Files
b210-k7-fpga/top/x300/coregen/axi_vfifo_64.veo
T
Ben Hilburn fbbc991a7d Pushing the bulk of UHD-3.7.0 code.
Original-commit: ff1546f8137f7f92bb250f685561b0c34cc0e053
2014-02-14 12:05:07 -08:00

124 lines
7.4 KiB
Verilog

/*******************************************************************************
* This file is owned and controlled by Xilinx and must be used solely *
* for design, simulation, implementation and creation of design files *
* limited to Xilinx devices or technologies. Use with non-Xilinx *
* devices or technologies is expressly prohibited and immediately *
* terminates your license. *
* *
* XILINX IS PROVIDING THIS DESIGN, CODE, OR INFORMATION "AS IS" SOLELY *
* FOR USE IN DEVELOPING PROGRAMS AND SOLUTIONS FOR XILINX DEVICES. BY *
* PROVIDING THIS DESIGN, CODE, OR INFORMATION AS ONE POSSIBLE *
* IMPLEMENTATION OF THIS FEATURE, APPLICATION OR STANDARD, XILINX IS *
* MAKING NO REPRESENTATION THAT THIS IMPLEMENTATION IS FREE FROM ANY *
* CLAIMS OF INFRINGEMENT, AND YOU ARE RESPONSIBLE FOR OBTAINING ANY *
* RIGHTS YOU MAY REQUIRE FOR YOUR IMPLEMENTATION. XILINX EXPRESSLY *
* DISCLAIMS ANY WARRANTY WHATSOEVER WITH RESPECT TO THE ADEQUACY OF THE *
* IMPLEMENTATION, INCLUDING BUT NOT LIMITED TO ANY WARRANTIES OR *
* REPRESENTATIONS THAT THIS IMPLEMENTATION IS FREE FROM CLAIMS OF *
* INFRINGEMENT, IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A *
* PARTICULAR PURPOSE. *
* *
* Xilinx products are not intended for use in life support appliances, *
* devices, or systems. Use in such applications are expressly *
* prohibited. *
* *
* (c) Copyright 1995-2012 Xilinx, Inc. *
* All rights reserved. *
*******************************************************************************/
/*******************************************************************************
* Generated from core with identifier: xilinx.com:ip:axi_vfifo_ctrl:1.1 *
* *
* The AXI Virtual FIFO Controller is a parameterizable number of multi *
* channel FIFO. *
*******************************************************************************/
// Interfaces:
// AXI4Stream_MASTER_M_AXIS
// AXI4Stream_SLAVE_S_AXIS
// AXI4_MASTER_M_AXI
// 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
axi_vfifo_64 your_instance_name (
.aclk(aclk), // input aclk
.aresetn(aresetn), // input aresetn
.m_axi_awid(m_axi_awid), // output [0 : 0] m_axi_awid
.m_axi_awaddr(m_axi_awaddr), // output [31 : 0] m_axi_awaddr
.m_axi_awlen(m_axi_awlen), // output [7 : 0] m_axi_awlen
.m_axi_awsize(m_axi_awsize), // output [2 : 0] m_axi_awsize
.m_axi_awburst(m_axi_awburst), // output [1 : 0] m_axi_awburst
.m_axi_awlock(m_axi_awlock), // output [0 : 0] m_axi_awlock
.m_axi_awcache(m_axi_awcache), // output [3 : 0] m_axi_awcache
.m_axi_awprot(m_axi_awprot), // output [2 : 0] m_axi_awprot
.m_axi_awqos(m_axi_awqos), // output [3 : 0] m_axi_awqos
.m_axi_awregion(m_axi_awregion), // output [3 : 0] m_axi_awregion
.m_axi_awuser(m_axi_awuser), // output [0 : 0] m_axi_awuser
.m_axi_awvalid(m_axi_awvalid), // output m_axi_awvalid
.m_axi_awready(m_axi_awready), // input m_axi_awready
.m_axi_wdata(m_axi_wdata), // output [63 : 0] m_axi_wdata
.m_axi_wstrb(m_axi_wstrb), // output [7 : 0] m_axi_wstrb
.m_axi_wlast(m_axi_wlast), // output m_axi_wlast
.m_axi_wuser(m_axi_wuser), // output [0 : 0] m_axi_wuser
.m_axi_wvalid(m_axi_wvalid), // output m_axi_wvalid
