embeded_2_separate_sync
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1 //如果是8位的话,只选择低8位传输
2 //因为同步码也是可以自己设置,所以把同步码设置成parameter最好
3 module embeded_2_separate_sync(
4 input clk,
5 input [15:0] din,
6 output[15:0] dout,
7 output h_sync_out,
8 output v_sync_out,
9 output h_no_sync_black_out,
10 output h_sync_black_out,
11 output h_sync_orign_out
12
13
14 );
15
16
17 parameter DATA_WIDTH = 16;
18 reg [DATA_WIDTH-1:0] v_data [6:0] ;
19
20 always @( posedge clk )
21 begin
22 v_data[0] <= din;
23 end
24 genvar i ;
25 generate
26
27 for( i = 0;i <= 5;i = i+1 )
28 begin :data_dly
29 always@( posedge clk )begin
30 v_data[i+1] <= v_data[i];
31 end
32 assign dout = v_data[6];
33
34 end
35 endgenerate
36 wire [6:0] time_ref_code;
37 reg [6:0] time_ref_code_r = 0;
38 assign time_ref_code [6] = (v_data[3][7:0] == 8‘hff ) ? 1‘b1 : 1‘b0;
39 assign time_ref_code [5] = (v_data[2][7:0] == 8‘h00 ) ? 1‘b1 : 1‘b0;
40 assign time_ref_code [4] = (v_data[1][7:0] == 8‘h00 ) ? 1‘b1 : 1‘b0;
41 assign time_ref_code[0] = (v_data[0][7:0] ==8‘h80) ?1‘b1 : 1‘b0;
42 assign time_ref_code[1] = (v_data[0][7:0] ==8‘h9d) ?1‘b1 : 1‘b0;
43 assign time_ref_code[2] = (v_data[0][7:0] ==8‘hab) ?1‘b1 : 1‘b0;
44 assign time_ref_code[3] = (v_data[0][7:0] ==8‘hb6) ?1‘b1 : 1‘b0;
45
46
47 always @( posedge clk )
48 begin
49 time_ref_code_r <= time_ref_code;
50 end
51
52 // reg h_sync;
53 // reg v_sync;
54 reg h_sync_r = 0;
55 reg v_sync_r = 0;
56 always @( posedge clk )
57 begin
58 case(time_ref_code_r )
59 7‘h71 :begin h_sync_r = 1‘b0; v_sync_r = 1‘b0; end
60 7‘h72 :begin h_sync_r = 1‘b1; v_sync_r = 1‘b0; end
61 7‘h74 :begin h_sync_r = 1‘b0; v_sync_r = 1‘b1; end
62 7‘h78 :begin h_sync_r = 1‘b1; v_sync_r = 1‘b1; end
63 default : begin h_sync_r = h_sync_r; v_sync_r = v_sync_r; end
64 endcase
65 end
66
67 reg [3:0] h_sync_dly = 0;
68 reg [3:0] v_sync_dly = 0;
69 always @( posedge clk )
70 begin
71 h_sync_dly[3:0] <= {h_sync_dly[2:0],h_sync_r};
72 v_sync_dly[3:0] <= {v_sync_dly[2:0],v_sync_r};
73 end
74
75 wire h_black ;
76 wire h_no_sync_black;
77 wire h_sync_black;
78 reg h_black_r = 0;
79 reg v_black_r = 0;
80 reg h_no_sync_black_r = 0;
81 reg h_sync_black_r = 0;
82 reg h_sync_orign_r = 0;
83 assign h_black = h_sync_r | h_sync_dly[3] ;
84 assign h_no_sync_black = h_sync_r & h_sync_dly[3] ;
85 assign h_sync_black = h_black^h_no_sync_black ;
86 always @( posedge clk )
87 begin
88 h_black_r <= h_black;
89 v_black_r <= v_sync_r;
90 h_no_sync_black_r <= h_no_sync_black;
91 h_sync_black_r <= h_sync_black;
92 h_sync_orign_r <= h_sync_r;
93 end
94
95
96
97
98 assign h_sync_out = h_black_r;
99 assign v_sync_out = v_black_r;
100 assign h_no_sync_black_out = h_no_sync_black_r;
101 assign h_sync_black_out = h_sync_black_r;
102 assign h_sync_orign_out = h_sync_orign_r;
103 endmodule
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