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/****************************************************************************** | ||
* Copyright (C) 2024, Advanced Micro Devices, Inc. | ||
* All rights reserved. | ||
* | ||
* Redistribution and use in source and binary forms, with or without | ||
* modification, are permitted provided that the following conditions are met: | ||
* | ||
* 1. Redistributions of source code must retain the above copyright notice, | ||
* this list of conditions and the following disclaimer. | ||
* | ||
* 2. Redistributions in binary form must reproduce the above copyright | ||
* notice, this list of conditions and the following disclaimer in the | ||
* documentation and/or other materials provided with the distribution. | ||
* | ||
* 3. Neither the name of the copyright holder nor the names of its | ||
* contributors may be used to endorse or promote products derived from | ||
* this software without specific prior written permission. | ||
* | ||
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" | ||
* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, | ||
* THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR | ||
* PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR | ||
* CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, | ||
* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, | ||
* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; | ||
* OR BUSINESS INTERRUPTION). HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, | ||
* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR | ||
* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF | ||
* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. | ||
* | ||
* @brief Testbench for MVU core compute kernel. | ||
*****************************************************************************/ | ||
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module mvu_accu_tb; | ||
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localparam IS_MVU = 1; | ||
localparam COMPUTE_CORE = "mvu_8sx8u_dsp48"; | ||
localparam PUMPED_COMPUTE = 0; | ||
localparam MW = 6; | ||
localparam MH = 32; | ||
localparam PE = 1; | ||
localparam SIMD = 1; | ||
localparam ACTIVATION_WIDTH = 8; | ||
localparam WEIGHT_WIDTH = 4; | ||
localparam NARROW_WEIGHTS = 1; | ||
localparam SIGNED_ACTIVATIONS = 1; | ||
localparam SEGMENTLEN = 1; | ||
localparam FORCE_BEHAVIORAL = 0; | ||
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// Safely deducible parameters | ||
localparam WEIGHT_STREAM_WIDTH_BA = (PE*SIMD*WEIGHT_WIDTH+7)/8 * 8; | ||
localparam INPUT_STREAM_WIDTH_BA = ((IS_MVU == 1 ? 1 : PE) * SIMD * ACTIVATION_WIDTH + 7) / 8 * 8; | ||
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// Global Control | ||
logic clk = 0; | ||
always #5ns clk = !clk; | ||
logic rst = 1; | ||
initial begin | ||
repeat(16) @(posedge clk); | ||
rst <= 0; | ||
end | ||
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logic [WEIGHT_WIDTH-1:0] WeightMem[MH*MW]; | ||
initial $readmemh("mvu_accu_tb.dat", WeightMem); | ||
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// Shared Input Feed | ||
logic [INPUT_STREAM_WIDTH_BA-1:0] in_TDATA; | ||
logic in_TVALID[2]; | ||
uwire in_TREADY[2]; | ||
initial begin | ||
in_TDATA = 'x; | ||
in_TVALID = '{ default: 0 }; | ||
@(posedge clk iff !rst); | ||
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repeat(2161*MW) begin | ||
automatic logic [ACTIVATION_WIDTH-1:0] a = $urandom(); | ||
in_TDATA <= a; | ||
in_TVALID <= '{ default: 1 }; | ||
fork | ||
begin | ||
@(posedge clk iff in_TREADY[0]); | ||
in_TVALID[0] <= 0; | ||
end | ||
begin | ||
@(posedge clk iff in_TREADY[1]); | ||
in_TVALID[1] <= 0; | ||
end | ||
join | ||
end | ||
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repeat(MH*MW) @(posedge clk); | ||
$display("Test completed."); | ||
$finish; | ||
end | ||
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// DUTs | ||
localparam int unsigned ACCU_WIDTHS[2] = '{ 16, 32 }; | ||
int OutQ[2][$]; | ||
for(genvar i = 0; i < $size(ACCU_WIDTHS); i++) begin : genDUTs | ||
localparam int unsigned ACCU_WIDTH = ACCU_WIDTHS[i]; | ||
localparam int unsigned OUTPUT_STREAM_WIDTH_BA = (PE*ACCU_WIDTH + 7)/8 * 8; | ||
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// Private Weight Feed | ||
logic [WEIGHT_STREAM_WIDTH_BA-1:0] weights_TDATA; | ||
logic weights_TVALID; | ||
uwire weights_TREADY; | ||
initial begin | ||
weights_TDATA = 'x; | ||
weights_TVALID = 0; | ||
@(posedge clk iff !rst); | ||
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weights_TVALID <= 1; | ||
forever begin | ||
for(int unsigned i = 0; i < MH*MW; i++) begin | ||
weights_TDATA <= WeightMem[i]; | ||
@(posedge clk iff weights_TREADY); | ||
end | ||
end | ||
end | ||
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// Private Output Capture into Queue | ||
uwire signed [OUTPUT_STREAM_WIDTH_BA-1:0] out_TDATA; | ||
uwire out_TVALID; | ||
uwire out_TREADY = !rst; | ||
always_ff @(posedge clk iff !rst) begin | ||
if(out_TVALID) OutQ[i].push_back(out_TDATA); | ||
end | ||
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// Actual DUT Instance | ||
mvu_vvu_axi #( | ||
.IS_MVU(IS_MVU), .COMPUTE_CORE(COMPUTE_CORE), .PUMPED_COMPUTE(PUMPED_COMPUTE), .MW(MW), .MH(MH), .PE(PE), .SIMD(SIMD), | ||
.ACTIVATION_WIDTH(ACTIVATION_WIDTH), .WEIGHT_WIDTH(WEIGHT_WIDTH), .ACCU_WIDTH(ACCU_WIDTH), .NARROW_WEIGHTS(NARROW_WEIGHTS), | ||
.SIGNED_ACTIVATIONS(SIGNED_ACTIVATIONS), .SEGMENTLEN(SEGMENTLEN), .FORCE_BEHAVIORAL(FORCE_BEHAVIORAL) | ||
) dut ( | ||
.ap_clk(clk), | ||
.ap_clk2x(1'b0), | ||
.ap_rst_n(!rst), | ||
.s_axis_weights_tdata(weights_TDATA), | ||
.s_axis_weights_tvalid(weights_TVALID), | ||
.s_axis_weights_tready(weights_TREADY), | ||
.s_axis_input_tdata(in_TDATA), | ||
.s_axis_input_tvalid(in_TVALID[i]), | ||
.s_axis_input_tready(in_TREADY[i]), | ||
.m_axis_output_tdata(out_TDATA), | ||
.m_axis_output_tvalid(out_TVALID), | ||
.m_axis_output_tready(out_TREADY) | ||
); | ||
end : genDUTs | ||
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// Output Equivalence Checker | ||
always_ff @(posedge clk) begin | ||
if(OutQ[0].size && OutQ[1].size) begin | ||
automatic int unsigned y0 = OutQ[0].pop_front(); | ||
automatic int unsigned y1 = OutQ[1].pop_front(); | ||
assert(y0 == y1) else begin | ||
$error("Output Mismatch: %0d vs. %0d", y0, y1); | ||
$stop; | ||
end | ||
end | ||
end | ||
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endmodule : mvu_accu_tb |
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