385 lines
9.4 KiB
Coq
385 lines
9.4 KiB
Coq
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// ***************************************************************************
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// ***************************************************************************
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// Copyright 2011(c) Analog Devices, Inc.
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//
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// All rights reserved.
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//
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// Redistribution and use in source and binary forms, with or without modification,
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// are permitted provided that the following conditions are met:
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// - Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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// - Redistributions in binary form must reproduce the above copyright
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// notice, this list of conditions and the following disclaimer in
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// the documentation and/or other materials provided with the
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// distribution.
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// - Neither the name of Analog Devices, Inc. nor the names of its
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// contributors may be used to endorse or promote products derived
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// from this software without specific prior written permission.
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// - The use of this software may or may not infringe the patent rights
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// of one or more patent holders. This license does not release you
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// from the requirement that you obtain separate licenses from these
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// patent holders to use this software.
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// - Use of the software either in source or binary form, must be run
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// on or directly connected to an Analog Devices Inc. component.
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//
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// THIS SOFTWARE IS PROVIDED BY ANALOG DEVICES "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES,
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// INCLUDING, BUT NOT LIMITED TO, NON-INFRINGEMENT, MERCHANTABILITY AND FITNESS FOR A
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// PARTICULAR PURPOSE ARE DISCLAIMED.
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//
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// IN NO EVENT SHALL ANALOG DEVICES BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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// EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, INTELLECTUAL PROPERTY
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// RIGHTS, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
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// BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
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// STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF
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// THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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// ***************************************************************************
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// ***************************************************************************
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// ***************************************************************************
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// ***************************************************************************
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`timescale 1ns/100ps
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module system_top (
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DDR_addr,
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DDR_ba,
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DDR_cas_n,
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DDR_ck_n,
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DDR_ck_p,
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DDR_cke,
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DDR_cs_n,
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DDR_dm,
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DDR_dq,
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DDR_dqs_n,
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DDR_dqs_p,
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DDR_odt,
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DDR_ras_n,
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DDR_reset_n,
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DDR_we_n,
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FIXED_IO_ddr_vrn,
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FIXED_IO_ddr_vrp,
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FIXED_IO_mio,
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FIXED_IO_ps_clk,
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FIXED_IO_ps_porb,
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FIXED_IO_ps_srstb,
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gpio_bd,
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hdmi_out_clk,
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hdmi_vsync,
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hdmi_hsync,
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hdmi_data_e,
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hdmi_data,
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spdif,
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iic_scl,
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iic_sda,
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rx_ref_clk_p,
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rx_ref_clk_n,
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rx_sysref_p,
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rx_sysref_n,
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rx_sync_p,
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rx_sync_n,
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rx_data_p,
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rx_data_n,
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tx_ref_clk_p,
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tx_ref_clk_n,
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tx_sysref_p,
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tx_sysref_n,
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tx_sync_p,
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tx_sync_n,
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tx_data_p,
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tx_data_n,
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adc_fdb,
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adc_fda,
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dac_irq,
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clkd_status,
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adc_pd,
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dac_txen,
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dac_reset,
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clkd_pd,
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clkd_sync,
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clkd_reset,
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spi_csn_clk,
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spi_csn_dac,
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spi_csn_adc,
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spi_clk,
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spi_sdio);
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inout [14:0] DDR_addr;
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inout [ 2:0] DDR_ba;
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inout DDR_cas_n;
