logic" VS "true"
|
||||
|
||||
// may be changed for test purposes
|
||||
localparam int unsigned PULSE_WIDTH = 2**6;
|
||||
localparam int unsigned PULSE_PERIOD = 2**8;
|
||||
localparam int unsigned PULSE_NUM = 10;
|
||||
localparam int unsigned PULSE_HEIGHT = 2**12;
|
||||
localparam int unsigned PULSE_PERIOD_ADC = (int'(real'(ADC_CLK_MHZ) / real'(DAC_CLK_MHZ) * real'(PULSE_PERIOD)) / int'(WINDOW_SIZE)) * int'(WINDOW_SIZE);
|
||||
localparam CLK_ETH_PHY_PERIOD = 8.000; // 125 MHz
|
||||
localparam CLK_REF_PERIOD = 5.000; // 200 MHz
|
||||
|
||||
//------------------------------------------------------------
|
||||
// Тактовые сигналы и сброс
|
||||
//------------------------------------------------------------
|
||||
logic clk_ref = 1'b0; // 200 MHz
|
||||
logic clk_eth_phy = 1'b0; // common for RX & TX
|
||||
logic rst_n = 1'b0;
|
||||
//------------------------------------------------------------
|
||||
// Управление и конфиг
|
||||
//------------------------------------------------------------
|
||||
|
||||
initial begin
|
||||
if (PULSE_WIDTH <= 0)
|
||||
$fatal(1, "PULSE_WIDTH should be positive");
|
||||
if (PULSE_PERIOD <= 0)
|
||||
$fatal(1, "PULSE_PERIOD should be positive");
|
||||
if (PULSE_NUM <= 0)
|
||||
$fatal(1, "PULSE_NUM should be positive");
|
||||
if (PULSE_HEIGHT <= 0)
|
||||
$fatal(1, "PULSE_HEIGHT should be positive");
|
||||
if (PULSE_WIDTH >= 2**32-1)
|
||||
$fatal(1, "PULSE_WIDTH too high");
|
||||
if (PULSE_PERIOD >= 2**32-1)
|
||||
$fatal(1, "PULSE_PERIOD too high");
|
||||
if (PULSE_NUM >= 2**16-1)
|
||||
$fatal(1, "PULSE_NUM too high");
|
||||
if (PULSE_HEIGHT >= 2**DAC_DATA_WIDTH-1)
|
||||
$fatal(1, "PULSE_HEIGHT too high");
|
||||
if (PULSE_PERIOD_ADC % WINDOW_SIZE == 0)
|
||||
$fatal(1, "PULSE_PERIOD_ADC isn't multiple of WINDOW_SIZE");
|
||||
end
|
||||
//------------------------------------------------------------
|
||||
// Входы
|
||||
//------------------------------------------------------------
|
||||
|
||||
// DUT signals
|
||||
logic clk200, clk_eth_phy_tx, clk_eth_phy_rx; // GMII clocks
|
||||
logic rst_n;
|
||||
wire [3:0] status_leds; // [ None, dac_start, m_axis_valid, clk_wiz_locked ]
|
||||
|
||||
wire dac_clk, dac_en;
|
||||
wire [DAC_DATA_WIDTH-1:0] dac_data;
|
||||
wire adc_clk;
|
||||
logic adc_otr;
|
||||
logic [ADC_DATA_WIDTH-1:0] adc_data;
|
||||
|
||||
wire [7:0] s_axis_tx_tdata;
|
||||
wire s_axis_tx_tvalid;
|
||||
logic s_axis_tx_tready;
|
||||
wire s_axis_tx_tlast;
|
||||
//------------------------------------------------------------
|
||||
// Выходы
|
||||
//------------------------------------------------------------
|
||||
wire mmcm_locked;
|
||||
//------------------------------------------------------------
|
||||
// Внутренние сигналы тестбенча
|
||||
//------------------------------------------------------------
|
||||
// AXI-S интерфейс для управления
|
||||
logic [7:0] m_axis_control_tdata = 8'b0;
|
||||
logic m_axis_control_tvalid = 1'b0;
|
||||
wire m_axis_control_tready;
|
||||
logic m_axis_control_tlast = 1'b0;
|
||||
// AXI-S интерфейс для данных
|
||||
wire [7:0] s_axis_accumulator_tdata;
|
||||
wire s_axis_accumulator_tvalid;
