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[/] [qaz_libs/] [trunk/] [basal/] [src/] [FIFOs/] [tiny_sync_fifo.sv] - Rev 49
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//////////////////////////////////////////////////////////////////////
//// ////
//// Copyright (C) 2015 Authors and OPENCORES.ORG ////
//// ////
//// This source file may be used and distributed without ////
//// restriction provided that this copyright statement is not ////
//// removed from the file and that any derivative work contains ////
//// the original copyright notice and the associated disclaimer. ////
//// ////
//// This source file is free software; you can redistribute it ////
//// and/or modify it under the terms of the GNU Lesser General ////
//// Public License as published by the Free Software Foundation; ////
//// either version 2.1 of the License, or (at your option) any ////
//// later version. ////
//// ////
//// This source is distributed in the hope that it will be ////
//// useful, but WITHOUT ANY WARRANTY; without even the implied ////
//// warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR ////
//// PURPOSE. See the GNU Lesser General Public License for more ////
//// details. ////
//// ////
//// You should have received a copy of the GNU Lesser General ////
//// Public License along with this source; if not, download it ////
//// from http://www.opencores.org/lgpl.shtml ////
//// ////
//////////////////////////////////////////////////////////////////////
module
tiny_sync_fifo
#(
W
)
(
output reg wr_full,
input [W-1:0] wr_data,
input wr_en,
output reg rd_empty,
output [W-1:0] rd_data,
input rd_en,
input clk,
input reset
);
// --------------------------------------------------------------------
//
wire writing = wr_en & ~wr_full;
wire reading = rd_en & ~rd_empty;
// --------------------------------------------------------------------
//
reg [1:0] rd_ptr_r;
reg [1:0] next_rd_ptr_r;
always_comb
if(reset)
next_rd_ptr_r = 0;
else if(reading)
next_rd_ptr_r = rd_ptr_r + 1;
else
next_rd_ptr_r = rd_ptr_r;
always_ff @(posedge clk)
rd_ptr_r <= next_rd_ptr_r;
// --------------------------------------------------------------------
//
reg [1:0] wr_ptr_r;
reg [1:0] next_wr_ptr_r;
always_comb
if(reset)
next_wr_ptr_r = 0;
else if(writing)
next_wr_ptr_r = wr_ptr_r + 1;
else
next_wr_ptr_r = wr_ptr_r;
always_ff @(posedge clk)
wr_ptr_r <= next_wr_ptr_r;
// --------------------------------------------------------------------
//
wire empty_w = (next_wr_ptr_r == next_rd_ptr_r);
always_ff @(posedge clk)
if(reset)
rd_empty <= 1;
else
rd_empty <= empty_w;
// --------------------------------------------------------------------
//
wire full_w = ({~next_wr_ptr_r[1],next_wr_ptr_r[0]} == next_rd_ptr_r);
always_ff @(posedge clk)
if(reset)
wr_full <= 0;
else
wr_full <= full_w;
// --------------------------------------------------------------------
//
reg [W-1:0] data_0_r;
reg [W-1:0] data_1_r;
wire [W-1:0] wr_data_mux = rd_ptr_r[0] ? data_1_r : data_0_r;
assign rd_data = wr_data_mux;
always_ff @(posedge clk)
if(writing)
if(wr_ptr_r[0])
data_1_r <= wr_data;
else
data_0_r <= wr_data;
// --------------------------------------------------------------------
// synthesis translate_off
always_ff @(posedge clk)
if(wr_en & wr_full)
$stop;
always_ff @(posedge clk)
if(rd_en & rd_empty)
$stop;
// synthesis translate_on
// --------------------------------------------------------------------
// --------------------------------------------------------------------
//
endmodule
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