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corundum/rtl/axis_frame_length_adjust_fifo.v

242 lines
7.0 KiB
Verilog

/*
Copyright (c) 2015-2018 Alex Forencich
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in
all copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
THE SOFTWARE.
*/
// Language: Verilog 2001
`resetall
`timescale 1ns / 1ps
`default_nettype none
/*
* AXI4-Stream frame length adjuster with FIFO
*/
module axis_frame_length_adjust_fifo #
(
// Width of AXI stream interfaces in bits
parameter DATA_WIDTH = 8,
// Propagate tkeep signal
// If disabled, tkeep assumed to be 1'b1
parameter KEEP_ENABLE = (DATA_WIDTH>8),
// tkeep signal width (words per cycle)
parameter KEEP_WIDTH = ((DATA_WIDTH+7)/8),
// Propagate tid signal
parameter ID_ENABLE = 0,
// tid signal width
parameter ID_WIDTH = 8,
// Propagate tdest signal
parameter DEST_ENABLE = 0,
// tdest signal width
parameter DEST_WIDTH = 8,
// Propagate tuser signal
parameter USER_ENABLE = 1,
// tuser signal width
parameter USER_WIDTH = 1,
// Depth of data FIFO in words
parameter FRAME_FIFO_DEPTH = 4096,
// Depth of header FIFO
parameter HEADER_FIFO_DEPTH = 8
)
(
input wire clk,
input wire rst,
/*
* AXI input
*/
input wire [DATA_WIDTH-1:0] s_axis_tdata,
input wire [KEEP_WIDTH-1:0] s_axis_tkeep,
input wire s_axis_tvalid,
output wire s_axis_tready,
input wire s_axis_tlast,
input wire [ID_WIDTH-1:0] s_axis_tid,
input wire [DEST_WIDTH-1:0] s_axis_tdest,
input wire [USER_WIDTH-1:0] s_axis_tuser,
/*
* AXI output
*/
output wire m_axis_hdr_valid,
input wire m_axis_hdr_ready,
output wire m_axis_hdr_pad,
output wire m_axis_hdr_truncate,
output wire [15:0] m_axis_hdr_length,
output wire [15:0] m_axis_hdr_original_length,
output wire [DATA_WIDTH-1:0] m_axis_tdata,
output wire [KEEP_WIDTH-1:0] m_axis_tkeep,
output wire m_axis_tvalid,
input wire m_axis_tready,
output wire m_axis_tlast,
output wire [ID_WIDTH-1:0] m_axis_tid,
output wire [DEST_WIDTH-1:0] m_axis_tdest,
output wire [USER_WIDTH-1:0] m_axis_tuser,
/*
* Configuration
*/
input wire [15:0] length_min,
input wire [15:0] length_max
);
wire [DATA_WIDTH-1:0] fifo_axis_tdata;
wire [KEEP_WIDTH-1:0] fifo_axis_tkeep;
wire fifo_axis_tvalid;
wire fifo_axis_tready;
wire fifo_axis_tlast;
wire [ID_WIDTH-1:0] fifo_axis_tid;
wire [DEST_WIDTH-1:0] fifo_axis_tdest;
wire [USER_WIDTH-1:0] fifo_axis_tuser;
wire status_valid;
wire status_ready;
wire status_frame_pad;
wire status_frame_truncate;
wire [15:0] status_frame_length;
wire [15:0] status_frame_original_length;
axis_frame_length_adjust #(
.DATA_WIDTH(DATA_WIDTH),
.KEEP_ENABLE(KEEP_ENABLE),
.KEEP_WIDTH(KEEP_WIDTH),
.ID_ENABLE(ID_ENABLE),
.ID_WIDTH(ID_WIDTH),
.DEST_ENABLE(DEST_ENABLE),
.DEST_WIDTH(DEST_WIDTH),