|
||||
logic s_axis_accumulator_tready = 1'b0;
|
||||
wire s_axis_accumulator_tlast;
|
||||
// DAC интерфейс
|
||||
wire clk_dac;
|
||||
wire dac_wrt;
|
||||
wire [DAC_DATA_WIDTH-1:0] dac_data;
|
||||
// ADC интерфейс
|
||||
wire clk_adc;
|
||||
logic adc_otr = 1'b0;
|
||||
logic [ADC_DATA_WIDTH-1:0] adc_data = '0;
|
||||
// Интерфейс хендшейка с MAC-PHY
|
||||
wire send_request;
|
||||
logic request_ready = 1'b0;
|
||||
|
||||
logic phy_ready;
|
||||
wire accum_tx_start;
|
||||
logic [7:0] m_axis_rx_tdata;
|
||||
logic m_axis_rx_tvalid;
|
||||
logic m_axis_rx_tlast;
|
||||
logic m_axis_rx_tready;
|
||||
//------------------------------------------------------------
|
||||
// Virtual DAC
|
||||
//------------------------------------------------------------
|
||||
|
||||
logic [127:0] dut_config = 0;
|
||||
//------------------------------------------------------------
|
||||
// Virtual ADC
|
||||
//------------------------------------------------------------
|
||||
|
||||
//------------------------------------------------------------
|
||||
// Virtual conductor
|
||||
//------------------------------------------------------------
|
||||
|
||||
//------------------------------------------------------------
|
||||
// Statistics monitor
|
||||
//------------------------------------------------------------
|
||||
|
||||
//------------------------------------------------------------
|
||||
// Config handler
|
||||
//------------------------------------------------------------
|
||||
|
||||
//------------------------------------------------------------
|
||||
// DUT
|
||||
//------------------------------------------------------------
|
||||
reflectometer_top #(
|
||||
.DAC_DATA_WIDTH(DAC_DATA_WIDTH),
|
||||
.ADC_DATA_WIDTH(ADC_DATA_WIDTH),
|
||||
@ -81,105 +97,96 @@ module tb_reflectometer;
|
||||
.WINDOW_SIZE(WINDOW_SIZE),
|
||||
.PACKET_SIZE(PACKET_SIZE)
|
||||
) DUT (
|
||||
.sys_clk(clk200), // main clk 200 mhz
|
||||
.rst_n(rst_n), // rst_n
|
||||
.led(status_leds), // indication [3:0]
|
||||
.gmii_rx_clk(clk_eth_phy_rx), // ext. clk from PHY
|
||||
.gmii_tx_clk(clk_eth_phy_tx), // ext. clk from PHY
|
||||
// accumulated data stream
|
||||
.s_axis_tx_tdata(s_axis_tx_tdata),
|
||||
.s_axis_tx_tvalid(s_axis_tx_tvalid),
|
||||
.s_axis_tx_tready(s_axis_tx_tready),
|
||||
.s_axis_tx_tlast(s_axis_tx_tlast),
|
||||
// controller data stream
|
||||
.m_axis_rx_tdata(m_axis_rx_tdata),
|
||||
.m_axis_rx_tvalid(m_axis_rx_tvalid),
|
||||
.m_axis_rx_tlast(m_axis_rx_tlast),
|
||||
.m_axis_rx_tready(m_axis_rx_tready),
|
||||
|
||||
.req_ready(phy_ready), // AXI-stream requester ready
|
||||
.send_req(accum_tx_start), // AXI-stream start transmit
|
||||
.p2_clk(dac_clk), // DAC clk
|
||||
.p2_data(dac_data), // DAC [DAC_DATA_WIDTH-1:0] data
|
||||
.p2_wrt(dac_en), // DAC write enable
|
||||
.ch2_clk(adc_clk), // ADC clk
|
||||
.ch2_data(adc_data), // ADC [ADC_DATA_WIDTH-1:0] data
|
||||
.ch2_otr(adc_otr) // ADC signal out-of-range
|
||||
.clk_in(clk_ref),
|
||||
.rst_n(rst_n),
|
||||
.locked(mmcm_locked),
|
||||
|
||||
// Accumulator AXI-S bus
|
||||
.clk_m_axis(clk_eth_phy), // GMII PHY RX clock
