[6] | 1 | ////////////////////////////////////////////////////////////////////// |
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| 2 | //// //// |
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| 3 | //// eth_rxethmac.v //// |
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| 4 | //// //// |
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| 5 | //// This file is part of the Ethernet IP core project //// |
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| 6 | //// http://www.opencores.org/projects/ethmac/ //// |
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| 7 | //// //// |
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| 8 | //// Author(s): //// |
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| 9 | //// - Igor Mohor ([email protected]) //// |
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| 10 | //// - Novan Hartadi ([email protected]) //// |
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| 11 | //// - Mahmud Galela ([email protected]) //// |
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| 12 | //// //// |
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| 13 | //// All additional information is avaliable in the Readme.txt //// |
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| 14 | //// file. //// |
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| 15 | //// //// |
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| 16 | ////////////////////////////////////////////////////////////////////// |
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| 17 | //// //// |
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| 18 | //// Copyright (C) 2001 Authors //// |
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| 19 | //// //// |
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| 20 | //// This source file may be used and distributed without //// |
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| 21 | //// restriction provided that this copyright statement is not //// |
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| 22 | //// removed from the file and that any derivative work contains //// |
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| 23 | //// the original copyright notice and the associated disclaimer. //// |
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| 24 | //// //// |
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| 25 | //// This source file is free software; you can redistribute it //// |
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| 26 | //// and/or modify it under the terms of the GNU Lesser General //// |
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| 27 | //// Public License as published by the Free Software Foundation; //// |
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| 28 | //// either version 2.1 of the License, or (at your option) any //// |
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| 29 | //// later version. //// |
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| 30 | //// //// |
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| 31 | //// This source is distributed in the hope that it will be //// |
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| 32 | //// useful, but WITHOUT ANY WARRANTY; without even the implied //// |
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| 33 | //// warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR //// |
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| 34 | //// PURPOSE. See the GNU Lesser General Public License for more //// |
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| 35 | //// details. //// |
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| 36 | //// //// |
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| 37 | //// You should have received a copy of the GNU Lesser General //// |
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| 38 | //// Public License along with this source; if not, download it //// |
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| 39 | //// from http://www.opencores.org/lgpl.shtml //// |
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| 40 | //// //// |
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| 41 | ////////////////////////////////////////////////////////////////////// |
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| 42 | // |
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| 43 | // CVS Revision History |
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| 44 | // |
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| 45 | // $Log: not supported by cvs2svn $ |
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| 46 | // Revision 1.12 2004/04/26 15:26:23 igorm |
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| 47 | // - Bug connected to the TX_BD_NUM_Wr signal fixed (bug came in with the |
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| 48 | // previous update of the core. |
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| 49 | // - TxBDAddress is set to 0 after the TX is enabled in the MODER register. |
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| 50 | // - RxBDAddress is set to r_TxBDNum<<1 after the RX is enabled in the MODER |
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| 51 | // register. (thanks to Mathias and Torbjorn) |
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| 52 | // - Multicast reception was fixed. Thanks to Ulrich Gries |
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| 53 | // |
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| 54 | // Revision 1.11 2004/03/17 09:32:15 igorm |
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| 55 | // Multicast detection fixed. Only the LSB of the first byte is checked. |
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| 56 | // |
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| 57 | // Revision 1.10 2002/11/22 01:57:06 mohor |
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| 58 | // Rx Flow control fixed. CF flag added to the RX buffer descriptor. RxAbort |
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| 59 | // synchronized. |
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| 60 | // |
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| 61 | // Revision 1.9 2002/11/19 17:35:35 mohor |
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| 62 | // AddressMiss status is connecting to the Rx BD. AddressMiss is identifying |
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| 63 | // that a frame was received because of the promiscous mode. |
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| 64 | // |
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| 65 | // Revision 1.8 2002/02/16 07:15:27 mohor |
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| 66 | // Testbench fixed, code simplified, unused signals removed. |