.USER_ENABLE(USER_ENABLE),
.USER_WIDTH(USER_WIDTH)
)
axis_frame_length_adjust_inst (
.clk(clk),
.rst(rst),
// AXI input
.s_axis_tdata(s_axis_tdata),
.s_axis_tkeep(s_axis_tkeep),
.s_axis_tvalid(s_axis_tvalid),
.s_axis_tready(s_axis_tready),
.s_axis_tlast(s_axis_tlast),
.s_axis_tid(s_axis_tid),
.s_axis_tdest(s_axis_tdest),
.s_axis_tuser(s_axis_tuser),
// AXI output
.m_axis_tdata(fifo_axis_tdata),
.m_axis_tkeep(fifo_axis_tkeep),
.m_axis_tvalid(fifo_axis_tvalid),
.m_axis_tready(fifo_axis_tready),
.m_axis_tlast(fifo_axis_tlast),
.m_axis_tid(fifo_axis_tid),
.m_axis_tdest(fifo_axis_tdest),
.m_axis_tuser(fifo_axis_tuser),
// Status
.status_valid(status_valid),
.status_ready(status_ready),
.status_frame_pad(status_frame_pad),
.status_frame_truncate(status_frame_truncate),
.status_frame_length(status_frame_length),
.status_frame_original_length(status_frame_original_length),
// Configuration
.length_min(length_min),
.length_max(length_max)
);
axis_fifo #(
.DEPTH(FRAME_FIFO_DEPTH),
.DATA_WIDTH(DATA_WIDTH),
.KEEP_ENABLE(KEEP_ENABLE),
.KEEP_WIDTH(KEEP_WIDTH),
.LAST_ENABLE(1),
.ID_ENABLE(ID_ENABLE),
.ID_WIDTH(ID_WIDTH),
.DEST_ENABLE(DEST_ENABLE),
.DEST_WIDTH(DEST_WIDTH),
.USER_ENABLE(USER_ENABLE),
.USER_WIDTH(USER_WIDTH),
.FRAME_FIFO(0)
)
frame_fifo_inst (
.clk(clk),
.rst(rst),
// AXI input
.s_axis_tdata(fifo_axis_tdata),
.s_axis_tkeep(fifo_axis_tkeep),
.s_axis_tvalid(fifo_axis_tvalid),
.s_axis_tready(fifo_axis_tready),
.s_axis_tlast(fifo_axis_tlast),
.s_axis_tid(fifo_axis_tid),
.s_axis_tdest(fifo_axis_tdest),
.s_axis_tuser(fifo_axis_tuser),
// AXI output
.m_axis_tdata(m_axis_tdata),
.m_axis_tkeep(m_axis_tkeep),
.m_axis_tvalid(m_axis_tvalid),
.m_axis_tready(m_axis_tready),
.m_axis_tlast(m_axis_tlast),
.m_axis_tid(m_axis_tid),
.m_axis_tdest(m_axis_tdest),
.m_axis_tuser(m_axis_tuser),
// Status
.status_overflow(),
.status_bad_frame(),
.status_good_frame()
);
axis_fifo #(
.DEPTH(HEADER_FIFO_DEPTH),
.DATA_WIDTH(1+1+16+16),
.KEEP_ENABLE(0),
.LAST_ENABLE(0),
.ID_ENABLE(0),
.DEST_ENABLE(0),
.USER_ENABLE(0),
.FRAME_FIFO(0)
)
header_fifo_inst (
.clk(clk),
.rst(rst),
// AXI input
.s_axis_tdata({status_frame_pad, status_frame_truncate, status_frame_length, status_frame_original_length}),
.s_axis_tkeep(0),
.s_axis_tvalid(status_valid),
.s_axis_tready(status_ready),
.s_axis_tlast(0),
.s_axis_tid(0),
.s_axis_tdest(0),
.s_axis_tuser(0),
// AXI output
.m_axis_tdata({m_axis_hdr_pad, m_axis_hdr_truncate, m_axis_hdr_length, m_axis_hdr_original_length}),
.m_axis_tkeep(),
.m_axis_tvalid(m_axis_hdr_valid),
.m_axis_tready(m_axis_hdr_ready),
.m_axis_tlast(),
.m_axis_tid(),
.m_axis_tdest(),
.m_axis_tuser(),
// Status
.status_overflow(),
.status_bad_frame(),
.status_good_frame()
);
endmodule
`resetall