📄 lpm_mux0.v
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// megafunction wizard: %LPM_MUX%
// GENERATION: STANDARD
// VERSION: WM1.0
// MODULE: lpm_mux
// ============================================================
// File Name: lpm_mux0.v
// Megafunction Name(s):
// lpm_mux
// ============================================================
// ************************************************************
// THIS IS A WIZARD-GENERATED FILE. DO NOT EDIT THIS FILE!
//
// 5.0 Build 148 04/26/2005 SJ Full Version
// ************************************************************
//Copyright (C) 1991-2005 Altera Corporation
//Your use of Altera Corporation's design tools, logic functions
//and other software and tools, and its AMPP partner logic
//functions, and any output files any of the foregoing
//(including device programming or simulation files), and any
//associated documentation or information are expressly subject
//to the terms and conditions of the Altera Program License
//Subscription Agreement, Altera MegaCore Function License
//Agreement, or other applicable license agreement, including,
//without limitation, that your use is for the sole purpose of
//programming logic devices manufactured by Altera and sold by
//Altera or its authorized distributors. Please refer to the
//applicable agreement for further details.
// synopsys translate_off
`timescale 1 ps / 1 ps
// synopsys translate_on
module lpm_mux0 (
data3x,
data2x,
data1x,
data0x,
sel,
result);
input [3:0] data3x;
input [3:0] data2x;
input [3:0] data1x;
input [3:0] data0x;
input [1:0] sel;
output [3:0] result;
wire [3:0] sub_wire0;
wire [3:0] sub_wire5 = data3x[3:0];
wire [3:0] sub_wire4 = data1x[3:0];
wire [3:0] sub_wire3 = data0x[3:0];
wire [3:0] result = sub_wire0[3:0];
wire [3:0] sub_wire1 = data2x[3:0];
wire [15:0] sub_wire2 = {sub_wire5, sub_wire1, sub_wire4, sub_wire3};
lpm_mux lpm_mux_component (
.sel (sel),
.data (sub_wire2),
.result (sub_wire0)
// synopsys translate_off
,
.aclr (),
.clken (),
.clock ()
// synopsys translate_on
);
defparam
lpm_mux_component.lpm_size = 4,
lpm_mux_component.lpm_widths = 2,
lpm_mux_component.lpm_width = 4,
lpm_mux_component.lpm_type = "LPM_MUX";
endmodule
// ============================================================
// CNX file retrieval info
// ============================================================
// Retrieval info: CONSTANT: LPM_SIZE NUMERIC "4"
// Retrieval info: CONSTANT: LPM_WIDTHS NUMERIC "2"
// Retrieval info: CONSTANT: LPM_WIDTH NUMERIC "4"
// Retrieval info: CONSTANT: LPM_TYPE STRING "LPM_MUX"
// Retrieval info: USED_PORT: result 0 0 4 0 OUTPUT NODEFVAL result[3..0]
// Retrieval info: USED_PORT: data3x 0 0 4 0 INPUT NODEFVAL data3x[3..0]
// Retrieval info: USED_PORT: data2x 0 0 4 0 INPUT NODEFVAL data2x[3..0]
// Retrieval info: USED_PORT: data1x 0 0 4 0 INPUT NODEFVAL data1x[3..0]
// Retrieval info: USED_PORT: data0x 0 0 4 0 INPUT NODEFVAL data0x[3..0]
// Retrieval info: USED_PORT: sel 0 0 2 0 INPUT NODEFVAL sel[1..0]
// Retrieval info: CONNECT: result 0 0 4 0 @result 0 0 4 0
// Retrieval info: CONNECT: @data 0 0 4 12 data3x 0 0 4 0
// Retrieval info: CONNECT: @data 0 0 4 8 data2x 0 0 4 0
// Retrieval info: CONNECT: @data 0 0 4 4 data1x 0 0 4 0
// Retrieval info: CONNECT: @data 0 0 4 0 data0x 0 0 4 0
// Retrieval info: CONNECT: @sel 0 0 2 0 sel 0 0 2 0
// Retrieval info: LIBRARY: lpm lpm.lpm_components.all
// Retrieval info: GEN_FILE: TYPE_NORMAL lpm_mux0.v TRUE
// Retrieval info: GEN_FILE: TYPE_NORMAL lpm_mux0.inc FALSE
// Retrieval info: GEN_FILE: TYPE_NORMAL lpm_mux0.cmp FALSE
// Retrieval info: GEN_FILE: TYPE_NORMAL lpm_mux0.bsf TRUE FALSE
// Retrieval info: GEN_FILE: TYPE_NORMAL lpm_mux0_inst.v FALSE
// Retrieval info: GEN_FILE: TYPE_NORMAL lpm_mux0_bb.v TRUE
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