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[/] [theia_gpu/] [branches/] [beta_1.2/] [rtl/] [IO/] [Module_WBM2MEM.v] - Rev 116
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`timescale 1ns / 1ps `include "aDefinitions.v" /********************************************************************************** Theia, Ray Cast Programable graphic Processing Unit. Copyright (C) 2010 Diego Valverde (diego.valverde.g@gmail.com) This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program; if not, write to the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA. ***********************************************************************************/ /** The Wish Bone bus has a 32 bit words. However our internal bus is 96 bits (32 * 3) bits wide for Data or 64 bits wide for Instructions (Hardvard Architecture). If the iStore signal is one, WBM2MEMUnit provides a means to store 2 or 3 incomming 32 bits frames into temporary Flip-Flops, and then store the 96 or 64 bit value into a specified location in the internal Instruction or Data Memory. If the iStore signal is zero, WBMinputFifo passes the 32 bit value comming from the WB bus, directly through the oData pin without storing it. */ module WBM2MEMUnit ( input wire Clock, input wire Reset, input wire iEnable, input wire iStore, input wire[`DATA_ADDRESS_WIDTH-1:0] iAdr_DataWriteBack, input wire iWBMDataAvailable, input wire iWriteBack_Set, //input wire[`WIDTH-1:0] iWBMInitialAddress, //input wire iSetWBMInitialAddress, input wire [`WIDTH-1:0] iWBMData, //Comes from WBM output wire[`WIDTH-1:0] oData, //Goes back to geo output wire oEnableWBM, //output wire[`WIDTH-1:0] oAddressWBM, output wire[`DATA_ADDRESS_WIDTH-1:0] oDataWriteAddress, inout wire [`DATA_ROW_WIDTH-1:0] oDataBus, output wire oDataWriteEnable, output wire oDone ); wire [`WIDTH-1:0] wVx; wire [`WIDTH-1:0] wVy; wire [`WIDTH-1:0] wVz; wire wDelayAfterWriteEnable; //assign oDataWriteAddress = iAdr_DataWriteBack; wire CounterClock; assign CounterClock = wDelayAfterWriteEnable | iWriteBack_Set; UPCOUNTER_POSEDGE # (`DATA_ADDRESS_WIDTH) UP1 ( .Clock(Clock), .Reset(iWriteBack_Set | Reset ), .Enable(CounterClock), .Initial(iAdr_DataWriteBack), .Q(oDataWriteAddress) ); wire[3:0] wSelXYZ; //Every time WBM says is done, then shift the bit //one position CIRCULAR_SHIFTLEFT_POSEDGE # (4) SHL_A ( .Clock( Clock ), .Enable(iWBMDataAvailable), .Reset(~iEnable | Reset ), .Initial(4'b1), .O(wSelXYZ) ); FFD_POSEDGE_SYNCRONOUS_RESET # (`WIDTH) FFD32_WBMFIFO_Vx ( .Clock( Clock ), .Reset( ~iEnable | Reset ), .Enable( wSelXYZ[0] & iWBMDataAvailable ), .D( iWBMData ), .Q( wVx ) ); //The data out is equal to the first vertex that has //been captured assign oData = wVx; FFD_POSEDGE_SYNCRONOUS_RESET # (`WIDTH) FFD32_WBMFIFO_Vy ( .Clock( Clock ), .Reset( ~iEnable | Reset), .Enable( wSelXYZ[1] & iWBMDataAvailable ), .D( iWBMData ), .Q( wVy ) ); FFD_POSEDGE_SYNCRONOUS_RESET # (`WIDTH) FFD32_WBMFIFO_Vz ( .Clock( Clock ), .Reset( ~iEnable | Reset ), .Enable( wSelXYZ[2] & iWBMDataAvailable), .D( iWBMData ), .Q( wVz ) ); assign oDataBus = {wVx,wVy,wVz}; assign oDataWriteEnable = wSelXYZ[3]; assign oDone = (iStore) ? wSelXYZ[3] : wSelXYZ[1]; assign oEnableWBM = ~oDone; FFD_POSEDGE_SYNCRONOUS_RESET # (1) FFD32_WBMFIFO_V2 ( .Clock( Clock ), .Reset( Reset ), .Enable( 1'b1 ), .D( wSelXYZ[3] ), .Q(wDelayAfterWriteEnable ) ); /* always @ (posedge iWBMDataAvailable) begin $display("%d Got something %h!",$time,iWBMData); $display("%d Got wSelXYZ %b!",$time,wSelXYZ); end */ endmodule //----------------------------------------------------
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