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julius |
//////////////////////////////////////////////////////////////////////
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//// ////
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//// OR1200's Instruction TLB ////
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//// ////
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//// This file is part of the OpenRISC 1200 project ////
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//// http://www.opencores.org/cores/or1k/ ////
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//// ////
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//// Description ////
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//// Instantiation of ITLB. ////
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//// ////
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//// To Do: ////
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//// - make it smaller and faster ////
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//// ////
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//// Author(s): ////
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//// - Damjan Lampret, lampret@opencores.org ////
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//// ////
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//////////////////////////////////////////////////////////////////////
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//// ////
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//// Copyright (C) 2000 Authors and OPENCORES.ORG ////
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//// ////
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//// This source file may be used and distributed without ////
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//// restriction provided that this copyright statement is not ////
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//// removed from the file and that any derivative work contains ////
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//// the original copyright notice and the associated disclaimer. ////
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//// ////
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//// This source file is free software; you can redistribute it ////
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//// and/or modify it under the terms of the GNU Lesser General ////
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//// Public License as published by the Free Software Foundation; ////
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//// either version 2.1 of the License, or (at your option) any ////
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//// later version. ////
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//// ////
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//// This source is distributed in the hope that it will be ////
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//// useful, but WITHOUT ANY WARRANTY; without even the implied ////
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//// warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR ////
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//// PURPOSE. See the GNU Lesser General Public License for more ////
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//// details. ////
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//// ////
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//// You should have received a copy of the GNU Lesser General ////
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//// Public License along with this source; if not, download it ////
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//// from http://www.opencores.org/lgpl.shtml ////
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//// ////
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//////////////////////////////////////////////////////////////////////
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//
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// CVS Revision History
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//
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// $Log: or1200_immu_tlb.v,v $
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// Revision 2.0 2010/06/30 11:00:00 ORSoC
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// Minor update:
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// Bugs fixed, coding style changed.
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//
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// Revision 1.9 2004/06/08 18:17:36 lampret
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// Non-functional changes. Coding style fixes.
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//
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// Revision 1.8 2004/04/05 08:29:57 lampret
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// Merged branch_qmem into main tree.
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//
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// Revision 1.6.4.1 2003/12/09 11:46:48 simons
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// Mbist nameing changed, Artisan ram instance signal names fixed, some synthesis waning fixed.
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//
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// Revision 1.6 2002/10/28 16:34:32 mohor
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// RAMs wrong connected to the BIST scan chain.
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//
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// Revision 1.5 2002/10/17 20:04:40 lampret
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// Added BIST scan. Special VS RAMs need to be used to implement BIST.
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//
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// Revision 1.4 2002/08/14 06:23:50 lampret
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// Disabled ITLB translation when 1) doing access to ITLB SPRs or 2) crossing page. This modification was tested only with parts of IMMU test - remaining test cases needs to be run.
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//
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// Revision 1.3 2002/02/11 04:33:17 lampret
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// Speed optimizations (removed duplicate _cyc_ and _stb_). Fixed D/IMMU cache-inhibit attr.
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//
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// Revision 1.2 2002/01/28 01:16:00 lampret
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// Changed 'void' nop-ops instead of insn[0] to use insn[16]. Debug unit stalls the tick timer. Prepared new flag generation for add and and insns. Blocked DC/IC while they are turned off. Fixed I/D MMU SPRs layout except WAYs. TODO: smart IC invalidate, l.j 2 and TLB ways.
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//
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// Revision 1.1 2002/01/03 08:16:15 lampret
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// New prefixes for RTL files, prefixed module names. Updated cache controllers and MMUs.
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//
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// Revision 1.8 2001/10/21 17:57:16 lampret
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// Removed params from generic_XX.v. Added translate_off/on in sprs.v and id.v. Removed spr_addr from dc.v and ic.v. Fixed CR+LF.
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//
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// Revision 1.7 2001/10/14 13:12:09 lampret
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// MP3 version.
