260 lines
8.5 KiB
Coq
260 lines
8.5 KiB
Coq
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// ***************************************************************************
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// ***************************************************************************
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// Copyright (C) 2023-2024 Analog Devices, Inc. All rights reserved.
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//
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// In this HDL repository, there are many different and unique modules, consisting
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// of various HDL (Verilog or VHDL) components. The individual modules are
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// developed independently, and may be accompanied by separate and unique license
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// terms.
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//
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// The user should read each of these license terms, and understand the
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// freedoms and responsibilities that he or she has by using this source/core.
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//
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// This core is distributed in the hope that it will be useful, but WITHOUT ANY
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// WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR
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// A PARTICULAR PURPOSE.
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//
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// Redistribution and use of source or resulting binaries, with or without modification
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// of this file, are permitted under one of the following two license terms:
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//
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// 1. The GNU General Public License version 2 as published by the
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// Free Software Foundation, which can be found in the top level directory
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// of this repository (LICENSE_GPL2), and also online at:
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// <https://www.gnu.org/licenses/old-licenses/gpl-2.0.html>
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//
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// OR
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//
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// 2. An ADI specific BSD license, which can be found in the top level directory
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// of this repository (LICENSE_ADIBSD), and also on-line at:
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// https://github.com/analogdevicesinc/hdl/blob/master/LICENSE_ADIBSD
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// This will allow to generate bit files and not release the source code,
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// as long as it attaches to an ADI device.
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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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input [12:0] gpio_bd_i,
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output [ 7:0] gpio_bd_o,
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inout iic_scl,
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inout iic_sda,
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input ref_clk_p,
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input ref_clk_n,
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input core_clk_p,
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input core_clk_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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output [ 3:0] tx_data_p,
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output [ 3:0] tx_data_n,
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output rx_sync_p,
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output rx_sync_n,
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output rx_os_sync_p,
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output rx_os_sync_n,
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input tx_sync_p,
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input tx_sync_n,
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input tx_sync_1_p,
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input tx_sync_1_n,
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input sysref_p,
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input sysref_n,
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output spi_csn_ad9528,
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output spi_csn_adrv9026,
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output spi_clk,
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output spi_mosi,
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input spi_miso,
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inout ad9528_reset_b,
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inout ad9528_sysref_req,
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inout adrv9026_tx1_enable,
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inout adrv9026_tx2_enable,
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inout adrv9026_tx3_enable,
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inout adrv9026_tx4_enable,
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inout adrv9026_rx1_enable,
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inout adrv9026_rx2_enable,
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inout adrv9026_rx3_enable,
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inout adrv9026_rx4_enable,
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inout adrv9026_test,
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inout adrv9026_reset_b,
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inout adrv9026_gpint1,
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inout adrv9026_gpint2,
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inout adrv9026_orx_ctrl_a,
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inout adrv9026_orx_ctrl_b,
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inout adrv9026_orx_ctrl_c,
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inout adrv9026_orx_ctrl_d,
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inout adrv9026_gpio_00,
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inout adrv9026_gpio_01,
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inout adrv9026_gpio_02,
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inout adrv9026_gpio_03,
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inout adrv9026_gpio_04,
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inout adrv9026_gpio_05,
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inout adrv9026_gpio_06,
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inout adrv9026_gpio_07,
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inout adrv9026_gpio_08,
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inout adrv9026_gpio_09,
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inout adrv9026_gpio_10,
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inout adrv9026_gpio_11,
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inout adrv9026_gpio_12,
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inout adrv9026_gpio_13,
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inout adrv9026_gpio_14,
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inout adrv9026_gpio_15,
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inout adrv9026_gpio_16,
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inout adrv9026_gpio_17,
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inout adrv9026_gpio_18
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);
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// internal signals
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wire [94:0] gpio_i;
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wire [94:0] gpio_o;
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wire [94:0] gpio_t;
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wire [20:0] gpio_bd;
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wire [ 2:0] spi_csn;
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wire ref_clk;
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wire rx_sync;
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wire rx_os_sync;
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wire tx_sync;
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wire tx_sync_1;
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wire sysref;
