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1module AddrMon(
2 input [15:0] addr,
3 input clk,
6c46357c 4 input [3:0] periods,
ff7fd7f2 5 output reg [3:0] digit,
6c46357c 6 output wire [7:0] out,
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7 input freeze
8 );
9
9c834ff2 10 reg [5:0] clkdv;
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11 reg [1:0] dcount;
12
13 reg [15:0] latch = 0;
14
15 wire [3:0] curval =
16 (dcount == 2'b00) ? latch[3:0] :
17 (dcount == 2'b01) ? latch[7:4] :
18 (dcount == 2'b10) ? latch[11:8] :
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19 latch[15:12];
20
21 reg [6:0] odigit;
22 assign out = {odigit,
23 ~((dcount == 2'b00) ? periods[0] :
24 (dcount == 2'b01) ? periods[1] :
25 (dcount == 2'b10) ? periods[2] :
26 periods[3]) };
ff7fd7f2 27
68ce013e 28 always @ (posedge clk) begin
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29 if (clkdv == 31) begin
30 clkdv <= 0;
31 dcount <= dcount + 1;
ff7fd7f2 32
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33 case(dcount)
34 2'b00: digit <= 4'b1110;
35 2'b01: digit <= 4'b1101;
36 2'b10: digit <= 4'b1011;
37 2'b11: digit <= 4'b0111;
38 endcase
ff7fd7f2 39
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40 case(curval)
41 /* ABCDEFGP */
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42 4'h0: odigit <= ~8'b1111110;
43 4'h1: odigit <= ~8'b0110000;
44 4'h2: odigit <= ~8'b1101101;
45 4'h3: odigit <= ~8'b1111001;
46 4'h4: odigit <= ~8'b0110011;
47 4'h5: odigit <= ~8'b1011011;
48 4'h6: odigit <= ~8'b1011111;
49 4'h7: odigit <= ~8'b1110000;
50 4'h8: odigit <= ~8'b1111111;
51 4'h9: odigit <= ~8'b1111011;
52 4'hA: odigit <= ~8'b1110111;
53 4'hB: odigit <= ~8'b0011111;
54 4'hC: odigit <= ~8'b1001110;
55 4'hD: odigit <= ~8'b0111101;
56 4'hE: odigit <= ~8'b1001111;
57 4'hF: odigit <= ~8'b1000111;
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58 endcase
59 end else
60 clkdv <= clkdv + 1;
6c46357c 61
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62 if (~freeze)
63 latch <= addr;
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64 end
65endmodule
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