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inout DDR_ck_n;
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inout DDR_ck_p;
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inout DDR_cke;
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inout DDR_cs_n;
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inout [ 3:0] DDR_dm;
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inout [31:0] DDR_dq;
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inout [ 3:0] DDR_dqs_n;
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inout [ 3:0] DDR_dqs_p;
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inout DDR_odt;
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inout DDR_ras_n;
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inout DDR_reset_n;
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inout DDR_we_n;
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inout FIXED_IO_ddr_vrn;
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inout FIXED_IO_ddr_vrp;
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inout [53:0] FIXED_IO_mio;
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inout FIXED_IO_ps_clk;
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inout FIXED_IO_ps_porb;
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inout FIXED_IO_ps_srstb;
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inout [14:0] gpio_bd;
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output hdmi_out_clk;
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output hdmi_vsync;
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output hdmi_hsync;
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output hdmi_data_e;
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output [23:0] hdmi_data;
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output spdif;
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inout iic_scl;
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inout iic_sda;
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input rx_ref_clk_p;
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input rx_ref_clk_n;
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input rx_sysref_p;
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input rx_sysref_n;
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output rx_sync_p;
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output rx_sync_n;
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input [ 3:0] rx_data_p;
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input [ 3:0] rx_data_n;
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input tx_ref_clk_p;
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input tx_ref_clk_n;
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input tx_sysref_p;
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input tx_sysref_n;
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input tx_sync_p;
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input tx_sync_n;
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output [ 3:0] tx_data_p;
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output [ 3:0] tx_data_n;
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inout adc_fdb;
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inout adc_fda;
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inout dac_irq;
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inout [ 1:0] clkd_status;
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inout adc_pd;
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inout dac_txen;
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inout dac_reset;
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inout clkd_pd;
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inout clkd_sync;
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inout clkd_reset;
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output spi_csn_clk;
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output spi_csn_dac;
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output spi_csn_adc;
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output spi_clk;
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inout spi_sdio;
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// internal signals
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wire [42:0] gpio_i;
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wire [42:0] gpio_o;
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wire [42:0] gpio_t;
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wire rx_ref_clk;
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wire rx_sysref;
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wire rx_sync;
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wire tx_ref_clk;
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wire tx_sysref;
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wire tx_sync;
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wire [ 2:0] spi_csn;
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wire spi_mosi;
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wire spi_miso;
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// instantiations
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assign spi_csn_adc = spi_csn[2];
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assign spi_csn_dac = spi_csn[1];
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assign spi_csn_clk = spi_csn[0];
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// instantiations
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IBUFDS_GTE2 i_ibufds_rx_ref_clk (
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.CEB (1'd0),
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.I (rx_ref_clk_p),
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.IB (rx_ref_clk_n),
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.O (rx_ref_clk),
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.ODIV2 ());
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IBUFDS i_ibufds_rx_sysref (
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.I (rx_sysref_p),
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.IB (rx_sysref_n),
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.O (rx_sysref));
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OBUFDS i_obufds_rx_sync (
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.I (rx_sync),
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.O (rx_sync_p),
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.OB (rx_sync_n));
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IBUFDS_GTE2 i_ibufds_tx_ref_clk (
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.CEB (1'd0),
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.I (tx_ref_clk_p),
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.IB (tx_ref_clk_n),
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.O (tx_ref_clk),
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.ODIV2 ());
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IBUFDS i_ibufds_tx_sysref (
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.I (tx_sysref_p),
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.IB (tx_sysref_n),
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.O (tx_sysref));
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IBUFDS i_ibufds_tx_sync (
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.I (tx_sync_p),
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.IB (tx_sync_n),
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.O (tx_sync));
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daq2_spi i_spi (
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.spi_csn (spi_csn),
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.spi_clk (spi_clk),
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.spi_mosi (spi_mosi),
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.spi_miso (spi_miso),
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.spi_sdio (spi_sdio));
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IOBUF i_iobuf_gpio_adc_pd (
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.I (gpio_o[42]),
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.O (gpio_i[42]),
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.T (gpio_t[42]),
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.IO (adc_pd));
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IOBUF i_iobuf_gpio_dac_txen (
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.I (gpio_o[41]),