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//
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// Revision 1.1.1.1 2001/10/06 10:18:36 igorm
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// no message
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//
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//
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// synopsys translate_off
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`include "timescale.v"
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// synopsys translate_on
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`include "or1200_defines.v"
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//
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// Insn TLB
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//
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module or1200_immu_tlb(
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// Rst and clk
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clk, rst,
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// I/F for translation
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tlb_en, vaddr, hit, ppn, uxe, sxe, ci,
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`ifdef OR1200_BIST
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// RAM BIST
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mbist_si_i, mbist_so_o, mbist_ctrl_i,
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`endif
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// SPR access
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spr_cs, spr_write, spr_addr, spr_dat_i, spr_dat_o
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);
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parameter dw = `OR1200_OPERAND_WIDTH;
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parameter aw = `OR1200_OPERAND_WIDTH;
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//
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// I/O
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//
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//
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// Clock and reset
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//
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input clk;
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input rst;
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//
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// I/F for translation
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//
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input tlb_en;
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input [aw-1:0] vaddr;
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output hit;
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output [31:`OR1200_IMMU_PS] ppn;
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output uxe;
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output sxe;
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output ci;
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`ifdef OR1200_BIST
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//
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// RAM BIST
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//
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input mbist_si_i;
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input [`OR1200_MBIST_CTRL_WIDTH - 1:0] mbist_ctrl_i;
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output mbist_so_o;
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`endif
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//
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// SPR access
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//
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input spr_cs;
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input spr_write;
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input [31:0] spr_addr;
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input [31:0] spr_dat_i;
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output [31:0] spr_dat_o;
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//
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// Internal wires and regs
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//
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wire [`OR1200_ITLB_TAG] vpn;
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wire v;
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wire [`OR1200_ITLB_INDXW-1:0] tlb_index;
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wire tlb_mr_en;
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wire tlb_mr_we;
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wire [`OR1200_ITLBMRW-1:0] tlb_mr_ram_in;
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wire [`OR1200_ITLBMRW-1:0] tlb_mr_ram_out;
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wire tlb_tr_en;
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wire tlb_tr_we;
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wire [`OR1200_ITLBTRW-1:0] tlb_tr_ram_in;
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wire [`OR1200_ITLBTRW-1:0] tlb_tr_ram_out;
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// BIST
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`ifdef OR1200_BIST
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wire itlb_mr_ram_si;
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wire itlb_mr_ram_so;
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wire itlb_tr_ram_si;
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wire itlb_tr_ram_so;
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`endif
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//
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// Implemented bits inside match and translate registers
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//
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// itlbwYmrX: vpn 31-19 v 0
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// itlbwYtrX: ppn 31-13 uxe 7 sxe 6
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//
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// itlb memory width:
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// 19 bits for ppn
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// 13 bits for vpn
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// 1 bit for valid
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// 2 bits for protection
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// 1 bit for cache inhibit
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//
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// Enable for Match registers
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//
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assign tlb_mr_en = tlb_en | (spr_cs & !spr_addr[`OR1200_ITLB_TM_ADDR]);
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//
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// Write enable for Match registers
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//
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assign tlb_mr_we = spr_cs & spr_write & !spr_addr[`OR1200_ITLB_TM_ADDR];
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//
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// Enable for Translate registers
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//
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assign tlb_tr_en = tlb_en | (spr_cs & spr_addr[`OR1200_ITLB_TM_ADDR]);
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//
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// Write enable for Translate registers
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//
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assign tlb_tr_we = spr_cs & spr_write & spr_addr[`OR1200_ITLB_TM_ADDR];
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//
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// Output to SPRS unit
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//
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assign spr_dat_o = (!spr_write & !spr_addr[`OR1200_ITLB_TM_ADDR]) ?
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{vpn, tlb_index, {`OR1200_ITLB_TAGW-7{1'b0}}, 1'b0, 5'b00000, v} :
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(!spr_write & spr_addr[`OR1200_ITLB_TM_ADDR]) ?
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{ppn, {`OR1200_IMMU_PS-8{1'b0}}, uxe, sxe, {4{1'b0}}, ci, 1'b0} :
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32'h00000000;
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//
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// Assign outputs from Match registers
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//
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assign {vpn, v} = tlb_mr_ram_out;
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//
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// Assign to Match registers inputs
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//
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assign tlb_mr_ram_in = {spr_dat_i[`OR1200_ITLB_TAG], spr_dat_i[`OR1200_ITLBMR_V_BITS]};
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//
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// Assign outputs from Translate registers
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//
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assign {ppn, uxe, sxe, ci} = tlb_tr_ram_out;
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//
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// Assign to Translate registers inputs
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//
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assign tlb_tr_ram_in = {spr_dat_i[31:`OR1200_IMMU_PS],
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spr_dat_i[`OR1200_ITLBTR_UXE_BITS],
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spr_dat_i[`OR1200_ITLBTR_SXE_BITS],
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spr_dat_i[`OR1200_ITLBTR_CI_BITS]};
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//
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// Generate hit
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//
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assign hit = (vpn == vaddr[`OR1200_ITLB_TAG]) & v;
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//
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// TLB index is normally vaddr[18:13]. If it is SPR access then index is
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// spr_addr[5:0].
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//
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assign tlb_index = spr_cs ? spr_addr[`OR1200_ITLB_INDXW-1:0] : vaddr[`OR1200_ITLB_INDX];
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`ifdef OR1200_BIST
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assign itlb_mr_ram_si = mbist_si_i;
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assign itlb_tr_ram_si = itlb_mr_ram_so;
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assign mbist_so_o = itlb_tr_ram_so;
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`endif
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//
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// Instantiation of ITLB Match Registers
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//
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or1200_spram #
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(
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.aw(6),
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.dw(14)
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)
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itlb_mr_ram
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(
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.clk(clk),
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`ifdef OR1200_BIST
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// RAM BIST
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.mbist_si_i(itlb_mr_ram_si),
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.mbist_so_o(itlb_mr_ram_so),
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.mbist_ctrl_i(mbist_ctrl_i),
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`endif
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.ce(tlb_mr_en),
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.we(tlb_mr_we),
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//.oe(1'b1),
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.addr(tlb_index),
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.di(tlb_mr_ram_in),
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.doq(tlb_mr_ram_out)
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);
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//
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// Instantiation of ITLB Translate Registers
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//
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or1200_spram #
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(
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.aw(6),
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.dw(22)
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)
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itlb_tr_ram
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(
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.clk(clk),
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`ifdef OR1200_BIST
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// RAM BIST
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.mbist_si_i(itlb_tr_ram_si),
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.mbist_so_o(itlb_tr_ram_so),
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.mbist_ctrl_i(mbist_ctrl_i),
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`endif
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.ce(tlb_tr_en),
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.we(tlb_tr_we),
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//.oe(1'b1),
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.addr(tlb_index),
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.di(tlb_tr_ram_in),
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.doq(tlb_tr_ram_out)
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);
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endmodule
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