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1`define ADDR_DIV 16'hFF04
2`define ADDR_TIMA 16'hFF05
3`define ADDR_TMA 16'hFF06
4`define ADDR_TAC 16'hFF07
5
6module Timer(
7 input clk,
8 input wr,
9 input rd,
10 input [15:0] addr,
11 inout [7:0] data,
12 output reg irq = 0);
13
14 reg rdlatch = 0;
15 reg [15:0] addrlatch = 0;
16 reg [7:0] tima = 0, tma = 0, tac = 0, div = 0;
17 reg ovf = 0;
18 reg [9:0] clkdv = 0;
19
20 wire is_tima = addrlatch == `ADDR_TIMA;
21 wire is_tma = addrlatch == `ADDR_TMA;
22 wire is_tac = addrlatch == `ADDR_TAC;
23
24 assign data = rdlatch ?
25 is_tima ? tima :
26 is_tma ? tma :
27 is_tac ? tac :
28 8'bzzzzzzzz :
29 8'bzzzzzzzz;
30
31 wire cksel = tac[2] ?
32 (tac[1:0] == 2'b00) ? (clkdv == 10'b0) :
33 (tac[1:0] == 2'b01) ? (clkdv[3:0] == 4'b0) :
34 (tac[1:0] == 2'b10) ? (clkdv[5:0] == 6'b0) :
35 (clkdv[7:0] == 8'b0) :
36 0;
37
38 always @ (posedge clk)
39 begin
40 rdlatch <= rd;
41 addrlatch <= addr;
42
43 if(wr) begin
44 case(addr)
45 `ADDR_DIV: div <= 8'b0;
46 `ADDR_TIMA: tima <= data;
47 `ADDR_TMA: tma <= data;
48 `ADDR_TAC: tac <= data;
49 endcase
50 end
51 else begin
52 if(ovf) begin
53 tima <= tma;
54 ovf <= 0;
55 irq <= 1;
56 end
57 else begin
58 if(cksel)
59 {ovf,tima} <= {1'b0,tima} + 1;
60 if(irq)
61 irq <= 0;
62 end
63
64 if(clkdv[7:0] == 8'b0)
65 div <= div + 1;
66 end
67 clkdv <= clkdv + 1;
68 end
69
70endmodule
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