.m_axi_wready(m_axi_wready), // input m_axi_wready
.m_axi_bid(m_axi_bid), // input [0 : 0] m_axi_bid
.m_axi_bresp(m_axi_bresp), // input [1 : 0] m_axi_bresp
.m_axi_buser(m_axi_buser), // input [0 : 0] m_axi_buser
.m_axi_bvalid(m_axi_bvalid), // input m_axi_bvalid
.m_axi_bready(m_axi_bready), // output m_axi_bready
.m_axi_arid(m_axi_arid), // output [0 : 0] m_axi_arid
.m_axi_araddr(m_axi_araddr), // output [31 : 0] m_axi_araddr
.m_axi_arlen(m_axi_arlen), // output [7 : 0] m_axi_arlen
.m_axi_arsize(m_axi_arsize), // output [2 : 0] m_axi_arsize
.m_axi_arburst(m_axi_arburst), // output [1 : 0] m_axi_arburst
.m_axi_arlock(m_axi_arlock), // output [0 : 0] m_axi_arlock
.m_axi_arcache(m_axi_arcache), // output [3 : 0] m_axi_arcache
.m_axi_arprot(m_axi_arprot), // output [2 : 0] m_axi_arprot
.m_axi_arqos(m_axi_arqos), // output [3 : 0] m_axi_arqos
.m_axi_arregion(m_axi_arregion), // output [3 : 0] m_axi_arregion
.m_axi_aruser(m_axi_aruser), // output [0 : 0] m_axi_aruser
.m_axi_arvalid(m_axi_arvalid), // output m_axi_arvalid
.m_axi_arready(m_axi_arready), // input m_axi_arready
.m_axi_rid(m_axi_rid), // input [0 : 0] m_axi_rid
.m_axi_rdata(m_axi_rdata), // input [63 : 0] m_axi_rdata
.m_axi_rresp(m_axi_rresp), // input [1 : 0] m_axi_rresp
.m_axi_rlast(m_axi_rlast), // input m_axi_rlast
.m_axi_ruser(m_axi_ruser), // input [0 : 0] m_axi_ruser
.m_axi_rvalid(m_axi_rvalid), // input m_axi_rvalid
.m_axi_rready(m_axi_rready), // output m_axi_rready
.s_axis_tvalid(s_axis_tvalid), // input s_axis_tvalid
.s_axis_tready(s_axis_tready), // output s_axis_tready
.s_axis_tdata(s_axis_tdata), // input [63 : 0] s_axis_tdata
.s_axis_tstrb(s_axis_tstrb), // input [7 : 0] s_axis_tstrb
.s_axis_tkeep(s_axis_tkeep), // input [7 : 0] s_axis_tkeep
.s_axis_tlast(s_axis_tlast), // input s_axis_tlast
.s_axis_tid(s_axis_tid), // input [0 : 0] s_axis_tid
.s_axis_tdest(s_axis_tdest), // input [0 : 0] s_axis_tdest
.m_axis_tvalid(m_axis_tvalid), // output m_axis_tvalid
.m_axis_tready(m_axis_tready), // input m_axis_tready
.m_axis_tdata(m_axis_tdata), // output [63 : 0] m_axis_tdata
.m_axis_tstrb(m_axis_tstrb), // output [7 : 0] m_axis_tstrb
.m_axis_tkeep(m_axis_tkeep), // output [7 : 0] m_axis_tkeep
.m_axis_tlast(m_axis_tlast), // output m_axis_tlast
.m_axis_tid(m_axis_tid), // output [0 : 0] m_axis_tid
.m_axis_tdest(m_axis_tdest), // output [0 : 0] m_axis_tdest
.vfifo_mm2s_channel_full(vfifo_mm2s_channel_full), // input [1 : 0] vfifo_mm2s_channel_full
.vfifo_s2mm_channel_full(vfifo_s2mm_channel_full), // output [1 : 0] vfifo_s2mm_channel_full
.vfifo_mm2s_channel_empty(vfifo_mm2s_channel_empty), // output [1 : 0] vfifo_mm2s_channel_empty
.vfifo_mm2s_rresp_err_intr(vfifo_mm2s_rresp_err_intr), // output vfifo_mm2s_rresp_err_intr
.vfifo_s2mm_bresp_err_intr(vfifo_s2mm_bresp_err_intr), // output vfifo_s2mm_bresp_err_intr
.vfifo_s2mm_overrun_err_intr(vfifo_s2mm_overrun_err_intr), // output vfifo_s2mm_overrun_err_intr
.vfifo_idle(vfifo_idle) // output [1 : 0] vfifo_idle
);
// INST_TAG_END ------ End INSTANTIATION Template ---------
// You must compile the wrapper file axi_vfifo_64.v when simulating
// the core, axi_vfifo_64. When compiling the wrapper file, be sure to
// reference the XilinxCoreLib Verilog simulation library. For detailed
// instructions, please refer to the "CORE Generator Help".