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| 67 | // |
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| 68 | // Revision 1.7 2002/02/15 13:44:28 mohor |
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| 69 | // RxAbort is an output. No need to have is declared as wire. |
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| 70 | // |
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| 71 | // Revision 1.6 2002/02/15 11:17:48 mohor |
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| 72 | // File format changed. |
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| 73 | // |
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| 74 | // Revision 1.5 2002/02/14 20:48:43 billditt |
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| 75 | // Addition of new module eth_addrcheck.v |
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| 76 | // |
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| 77 | // Revision 1.4 2002/01/23 10:28:16 mohor |
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| 78 | // Link in the header changed. |
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| 79 | // |
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| 80 | // Revision 1.3 2001/10/19 08:43:51 mohor |
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| 81 | // eth_timescale.v changed to timescale.v This is done because of the |
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| 82 | // simulation of the few cores in a one joined project. |
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| 83 | // |
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| 84 | // Revision 1.2 2001/09/11 14:17:00 mohor |
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| 85 | // Few little NCSIM warnings fixed. |
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| 86 | // |
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| 87 | // Revision 1.1 2001/08/06 14:44:29 mohor |
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| 88 | // A define FPGA added to select between Artisan RAM (for ASIC) and Block Ram (For Virtex). |
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| 89 | // Include files fixed to contain no path. |
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| 90 | // File names and module names changed ta have a eth_ prologue in the name. |
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| 91 | // File eth_timescale.v is used to define timescale |
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| 92 | // All pin names on the top module are changed to contain _I, _O or _OE at the end. |
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| 93 | // Bidirectional signal MDIO is changed to three signals (Mdc_O, Mdi_I, Mdo_O |
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| 94 | // and Mdo_OE. The bidirectional signal must be created on the top level. This |
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| 95 | // is done due to the ASIC tools. |
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| 96 | // |
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| 97 | // Revision 1.1 2001/07/30 21:23:42 mohor |
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| 98 | // Directory structure changed. Files checked and joind together. |
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| 99 | // |
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| 100 | // Revision 1.1 2001/06/27 21:26:19 mohor |
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| 101 | // Initial release of the RxEthMAC module. |
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| 102 | // |
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| 103 | // |
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| 104 | // |
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| 105 | // |
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| 106 | // |
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| 107 | |
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| 108 | `include "timescale.v" |
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| 109 | |
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| 110 | |
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| 111 | module eth_rxethmac (MRxClk, MRxDV, MRxD, Reset, Transmitting, MaxFL, r_IFG, HugEn, DlyCrcEn, |
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| 112 | RxData, RxValid, RxStartFrm, RxEndFrm, ByteCnt, ByteCntEq0, ByteCntGreat2, |
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| 113 | ByteCntMaxFrame, CrcError, StateIdle, StatePreamble, StateSFD, StateData, |
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| 114 | MAC, r_Pro, r_Bro,r_HASH0, r_HASH1, RxAbort, AddressMiss, PassAll, ControlFrmAddressOK |
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| 115 | ); |
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| 116 | |
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| 117 | parameter Tp = 1; |
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| 118 | |
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| 119 | |
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| 120 | |
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| 121 | input MRxClk; |
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| 122 | input MRxDV; |
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| 123 | input [3:0] MRxD; |
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| 124 | input Transmitting; |
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| 125 | input HugEn; |
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| 126 | input DlyCrcEn; |
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| 127 | input [15:0] MaxFL; |
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| 128 | input r_IFG; |
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| 129 | input Reset; |
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| 130 | input [47:0] MAC; // Station Address |
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| 131 | input r_Bro; // broadcast disable |
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| 132 | input r_Pro; // promiscuous enable |
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| 133 | input [31:0] r_HASH0; // lower 4 bytes Hash Table |
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| 134 | input [31:0] r_HASH1; // upper 4 bytes Hash Table |
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| 135 | input PassAll; |
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| 136 | input ControlFrmAddressOK; |
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| 137 | |
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| 138 | output [7:0] RxData; |
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| 139 | output RxValid; |