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assign gpio_i[94:69] = gpio_o[94:69];
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assign gpio_i[31:21] = gpio_o[31:21];
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assign rx_os_sync = 1'b0;
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// instantiations
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IBUFDS_GTE4 i_ibufds_rx_ref_clk (
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.CEB (1'd0),
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.I (ref_clk_p),
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.IB (ref_clk_n),
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.O (ref_clk),
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.ODIV2 ());
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IBUFDS i_core_clk_ibufds_1 (
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.I (core_clk_p),
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.IB (core_clk_n),
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.O (core_clk_in));
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BUFG i_core_clk_bufg (
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.I (core_clk_in),
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.O (core_clk));
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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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OBUFDS i_obufds_rx_os_sync (
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.I (rx_os_sync),
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.O (rx_os_sync_p),
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.OB (rx_os_sync_n));
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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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IBUFDS i_ibufds_tx_sync_1 (
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.I (tx_sync_1_p),
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.IB (tx_sync_1_n),
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.O (tx_sync_1));
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IBUFDS i_ibufds_sysref (
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.I (sysref_p),
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.IB (sysref_n),
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.O (sysref));
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ad_iobuf #(
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.DATA_WIDTH(37)
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) i_iobuf (
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.dio_t ({gpio_t[68:32]}),
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.dio_i ({gpio_o[68:32]}),
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.dio_o ({gpio_i[68:32]}),
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.dio_p ({ ad9528_reset_b, // 68
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ad9528_sysref_req, // 67
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adrv9026_tx1_enable, // 66
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adrv9026_tx2_enable, // 65
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adrv9026_tx3_enable, // 64
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adrv9026_tx4_enable, // 63
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adrv9026_rx1_enable, // 62
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adrv9026_rx2_enable, // 61
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adrv9026_rx3_enable, // 60
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adrv9026_rx4_enable, // 59
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adrv9026_test, // 58
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adrv9026_reset_b, // 57
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adrv9026_gpint1, // 56
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adrv9026_gpint2, // 55
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adrv9026_orx_ctrl_a, // 54
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adrv9026_orx_ctrl_b, // 53
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adrv9026_orx_ctrl_c, // 52
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adrv9026_orx_ctrl_d, // 51
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adrv9026_gpio_00, // 50
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adrv9026_gpio_01, // 49
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adrv9026_gpio_02, // 48
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adrv9026_gpio_03, // 47
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adrv9026_gpio_04, // 46
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adrv9026_gpio_05, // 45
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adrv9026_gpio_06, // 44
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adrv9026_gpio_07, // 43
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adrv9026_gpio_08, // 42
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adrv9026_gpio_09, // 41
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adrv9026_gpio_10, // 40
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adrv9026_gpio_11, // 39
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adrv9026_gpio_12, // 38
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adrv9026_gpio_13, // 37
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adrv9026_gpio_14, // 36
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adrv9026_gpio_15, // 35
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adrv9026_gpio_16, // 34
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adrv9026_gpio_17, // 33
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adrv9026_gpio_18})); // 32
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assign gpio_i[ 7: 0] = gpio_o[ 7: 0];
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assign gpio_i[20: 8] = gpio_bd_i;
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assign gpio_bd_o = gpio_o[ 7: 0];
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assign spi_csn_adrv9026 = spi_csn[0];
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assign spi_csn_ad9528 = spi_csn[1];
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system_wrapper i_system_wrapper (
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.dac_fifo_bypass (gpio_o[69]),
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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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.core_clk (core_clk),
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.rx_data_0_n (rx_data_n[0]),
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.rx_data_0_p (rx_data_p[0]),
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.rx_data_1_n (rx_data_n[1]),
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.rx_data_1_p (rx_data_p[1]),
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.rx_data_2_n (rx_data_n[2]),
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.rx_data_2_p (rx_data_p[2]),
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.rx_data_3_n (rx_data_n[3]),
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.rx_data_3_p (rx_data_p[3]),
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.rx_ref_clk_0 (ref_clk),
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.rx_sync_0 (rx_sync),
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.rx_sysref_0 (sysref),
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.spi0_sclk (spi_clk),
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.spi0_csn (spi_csn),
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.spi0_miso (spi_miso),
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.spi0_mosi (spi_mosi),
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.spi1_sclk (),
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.spi1_csn (),
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.spi1_miso (1'b0),
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.spi1_mosi (),
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.tx_data_0_n (tx_data_n[0]),
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.tx_data_0_p (tx_data_p[0]),
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.tx_data_1_n (tx_data_n[1]),
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.tx_data_1_p (tx_data_p[1]),
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.tx_data_2_n (tx_data_n[2]),
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.tx_data_2_p (tx_data_p[2]),
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.tx_data_3_n (tx_data_n[3]),
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.tx_data_3_p (tx_data_p[3]),
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.tx_ref_clk_0 (ref_clk),
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.tx_sync_0 (tx_sync),
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.tx_sysref_0 (sysref));
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endmodule
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