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[/] [thor/] [trunk/] [bench/] [scratchmem.v] - Rev 23

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// ============================================================================
//        __
//   \\__/ o\    (C) 2012-2013  Robert Finch, Stratford
//    \  __ /    All rights reserved.
//     \/_//     robfinch<remove>@opencores.org
//       ||
//
//
// This source file is free software: you can redistribute it and/or modify 
// it under the terms of the GNU Lesser General Public License as published 
// by the Free Software Foundation, either version 3 of the License, or     
// (at your option) any later version.                                      
//                                                                          
// This source file 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, see <http://www.gnu.org/licenses/>.    
//                                                                          
// ============================================================================
//
module scratchmem(rst_i, clk_i, cyc_i, stb_i, ack_o, we_i, sel_i, adr_i, dat_i, dat_o);
parameter DBW=64;
input rst_i;
input clk_i;
input cyc_i;
input stb_i;
output ack_o;
input we_i;
input [DBW/8-1:0] sel_i;
input [DBW-1:0] adr_i;
input [DBW-1:0] dat_i;
output [DBW-1:0] dat_o;
reg [DBW-1:0] dat_o;
 
integer n;
 
reg [7:0] smemA [2047:0];
reg [7:0] smemB [2047:0];
reg [7:0] smemC [2047:0];
reg [7:0] smemD [2047:0];
generate
begin
if (DBW==64) begin
	reg [7:0] smemE [2047:0];
	reg [7:0] smemF [2047:0];
	reg [7:0] smemG [2047:0];
	reg [7:0] smemH [2047:0];
 
	initial begin
	for (n = 0; n < 2048; n = n + 1)
	begin
		smemA[n] = 0;
		smemB[n] = 0;
		smemC[n] = 0;
		smemD[n] = 0;
		smemE[n] = 0;
		smemF[n] = 0;
		smemG[n] = 0;
		smemH[n] = 0;
	end
	end
end
else begin
	initial begin
	for (n = 0; n < 2048; n = n + 1)
	begin
		smemA[n] = 0;
		smemB[n] = 0;
		smemC[n] = 0;
		smemD[n] = 0;
	end
	end
end
end
endgenerate
reg [13:3] radr;
 
 
wire cs = cyc_i && stb_i && adr_i[59:16]==44'h0000;
 
reg rdy,rdy1;
always @(posedge clk_i)
begin
	rdy1 <= cs;
	rdy <= rdy1 & cs;
end
assign ack_o = cs ? (we_i ? 1'b1 : rdy) : 1'b0;
 
 
always @(posedge clk_i)
	if (cs & we_i)
		$display ("wrote to scratchmem: %h=%h", adr_i, dat_i);
generate
begin
if (DBW==64) begin
always @(posedge clk_i)
	if (cs & we_i & sel_i[0])
		smemA[adr_i[13:3]] <= dat_i[7:0];
always @(posedge clk_i)
	if (cs & we_i & sel_i[1])
		smemB[adr_i[13:3]] <= dat_i[15:8];
always @(posedge clk_i)
	if (cs & we_i & sel_i[2])
		smemC[adr_i[13:3]] <= dat_i[23:16];
always @(posedge clk_i)
	if (cs & we_i & sel_i[3])
		smemD[adr_i[13:3]] <= dat_i[31:24];
//always @(posedge clk_i)
//	if (cs & we_i & sel_i[4])
//		smemE[adr_i[13:3]] <= dat_i[39:32];
//always @(posedge clk_i)
//	if (cs & we_i & sel_i[5])
//		smemF[adr_i[13:3]] <= dat_i[47:40];
//always @(posedge clk_i)
//	if (cs & we_i & sel_i[6])
//		smemG[adr_i[13:3]] <= dat_i[55:48];
//always @(posedge clk_i)
//	if (cs & we_i & sel_i[7])
//		smemH[adr_i[13:3]] <= dat_i[63:56];
end
else begin
always @(posedge clk_i)
	if (cs & we_i & sel_i[0])
		smemA[adr_i[12:2]] <= dat_i[7:0];
always @(posedge clk_i)
	if (cs & we_i & sel_i[1])
		smemB[adr_i[12:2]] <= dat_i[15:8];
always @(posedge clk_i)
	if (cs & we_i & sel_i[2])
		smemC[adr_i[12:2]] <= dat_i[23:16];
always @(posedge clk_i)
	if (cs & we_i & sel_i[3])
		smemD[adr_i[12:2]] <= dat_i[31:24];
end
end
endgenerate
 
wire pe_cs;
edge_det u1(.rst(rst_i), .clk(clk_i), .ce(1'b1), .i(cs), .pe(pe_cs), .ne(), .ee() );
 
reg [13:3] ctr;
always @(posedge clk_i)
	if (pe_cs) begin
		if (DBW==64)
			ctr <= adr_i[13:3] + 12'd1;
		else
			ctr <= adr_i[12:2] + 12'd1;
	end
	else if (cs)
		ctr <= ctr + 12'd1;
 
always @(posedge clk_i)
	if (DBW==64)
		radr <= pe_cs ? adr_i[13:3] : ctr;
	else
		radr <= pe_cs ? adr_i[12:2] : ctr;
 
//assign dat_o = cs ? {smemH[radr],smemG[radr],smemF[radr],smemE[radr],
//				smemD[radr],smemC[radr],smemB[radr],smemA[radr]} : 64'd0;
 
always @(posedge clk_i)
if (cs) begin
//	if (DBW==64)
//		dat_o <= {smemH[radr],smemG[radr],smemF[radr],smemE[radr],
//					smemD[radr],smemC[radr],smemB[radr],smemA[radr]};
//	else
		dat_o <= {smemD[radr],smemC[radr],smemB[radr],smemA[radr]};
//	if (!we_i)
//		$display("read from scratchmem: %h=%h", radr, {smemH[radr],smemG[radr],smemF[radr],smemE[radr],
//				smemD[radr],smemC[radr],smemB[radr],smemA[radr]});
end
else
	dat_o <= {DBW{1'd0}};
 
endmodule
 

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