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| 140 | output RxStartFrm; |
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| 141 | output RxEndFrm; |
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| 142 | output [15:0] ByteCnt; |
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| 143 | output ByteCntEq0; |
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| 144 | output ByteCntGreat2; |
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| 145 | output ByteCntMaxFrame; |
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| 146 | output CrcError; |
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| 147 | output StateIdle; |
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| 148 | output StatePreamble; |
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| 149 | output StateSFD; |
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| 150 | output [1:0] StateData; |
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| 151 | output RxAbort; |
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| 152 | output AddressMiss; |
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| 153 | |
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| 154 | reg [7:0] RxData; |
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| 155 | reg RxValid; |
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| 156 | reg RxStartFrm; |
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| 157 | reg RxEndFrm; |
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| 158 | reg Broadcast; |
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| 159 | reg Multicast; |
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| 160 | reg [5:0] CrcHash; |
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| 161 | reg CrcHashGood; |
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| 162 | reg DelayData; |
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| 163 | reg [7:0] LatchedByte; |
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| 164 | reg [7:0] RxData_d; |
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| 165 | reg RxValid_d; |
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| 166 | reg RxStartFrm_d; |
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| 167 | reg RxEndFrm_d; |
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| 168 | |
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| 169 | wire MRxDEqD; |
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| 170 | wire MRxDEq5; |
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| 171 | wire StateDrop; |
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| 172 | wire ByteCntEq1; |
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| 173 | wire ByteCntEq2; |
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| 174 | wire ByteCntEq3; |
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| 175 | wire ByteCntEq4; |
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| 176 | wire ByteCntEq5; |
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| 177 | wire ByteCntEq6; |
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| 178 | wire ByteCntEq7; |
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| 179 | wire ByteCntSmall7; |
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| 180 | wire [31:0] Crc; |
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| 181 | wire Enable_Crc; |
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| 182 | wire Initialize_Crc; |
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| 183 | wire [3:0] Data_Crc; |
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| 184 | wire GenerateRxValid; |
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| 185 | wire GenerateRxStartFrm; |
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| 186 | wire GenerateRxEndFrm; |
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| 187 | wire DribbleRxEndFrm; |
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| 188 | wire [3:0] DlyCrcCnt; |
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| 189 | wire IFGCounterEq24; |
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| 190 | |
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| 191 | assign MRxDEqD = MRxD == 4'hd; |
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| 192 | assign MRxDEq5 = MRxD == 4'h5; |
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| 193 | |
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| 194 | |
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| 195 | // Rx State Machine module |
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| 196 | eth_rxstatem rxstatem1 (.MRxClk(MRxClk), .Reset(Reset), .MRxDV(MRxDV), .ByteCntEq0(ByteCntEq0), |
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| 197 | .ByteCntGreat2(ByteCntGreat2), .Transmitting(Transmitting), .MRxDEq5(MRxDEq5), |
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| 198 | .MRxDEqD(MRxDEqD), .IFGCounterEq24(IFGCounterEq24), .ByteCntMaxFrame(ByteCntMaxFrame), |
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| 199 | .StateData(StateData), .StateIdle(StateIdle), .StatePreamble(StatePreamble), |
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| 200 | .StateSFD(StateSFD), .StateDrop(StateDrop) |
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| 201 | ); |
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| 202 | |
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| 203 | |
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| 204 | // Rx Counters module |
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| 205 | eth_rxcounters rxcounters1 (.MRxClk(MRxClk), .Reset(Reset), .MRxDV(MRxDV), .StateIdle(StateIdle), |
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| 206 | .StateSFD(StateSFD), .StateData(StateData), .StateDrop(StateDrop), |
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| 207 | .StatePreamble(StatePreamble), .MRxDEqD(MRxDEqD), .DlyCrcEn(DlyCrcEn), |
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| 208 | .DlyCrcCnt(DlyCrcCnt), .Transmitting(Transmitting), .MaxFL(MaxFL), .r_IFG(r_IFG), |
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| 209 | .HugEn(HugEn), .IFGCounterEq24(IFGCounterEq24), .ByteCntEq0(ByteCntEq0), |
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| 210 | .ByteCntEq1(ByteCntEq1), .ByteCntEq2(ByteCntEq2), .ByteCntEq3(ByteCntEq3), |
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| 211 | .ByteCntEq4(ByteCntEq4), .ByteCntEq5(ByteCntEq5), .ByteCntEq6(ByteCntEq6), |
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| 212 | .ByteCntEq7(ByteCntEq7), .ByteCntGreat2(ByteCntGreat2), |
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| 213 | .ByteCntSmall7(ByteCntSmall7), .ByteCntMaxFrame(ByteCntMaxFrame), |
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| 214 | .ByteCntOut(ByteCnt) |
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| 215 | ); |