|
||||
.m_axis_tdata(s_axis_accumulator_tdata),
|
||||
.m_axis_tvalid(s_axis_accumulator_tvalid),
|
||||
.m_axis_tready(s_axis_accumulator_tready),
|
||||
.m_axis_tlast(s_axis_accumulator_tlast),
|
||||
|
||||
// Control AXI-S bus
|
||||
.clk_s_axis(clk_eth_phy), // GMII PHY TX clock
|
||||
.s_axis__tdata(maxis_control_tdata),
|
||||
.s_axis_tvalid(maxis_control_tvalid),
|
||||
.s_axis_tlast(maxis_control_tlast),
|
||||
.s_axis_tready(maxis_control_tready),
|
||||
|
||||
// RTL-MAC handshake
|
||||
.request_ready(request_ready),
|
||||
.send_request(send_request),
|
||||
|
||||
// DAC
|
||||
.dac_clk_o(clk_dac),
|
||||
.dac_data(dac_data),
|
||||
.dac_wrt(dac_wrt),
|
||||
|
||||
// ADC
|
||||
.adc_clk_o(clk_adc),
|
||||
.adc_data(adc_data),
|
||||
.adc_otr(adc_otr)
|
||||
);
|
||||
|
||||
// clocks
|
||||
//------------------------------------------------------------
|
||||
// Тактовые сигналы
|
||||
//------------------------------------------------------------
|
||||
initial begin
|
||||
// 200 MHz
|
||||
clk200 = 1'b0;
|
||||
forever #2.5 clk200 = ~clk200;
|
||||
forever #(CLK_REF_PERIOD/2) clk_ref = ~clk_ref;
|
||||
end
|
||||
initial begin
|
||||
// 125 MHz
|
||||
clk_eth_phy_tx = 1'b0;
|
||||
forever #4 clk_eth_phy_tx = ~clk_eth_phy_tx;
|
||||
end
|
||||
initial begin
|
||||
// 125 MHz
|
||||
clk_eth_phy_rx = 1'b0;
|
||||
forever #4 clk_eth_phy_rx = ~clk_eth_phy_rx;
|
||||
forever #(CLK_ETH_PHY_PERIOD/2) clk_eth_phy = ~clk_eth_phy;
|
||||
end
|
||||
//------------------------------------------------------------
|
||||
// Таски для тестирования
|
||||
//------------------------------------------------------------
|
||||
|
||||
// task automatic axis_send_byte(
|
||||
// ref logic clk,
|
||||
// input logic [7:0] data,
|
||||
// input logic last,
|
||||
// ref logic tvalid,
|
||||
// ref logic [7:0] tdata,
|
||||
// ref logic tlast,
|
||||
// input logic tready
|
||||
// );
|
||||
// @(posedge clk);
|
||||
// tdata <= data;
|
||||
// tlast <= last;
|
||||
// tvalid <= 1'b1;
|
||||
|
||||
// ADC input noise simulation
|
||||
always @(posedge adc_clk or negedge rst_n) begin
|
||||
if (!rst_n) begin
|
||||
adc_data <= '0;
|
||||
end else begin
|
||||
adc_data <= $urandom() & ((1 << ADC_DATA_WIDTH) - 1);
|
||||
end
|
||||
end
|
||||
assign adc_otr = 1'b0;
|
||||
// // Ждем готовности приемника
|
||||
// wait(tready === 1'b1);
|
||||
|
||||
// AXIS tasks
|
||||
task automatic axis_send_byte(
|
||||
ref logic clk,
|
||||
input logic [7:0] data,
|
||||
input logic last,
|
||||
ref logic tvalid,
|
||||
ref logic [7:0] tdata,
|
||||
ref logic tlast,
|
||||
input logic tready
|
||||
);
|
||||
@(posedge clk);
|
||||
tdata <= data;
|
||||
tlast <= last;
|
||||
tvalid <= 1'b1;
|
||||
// @(posedge clk);
|
||||
// tvalid <= 1'b0;
|
||||
// tlast <= 1'b0;
|
||||
// endtask
|
||||
|
||||
// Ждем готовности приемника
|
||||
wait(tready === 1'b1);
|
||||
// task automatic dut_soft_reset();
|
||||
// axis_send_byte(
|
||||
// .clk(clk_eth_phy_rx),
|
||||
// .data(8'b00001111),
|
||||
// .last(1'b1),
|
||||
// .tvalid(m_axis_rx_tvalid),
|
||||
// .tdata(m_axis_rx_tdata),
|
||||
// .tlast(m_axis_rx_tlast),
