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// (c) Copyright 1995-2020 Xilinx, Inc. All rights reserved.
//
// This file contains confidential and proprietary information
// of Xilinx, Inc. and is protected under U.S. and
// international copyright and other intellectual property
// laws.
//
// DISCLAIMER
// This disclaimer is not a license and does not grant any
// rights to the materials distributed herewith. Except as
// otherwise provided in a valid license issued to you by
// Xilinx, and to the maximum extent permitted by applicable
// law: (1) THESE MATERIALS ARE MADE AVAILABLE "AS IS" AND
// WITH ALL FAULTS, AND XILINX HEREBY DISCLAIMS ALL WARRANTIES
// AND CONDITIONS, EXPRESS, IMPLIED, OR STATUTORY, INCLUDING
// BUT NOT LIMITED TO WARRANTIES OF MERCHANTABILITY, NON-
// INFRINGEMENT, OR FITNESS FOR ANY PARTICULAR PURPOSE; and
// (2) Xilinx shall not be liable (whether in contract or tort,
// including negligence, or under any other theory of
// liability) for any loss or damage of any kind or nature
// related to, arising under or in connection with these
// materials, including for any direct, or any indirect,
// special, incidental, or consequential loss or damage
// (including loss of data, profits, goodwill, or any type of
// loss or damage suffered as a result of any action brought
// by a third party) even if such damage or loss was
// reasonably foreseeable or Xilinx had been advised of the
// possibility of the same.
//
// CRITICAL APPLICATIONS
// Xilinx products are not designed or intended to be fail-
// safe, or for use in any application requiring fail-safe
// performance, such as life-support or safety devices or
// systems, Class III medical devices, nuclear facilities,
// applications related to the deployment of airbags, or any
// other applications that could lead to death, personal
// injury, or severe property or environmental damage
// (individually and collectively, "Critical
// Applications"). Customer assumes the sole risk and
// liability of any use of Xilinx products in Critical
// Applications, subject only to applicable laws and
// regulations governing limitations on product liability.
//
// THIS COPYRIGHT NOTICE AND DISCLAIMER MUST BE RETAINED AS
// PART OF THIS FILE AT ALL TIMES.
//
// DO NOT MODIFY THIS FILE.
// IP VLNV: xilinx.com:ip:xdma:4.1
// IP Revision: 4
// The following must be inserted into your Verilog file for this
// core to be instantiated. Change the instance name and port connections
// (in parentheses) to your own signal names.
//----------- Begin Cut here for INSTANTIATION Template ---// INST_TAG
xdma your_instance_name (
.sys_clk(sys_clk), // input wire sys_clk
.sys_clk_gt(sys_clk_gt), // input wire sys_clk_gt
.sys_rst_n(sys_rst_n), // input wire sys_rst_n
.user_lnk_up(user_lnk_up), // output wire user_lnk_up
.pci_exp_txp(pci_exp_txp), // output wire [7 : 0] pci_exp_txp
.pci_exp_txn(pci_exp_txn), // output wire [7 : 0] pci_exp_txn
.pci_exp_rxp(pci_exp_rxp), // input wire [7 : 0] pci_exp_rxp
.pci_exp_rxn(pci_exp_rxn), // input wire [7 : 0] pci_exp_rxn
.axi_aclk(axi_aclk), // output wire axi_aclk
.axi_aresetn(axi_aresetn), // output wire axi_aresetn
.usr_irq_req(usr_irq_req), // input wire [0 : 0] usr_irq_req
.usr_irq_ack(usr_irq_ack), // output wire [0 : 0] usr_irq_ack
.msi_enable(msi_enable), // output wire msi_enable
.msi_vector_width(msi_vector_width), // output wire [2 : 0] msi_vector_width
.cfg_mgmt_addr(cfg_mgmt_addr), // input wire [18 : 0] cfg_mgmt_addr
.cfg_mgmt_write(cfg_mgmt_write), // input wire cfg_mgmt_write
.cfg_mgmt_write_data(cfg_mgmt_write_data), // input wire [31 : 0] cfg_mgmt_write_data
.cfg_mgmt_byte_enable(cfg_mgmt_byte_enable), // input wire [3 : 0] cfg_mgmt_byte_enable
.cfg_mgmt_read(cfg_mgmt_read), // input wire cfg_mgmt_read
.cfg_mgmt_read_data(cfg_mgmt_read_data), // output wire [31 : 0] cfg_mgmt_read_data
.cfg_mgmt_read_write_done(cfg_mgmt_read_write_done), // output wire cfg_mgmt_read_write_done
.s_axis_c2h_tdata_0(s_axis_c2h_tdata_0), // input wire [255 : 0] s_axis_c2h_tdata_0
.s_axis_c2h_tlast_0(s_axis_c2h_tlast_0), // input wire s_axis_c2h_tlast_0
.s_axis_c2h_tvalid_0(s_axis_c2h_tvalid_0), // input wire s_axis_c2h_tvalid_0
.s_axis_c2h_tready_0(s_axis_c2h_tready_0), // output wire s_axis_c2h_tready_0
.s_axis_c2h_tkeep_0(s_axis_c2h_tkeep_0), // input wire [31 : 0] s_axis_c2h_tkeep_0
.m_axis_h2c_tdata_0(m_axis_h2c_tdata_0), // output wire [255 : 0] m_axis_h2c_tdata_0
.m_axis_h2c_tlast_0(m_axis_h2c_tlast_0), // output wire m_axis_h2c_tlast_0
.m_axis_h2c_tvalid_0(m_axis_h2c_tvalid_0), // output wire m_axis_h2c_tvalid_0
.m_axis_h2c_tready_0(m_axis_h2c_tready_0), // input wire m_axis_h2c_tready_0
.m_axis_h2c_tkeep_0(m_axis_h2c_tkeep_0) // output wire [31 : 0] m_axis_h2c_tkeep_0
);
// INST_TAG_END ------ End INSTANTIATION Template ---------
// You must compile the wrapper file xdma.v when simulating
// the core, xdma. When compiling the wrapper file, be sure to
// reference the Verilog simulation library.
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