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| 216 | |
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| 217 | // Rx Address Check |
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| 218 | |
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| 219 | eth_rxaddrcheck rxaddrcheck1 |
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| 220 | (.MRxClk(MRxClk), .Reset( Reset), .RxData(RxData), |
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| 221 | .Broadcast (Broadcast), .r_Bro (r_Bro), .r_Pro(r_Pro), |
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| 222 | .ByteCntEq6(ByteCntEq6), .ByteCntEq7(ByteCntEq7), .ByteCntEq2(ByteCntEq2), |
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| 223 | .ByteCntEq3(ByteCntEq3), .ByteCntEq4(ByteCntEq4), .ByteCntEq5(ByteCntEq5), |
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| 224 | .HASH0(r_HASH0), .HASH1(r_HASH1), |
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| 225 | .CrcHash(CrcHash), .CrcHashGood(CrcHashGood), .StateData(StateData), |
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| 226 | .Multicast(Multicast), .MAC(MAC), .RxAbort(RxAbort), |
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| 227 | .RxEndFrm(RxEndFrm), .AddressMiss(AddressMiss), .PassAll(PassAll), |
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| 228 | .ControlFrmAddressOK(ControlFrmAddressOK) |
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| 229 | ); |
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| 230 | |
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| 231 | |
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| 232 | assign Enable_Crc = MRxDV & (|StateData & ~ByteCntMaxFrame); |
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| 233 | assign Initialize_Crc = StateSFD | DlyCrcEn & (|DlyCrcCnt[3:0]) & DlyCrcCnt[3:0] < 4'h9; |
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| 234 | |
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| 235 | assign Data_Crc[0] = MRxD[3]; |
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| 236 | assign Data_Crc[1] = MRxD[2]; |
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| 237 | assign Data_Crc[2] = MRxD[1]; |
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| 238 | assign Data_Crc[3] = MRxD[0]; |
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| 239 | |
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| 240 | |
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| 241 | // Connecting module Crc |
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| 242 | eth_crc crcrx (.Clk(MRxClk), .Reset(Reset), .Data(Data_Crc), .Enable(Enable_Crc), .Initialize(Initialize_Crc), |
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| 243 | .Crc(Crc), .CrcError(CrcError) |
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| 244 | ); |
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| 245 | |
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| 246 | |
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| 247 | |
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| 248 | // Latching CRC for use in the hash table |
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| 249 | |
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| 250 | always @ (posedge MRxClk) |
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| 251 | begin |
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| 252 | CrcHashGood <= #Tp StateData[0] & ByteCntEq6; |
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| 253 | end |
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| 254 | |
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| 255 | always @ (posedge MRxClk) |
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| 256 | begin |
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| 257 | if(Reset | StateIdle) |
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| 258 | CrcHash[5:0] <= #Tp 6'h0; |
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| 259 | else |
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| 260 | if(StateData[0] & ByteCntEq6) |
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| 261 | CrcHash[5:0] <= #Tp Crc[31:26]; |
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| 262 | end |
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| 263 | |
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| 264 | |
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| 265 | // Output byte stream |
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| 266 | always @ (posedge MRxClk or posedge Reset) |
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| 267 | begin |
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| 268 | if(Reset) |
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| 269 | begin |
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| 270 | RxData_d[7:0] <= #Tp 8'h0; |
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| 271 | DelayData <= #Tp 1'b0; |
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| 272 | LatchedByte[7:0] <= #Tp 8'h0; |
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| 273 | RxData[7:0] <= #Tp 8'h0; |
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| 274 | end |
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| 275 | else |
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| 276 | begin |
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| 277 | LatchedByte[7:0] <= #Tp {MRxD[3:0], LatchedByte[7:4]}; // Latched byte |
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| 278 | DelayData <= #Tp StateData[0]; |
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| 279 | |
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| 280 | if(GenerateRxValid) |
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| 281 | RxData_d[7:0] <= #Tp LatchedByte[7:0] & {8{|StateData}}; // Data goes through only in data state |
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| 282 | else |
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| 283 | if(~DelayData) |
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| 284 | RxData_d[7:0] <= #Tp 8'h0; // Delaying data to be valid for two cycles. Zero when not active. |
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| 285 | |
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| 286 | RxData[7:0] <= #Tp RxData_d[7:0]; // Output data byte |
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| 287 | end |
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| 288 | end |
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| 289 | |
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| 290 | |
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| 291 | |
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| 292 | always @ (posedge MRxClk or posedge Reset) |
