Co-authored-by: Andrew Moch <Andrew.Moch@ni.com> Co-authored-by: Daniel Jepson <daniel.jepson@ni.com> Co-authored-by: Javier Valenzuela <javier.valenzuela@ni.com> Co-authored-by: Joerg Hofrichter <joerg.hofrichter@ni.com> Co-authored-by: Kumaran Subramoniam <kumaran.subramoniam@ni.com> Co-authored-by: Max Köhler <max.koehler@ni.com> Co-authored-by: Michael Auchter <michael.auchter@ni.com> Co-authored-by: Paul Butler <paul.butler@ni.com> Co-authored-by: Wade Fife <wade.fife@ettus.com> Co-authored-by: Hector Rubio <hrubio@ni.com> Original-commit: 6d3765605262016a80f71e36357f749ea35cbe5a
150 lines
4.2 KiB
Verilog
150 lines
4.2 KiB
Verilog
//
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// Copyright 2021 Ettus Research, a National Instruments Brand
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//
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// SPDX-License-Identifier: LGPL-3.0-or-later
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//
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// Module: rf_up_2to4
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//
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// Description:
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//
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// Implements an up-sampling filter that accepts 2 samples per cycle on the
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// input and outputs 4 samples per cycle. A 2x speed clock is used to perform
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// the DSP computation, so that less logic can be used to implement the
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// half-band filter.
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//
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// Data Path : In --> Gearbox --> Filter --> Gearbox --> Out
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// SPC : 2 1 2 4
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// Clock Rate : 1x 2x 2x 1x
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//
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`default_nettype none
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module rf_up_2to4 #(
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parameter NUM_CHANNELS = 1
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) (
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input wire clk,
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input wire clk_2x,
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// Synchronous resets
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input wire rst,
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input wire rst_2x,
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// Input - 2 SPC, synchronous to "clk"
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input wire [NUM_CHANNELS*64-1:0] i_tdata,
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input wire [NUM_CHANNELS* 1-1:0] i_tvalid,
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// Output - 4 SPC, synchronous to "clk"
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output wire [NUM_CHANNELS*128-1:0] o_tdata,
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output wire [NUM_CHANNELS* 1-1:0] o_tvalid
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);
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generate
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genvar ch;
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for (ch = 0; ch < NUM_CHANNELS; ch = ch + 1) begin : gen_channel
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//-----------------------------------------------------------------------
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// Input Gearbox
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//-----------------------------------------------------------------------
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//
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// Convert from 2 SPC on clk to 1 SPC on clk_2x.
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//
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//-----------------------------------------------------------------------
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wire [31:0] gear_to_filt_tdata;
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wire gear_to_filt_tvalid;
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gearbox_2x1 #(
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.WORD_W (32),
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.IN_WORDS (2),
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.OUT_WORDS (1),
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.BIG_ENDIAN (0)
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) gearbox_2x1_in (
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.i_clk (clk),
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.i_rst (rst),
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.i_tdata (i_tdata[ch*64 +: 64]),
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.i_tvalid (i_tvalid[ch]),
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.o_clk (clk_2x),
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.o_rst (rst_2x),
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.o_tdata (gear_to_filt_tdata),
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.o_tvalid (gear_to_filt_tvalid)
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);
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//-----------------------------------------------------------------------
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// Interpolating Filter
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//-----------------------------------------------------------------------
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wire [95:0] filt_to_clip_tdata;
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wire filt_to_clip_tvalid;
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hb47_1to2 hb47_1to2_i (
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.aresetn (~rst_2x),
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.aclk (clk_2x),
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.s_axis_data_tvalid (gear_to_filt_tvalid),
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.s_axis_data_tready (),
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.s_axis_data_tdata (gear_to_filt_tdata),
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.m_axis_data_tvalid (filt_to_clip_tvalid),
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.m_axis_data_tuser (),
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.m_axis_data_tdata (filt_to_clip_tdata)
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);
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//-----------------------------------------------------------------------
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// Saturation
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//-----------------------------------------------------------------------
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wire [63:0] clip_to_gear_tdata;
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wire clip_to_gear_tvalid;
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genvar word;
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for (word = 0; word < 4; word = word+1) begin : gen_sat
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axi_clip #(
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.WIDTH_IN (24),
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.WIDTH_OUT (16),
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.FIFOSIZE (0)
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) axi_clip_i (
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.clk (clk_2x),
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.reset (rst_2x),
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.i_tdata (filt_to_clip_tdata[word*24 +: 24]),
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.i_tlast (1'b0),
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.i_tvalid (filt_to_clip_tvalid),
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.i_tready (),
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.o_tdata (clip_to_gear_tdata[word*16 +: 16]),
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.o_tlast (),
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.o_tvalid (clip_to_gear_tvalid),
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.o_tready (1'b1)
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);
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end
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//-----------------------------------------------------------------------
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// Output Gearbox
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//-----------------------------------------------------------------------
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//
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// Convert from 2 SPC on clk_2x to 4 SPC on clk.
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//
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//-----------------------------------------------------------------------
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gearbox_2x1 #(
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.WORD_W (32),
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.IN_WORDS (2),
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.OUT_WORDS (4),
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.BIG_ENDIAN (0)
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) gearbox_2x1_out (
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.i_clk (clk_2x),
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.i_rst (rst_2x),
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.i_tdata (clip_to_gear_tdata),
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.i_tvalid (clip_to_gear_tvalid),
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.o_clk (clk),
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.o_rst (rst),
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.o_tdata (o_tdata[ch*128 +: 128]),
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.o_tvalid (o_tvalid[ch])
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);
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end // for
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endgenerate
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endmodule
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`default_nettype wire
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