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.O (gpio_i[41]),
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.T (gpio_t[41]),
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.IO (dac_txen));
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IOBUF i_iobuf_gpio_dac_reset (
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.I (gpio_o[40]),
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.O (gpio_i[40]),
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.T (gpio_t[40]),
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.IO (dac_reset));
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IOBUF i_iobuf_gpio_clkd_pd (
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.I (gpio_o[39]),
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.O (gpio_i[39]),
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.T (gpio_t[39]),
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.IO (clkd_pd));
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IOBUF i_iobuf_gpio_clkd_sync (
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.I (gpio_o[38]),
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.O (gpio_i[38]),
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.T (gpio_t[38]),
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.IO (clkd_sync));
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IOBUF i_iobuf_gpio_clkd_reset (
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.I (gpio_o[37]),
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.O (gpio_i[37]),
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.T (gpio_t[37]),
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.IO (clkd_reset));
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IOBUF i_iobuf_gpio_adc_fdb (
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.I (gpio_o[36]),
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.O (gpio_i[36]),
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.T (gpio_t[36]),
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.IO (adc_fdb));
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IOBUF i_iobuf_gpio_adc_fda (
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.I (gpio_o[35]),
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.O (gpio_i[35]),
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.T (gpio_t[35]),
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.IO (adc_fda));
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IOBUF i_iobuf_gpio_dac_irq (
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.I (gpio_o[34]),
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.O (gpio_i[34]),
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.T (gpio_t[34]),
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.IO (dac_irq));
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IOBUF i_iobuf_gpio_clkd_status_1 (
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.I (gpio_o[33]),
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.O (gpio_i[33]),
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.T (gpio_t[33]),
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.IO (clkd_status[1]));
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IOBUF i_iobuf_gpio_clkd_status_0 (
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.I (gpio_o[32]),
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.O (gpio_i[32]),
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.T (gpio_t[32]),
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.IO (clkd_status[0]));
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genvar n;
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generate
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for (n = 0; n <= 14; n = n + 1) begin: g_iobuf_gpio_bd
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IOBUF i_iobuf_gpio_bd (
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.I (gpio_o[n]),
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.O (gpio_i[n]),
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.T (gpio_t[n]),
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.IO (gpio_bd[n]));
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end
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endgenerate
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system_wrapper i_system_wrapper (
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.DDR_addr (DDR_addr),
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.DDR_ba (DDR_ba),
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.DDR_cas_n (DDR_cas_n),
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.DDR_ck_n (DDR_ck_n),
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.DDR_ck_p (DDR_ck_p),
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.DDR_cke (DDR_cke),
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.DDR_cs_n (DDR_cs_n),
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.DDR_dm (DDR_dm),
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.DDR_dq (DDR_dq),
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.DDR_dqs_n (DDR_dqs_n),
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.DDR_dqs_p (DDR_dqs_p),
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.DDR_odt (DDR_odt),
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.DDR_ras_n (DDR_ras_n),
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.DDR_reset_n (DDR_reset_n),
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.DDR_we_n (DDR_we_n),
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.FIXED_IO_ddr_vrn (FIXED_IO_ddr_vrn),
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.FIXED_IO_ddr_vrp (FIXED_IO_ddr_vrp),
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.FIXED_IO_mio (FIXED_IO_mio),
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.FIXED_IO_ps_clk (FIXED_IO_ps_clk),
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.FIXED_IO_ps_porb (FIXED_IO_ps_porb),
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.FIXED_IO_ps_srstb (FIXED_IO_ps_srstb),
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.GPIO_I (gpio_i),
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.GPIO_O (gpio_o),
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.GPIO_T (gpio_t),
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.hdmi_data (hdmi_data),
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.hdmi_data_e (hdmi_data_e),
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.hdmi_hsync (hdmi_hsync),
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.hdmi_out_clk (hdmi_out_clk),
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.hdmi_vsync (hdmi_vsync),
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.iic_main_scl_io (iic_scl),
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.iic_main_sda_io (iic_sda),
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.rx_data_n (rx_data_n),
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.rx_data_p (rx_data_p),
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.rx_ref_clk (rx_ref_clk),
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.rx_sync (rx_sync),
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.rx_sysref (rx_sysref),
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.spdif (spdif),
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.spi_clk_i (spi_clk),
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.spi_clk_o (spi_clk),
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.spi_csn_i (spi_csn),
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.spi_csn_o (spi_csn),
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.spi_sdi_i (spi_miso),
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.spi_sdo_i (spi_mosi),
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.spi_sdo_o (spi_mosi),
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.tx_data_n (tx_data_n),
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.tx_data_p (tx_data_p),
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.tx_ref_clk (tx_ref_clk),
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.tx_sync (tx_sync),
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.tx_sysref (tx_sysref));
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endmodule
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// ***************************************************************************
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// ***************************************************************************
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