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| 293 | begin |
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| 294 | if(Reset) |
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| 295 | Broadcast <= #Tp 1'b0; |
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| 296 | else |
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| 297 | begin |
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| 298 | if(StateData[0] & ~(&LatchedByte[7:0]) & ByteCntSmall7) |
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| 299 | Broadcast <= #Tp 1'b0; |
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| 300 | else |
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| 301 | if(StateData[0] & (&LatchedByte[7:0]) & ByteCntEq1) |
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| 302 | Broadcast <= #Tp 1'b1; |
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| 303 | else |
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| 304 | if(RxAbort | RxEndFrm) |
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| 305 | Broadcast <= #Tp 1'b0; |
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| 306 | end |
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| 307 | end |
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| 308 | |
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| 309 | |
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| 310 | always @ (posedge MRxClk or posedge Reset) |
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| 311 | begin |
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| 312 | if(Reset) |
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| 313 | Multicast <= #Tp 1'b0; |
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| 314 | else |
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| 315 | begin |
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| 316 | if(StateData[0] & ByteCntEq1 & LatchedByte[0]) |
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| 317 | Multicast <= #Tp 1'b1; |
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| 318 | else if(RxAbort | RxEndFrm) |
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| 319 | Multicast <= #Tp 1'b0; |
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| 320 | end |
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| 321 | end |
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| 322 | |
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| 323 | |
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| 324 | assign GenerateRxValid = StateData[0] & (~ByteCntEq0 | DlyCrcCnt >= 4'h3); |
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| 325 | |
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| 326 | always @ (posedge MRxClk or posedge Reset) |
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| 327 | begin |
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| 328 | if(Reset) |
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| 329 | begin |
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| 330 | RxValid_d <= #Tp 1'b0; |
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| 331 | RxValid <= #Tp 1'b0; |
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| 332 | end |
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| 333 | else |
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| 334 | begin |
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| 335 | RxValid_d <= #Tp GenerateRxValid; |
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| 336 | RxValid <= #Tp RxValid_d; |
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| 337 | end |
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| 338 | end |
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| 339 | |
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| 340 | |
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| 341 | assign GenerateRxStartFrm = StateData[0] & (ByteCntEq1 & ~DlyCrcEn | DlyCrcCnt == 4'h3 & DlyCrcEn); |
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| 342 | |
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| 343 | always @ (posedge MRxClk or posedge Reset) |
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| 344 | begin |
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| 345 | if(Reset) |
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| 346 | begin |
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| 347 | RxStartFrm_d <= #Tp 1'b0; |
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| 348 | RxStartFrm <= #Tp 1'b0; |
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| 349 | end |
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| 350 | else |
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| 351 | begin |
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| 352 | RxStartFrm_d <= #Tp GenerateRxStartFrm; |
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| 353 | RxStartFrm <= #Tp RxStartFrm_d; |
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| 354 | end |
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| 355 | end |
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| 356 | |
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| 357 | |
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| 358 | assign GenerateRxEndFrm = StateData[0] & (~MRxDV & ByteCntGreat2 | ByteCntMaxFrame); |
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| 359 | assign DribbleRxEndFrm = StateData[1] & ~MRxDV & ByteCntGreat2; |
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| 360 | |
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| 361 | |
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| 362 | always @ (posedge MRxClk or posedge Reset) |
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| 363 | begin |
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| 364 | if(Reset) |
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| 365 | begin |
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| 366 | RxEndFrm_d <= #Tp 1'b0; |
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| 367 | RxEndFrm <= #Tp 1'b0; |
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| 368 | end |
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| 369 | else |
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| 370 | begin |
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| 371 | RxEndFrm_d <= #Tp GenerateRxEndFrm; |
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| 372 | RxEndFrm <= #Tp RxEndFrm_d | DribbleRxEndFrm; |
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| 373 | end |
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| 374 | end |
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| 375 | |
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| 376 | |
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| 377 | endmodule |
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