|
||||
// .tready(m_axis_rx_tready)
|
||||
// );
|
||||
// endtask
|
||||
|
||||
@(posedge clk);
|
||||
tvalid <= 1'b0;
|
||||
tlast <= 1'b0;
|
||||
endtask
|
||||
|
||||
task automatic dut_soft_reset();
|
||||
axis_send_byte(
|
||||
.clk(clk_eth_phy_rx),
|
||||
.data(8'b00001111),
|
||||
.last(1'b1),
|
||||
.tvalid(m_axis_rx_tvalid),
|
||||
.tdata(m_axis_rx_tdata),
|
||||
.tlast(m_axis_rx_tlast),
|
||||
.tready(m_axis_rx_tready)
|
||||
);
|
||||
endtask
|
||||
|
||||
task automatic dut_start();
|
||||
axis_send_byte(
|
||||
.clk(clk_eth_phy_rx),
|
||||
.data(8'b11110000),
|
||||
.last(1'b1),
|
||||
.tvalid(m_axis_rx_tvalid),
|
||||
.tdata(m_axis_rx_tdata),
|
||||
.tlast(m_axis_rx_tlast),
|
||||
.tready(m_axis_rx_tready)
|
||||
);
|
||||
endtask
|
||||
// task automatic dut_start();
|
||||
// axis_send_byte(
|
||||
// .clk(clk_eth_phy_rx),
|
||||
// .data(8'b11110000),
|
||||
// .last(1'b1),
|
||||
// .tvalid(m_axis_rx_tvalid),
|
||||
// .tdata(m_axis_rx_tdata),
|
||||
// .tlast(m_axis_rx_tlast),
|
||||
// .tready(m_axis_rx_tready)
|
||||
// );
|
||||
// endtask
|
||||
|
||||
// task automatic dut_send_config(
|
||||
// input logic [127:0] ctrl_config
|
||||
@ -217,51 +224,16 @@ module tb_reflectometer;
|
||||
// endtask
|
||||
|
||||
|
||||
|
||||
// some helpers for controller axis
|
||||
|
||||
// GAME PLAN
|
||||
// 1. setup reflectometer
|
||||
// 2. create some reference signal with noise + virtual ADC
|
||||
// 3. setup m_axis endpoint for controller to start reflectometer (create multiple tasks)
|
||||
// 4. setup s_axis endpoint for data gathering and plotting
|
||||
// 5. check standalone reflectometer
|
||||
// 6. add reference signal averaging loop throw generator pulse posedge detection
|
||||
// 7. visual comparision of reference VS reflectometer
|
||||
// 8. add statistics for signal comparision (MSE/RMSE)
|
||||
|
||||
// main TB
|
||||
//------------------------------------------------------------
|
||||
// ОСНОВНОЙ ПРОЦЕСС ТЕСТИРОВАНИЯ
|
||||
//------------------------------------------------------------
|
||||
initial begin
|
||||
// setup
|
||||
rst_n = 1'b0;
|
||||
s_axis_tx_tready = 1'b0;
|
||||
m_axis_rx_tdata = 1'b0;
|
||||
m_axis_rx_tvalid = 1'b0;
|
||||
m_axis_rx_tlast = 1'b0;
|
||||
phy_ready = 1'b0;
|
||||
|
||||
// startup
|
||||
#100;
|
||||
rst_n = 1'b1;
|
||||
wait(DUT.clk_wiz_ctrl_inst.locked == 1'b1);
|
||||
#20;
|
||||
$display("=== clocks ready / wiz. locked ===");
|
||||
#40;
|
||||
// ready to work
|
||||
|
||||
dut_config[31:0] = PULSE_WIDTH;
|
||||
dut_config[63:32] = PULSE_PERIOD;
|
||||
dut_config[79:64] = PULSE_NUM;
|
||||
dut_config[79+DAC_DATA_WIDTH:80] = PULSE_HEIGHT;
|
||||
dut_config[127:96] = PULSE_PERIOD_ADC;
|
||||
|
||||
// dut_send_config(dut_config);
|
||||
dut_start();
|
||||
// dut_start();
|
||||
#1000;
|
||||
// dut_soft_reset();
|
||||
$display("[TB] Tests start");
|
||||
|
||||
$display("=== ALL BASIC TESTS PASSED ===");
|
||||
wait(mmcm_locked === 1'b1);
|
||||
#10000;
|
||||
|
||||
$display("[TB] ALL PASSED");
|
||||
$finish;
|
||||
end
|
||||
endmodule
|
||||
endmodule
|
||||
|
||||
Reference in New Issue
Block a user