189 lines
5.3 KiB
Verilog
189 lines
5.3 KiB
Verilog
//
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// Copyright 2013 Ettus Research LLC
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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//
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module chdr_12sc_to_16sc
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#(parameter BASE = 0)
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( input set_stb, input [7:0] set_addr, input [31:0] set_data,
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//input side of device
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input clk, input reset,
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input [63:0] i_tdata,
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input i_tlast,
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input i_tvalid,
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output i_tready,
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//output side of device
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output reg [63:0] o_tdata,
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output o_tlast,
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output o_tvalid,
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input o_tready,
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output [31:0] debug
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);
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wire chdr_has_hdr = 1'b1;
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wire chdr_has_time = i_tdata[61];
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wire chdr_has_tlr = 1'b0;
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wire [15:0] chdr_header_lines = chdr_has_time? 16 : 8;
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wire [15:0] just_samples_in = i_tdata[47:32] - chdr_header_lines;
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//calculating output length based on input ( 4/3*input = output)
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wire [30:0] calc_output_len = ({just_samples_in,14'h0} + {just_samples_in,12'h0} + {just_samples_in,10'h0} + {just_samples_in,8'h0} + {just_samples_in,6'h0} + {just_samples_in,4'h0} + {just_samples_in,2'h0}+{just_samples_in} +'b0001000000000000)<<2;
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wire [15:0] samples = calc_output_len[30:16];
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wire [15:0] chdr_payload_lines = samples + chdr_header_lines;
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reg has_exline;
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reg in_exline;
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wire set_sid;
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wire [15:0] my_newhome;
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setting_reg #(.my_addr(BASE), .width(17)) new_destination
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(.clk(clk), .rst(reset), .strobe(set_stb), .addr(set_addr), .in(set_data),
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.out({set_sid, my_newhome[15:0]}));
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localparam HEADER = 3'd0; // IDLE
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localparam TIME = 3'd1;
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localparam ODD_LINE_ZERO = 3'd2;
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localparam EVEN_LINE_ONE = 3'd3;
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localparam ODD_LINE_TWO = 3'd4;
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localparam EVEN_LINE_THREE = 3'd5;
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reg [2:0] state;
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always @(posedge clk) begin
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if (reset) begin
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state <= HEADER;
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end
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else if (o_tvalid && o_tready) case(state)
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HEADER: begin
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has_exline <= ( (samples[4:2] == 5) || (samples[4:2] == 7) || (samples[4:2] == 0));
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state <= (chdr_has_time)? TIME : ODD_LINE_ZERO;
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end
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TIME: begin
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state <= (i_tlast)? HEADER: ODD_LINE_ZERO;
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end
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ODD_LINE_ZERO: begin
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if ((i_tlast & !has_exline) || in_exline) begin
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state <= HEADER;
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in_exline <= 0;
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end
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else if (i_tlast & has_exline) begin
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in_exline <= 1;
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state <= EVEN_LINE_ONE;
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end
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else
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state <= EVEN_LINE_ONE;
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end
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EVEN_LINE_ONE: begin
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if ((i_tlast & !has_exline) || in_exline) begin
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state <= HEADER;
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in_exline <= 0;
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end
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else if (i_tlast & has_exline) begin
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in_exline <= 1;
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state <= ODD_LINE_TWO;
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end
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else
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state <= ODD_LINE_TWO;
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end
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ODD_LINE_TWO: begin
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if ((i_tlast & !has_exline) || in_exline) begin
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state <= HEADER;
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in_exline <= 0;
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end
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else if (i_tlast & has_exline) begin
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in_exline <= 1;
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state <= EVEN_LINE_THREE;
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end
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else
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state <= EVEN_LINE_THREE;
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end
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EVEN_LINE_THREE: begin
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if (in_exline) begin
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state <= HEADER;
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in_exline <= 0;
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end
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else
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state <= ODD_LINE_ZERO;
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end
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default: state <= HEADER;
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endcase
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end
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//hold data after each input xfer
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reg [63:0] hold_tdata;
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always @(posedge clk) begin
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if (i_tvalid && i_tready) hold_tdata <= i_tdata;
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end
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//main mux
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always @(*)
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case(state)
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HEADER: o_tdata <= {i_tdata[63:48],chdr_payload_lines,
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set_sid ? {i_tdata[15:0], my_newhome[15:0]}:i_tdata[31:0]};
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TIME: o_tdata <= i_tdata;
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ODD_LINE_ZERO: o_tdata <= {i_tdata[63:52], 4'h0, i_tdata[51:40], 4'h0, i_tdata[39:28],4'h0, i_tdata[27:16], 4'h0};
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EVEN_LINE_ONE: o_tdata <= {hold_tdata[15:4],4'h0,hold_tdata[3:0],i_tdata[63:56],4'h0,i_tdata[55:44], 4'h0,i_tdata[43:32],4'h0};
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ODD_LINE_TWO: o_tdata <= {hold_tdata[31:20], 4'h0, hold_tdata[19:8],4'h0, hold_tdata[7:0],i_tdata[63:60],4'h0,i_tdata[59:48],4'h0};
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EVEN_LINE_THREE: o_tdata <= {hold_tdata[47:36],4'h0,hold_tdata[35:24],4'h0,hold_tdata[23:12],4'h0,hold_tdata[11:0],4'h0};
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default: o_tdata <= i_tdata;
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endcase
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assign o_tvalid = (in_exline)? 1'b1: i_tvalid;
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assign i_tready = (state != EVEN_LINE_THREE) & o_tready & !in_exline;
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assign o_tlast = (has_exline)? in_exline: ((state != EVEN_LINE_THREE) && i_tlast);
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endmodule
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