1 | module uwt_bior31
|
---|
2 | #(
|
---|
3 | parameter L = 1 // transform level
|
---|
4 | )
|
---|
5 | (
|
---|
6 | input wire clk, reset,
|
---|
7 | input wire data_ready,
|
---|
8 | input wire [31:0] x,
|
---|
9 | output wire [31:0] d,
|
---|
10 | output wire [31:0] a,
|
---|
11 | output wire [31:0] peak,
|
---|
12 | output wire [1:0] flag
|
---|
13 | );
|
---|
14 |
|
---|
15 | localparam index1 = 1 << (L - 1);
|
---|
16 | localparam index2 = 2 << (L - 1);
|
---|
17 | localparam index3 = 3 << (L - 1);
|
---|
18 | localparam peak_index = ((3 << (L - 1)) + 1) >> 1;
|
---|
19 | localparam peak_shift = ((L - 1) << 1) + (L - 1);
|
---|
20 | localparam zero = 32'h80000000;
|
---|
21 |
|
---|
22 | // Tapped delay line
|
---|
23 | reg [31:0] tap [index3:0];
|
---|
24 |
|
---|
25 | reg [31:0] d_reg, d_next;
|
---|
26 | reg [31:0] a_reg, a_next;
|
---|
27 | reg [31:0] peak_reg, peak_next;
|
---|
28 |
|
---|
29 | reg [1:0] flag_reg;
|
---|
30 |
|
---|
31 | integer i;
|
---|
32 |
|
---|
33 | always @(posedge clk)
|
---|
34 | begin
|
---|
35 | if (reset)
|
---|
36 | begin
|
---|
37 | d_reg <= 0;
|
---|
38 | a_reg <= 0;
|
---|
39 | peak_reg <= 0;
|
---|
40 | flag_reg <= 0;
|
---|
41 |
|
---|
42 | for(i = 0; i <= index3; i = i + 1)
|
---|
43 | begin
|
---|
44 | tap[i] <= 0;
|
---|
45 | end
|
---|
46 | end
|
---|
47 | else if (data_ready)
|
---|
48 | begin
|
---|
49 | d_reg <= d_next;
|
---|
50 | a_reg <= a_next;
|
---|
51 | peak_reg <= peak_next;
|
---|
52 |
|
---|
53 | flag_reg[0] <= (d_reg > zero) & (d_next <= zero);
|
---|
54 | flag_reg[1] <= (d_reg < zero) & (d_next >= zero);
|
---|
55 |
|
---|
56 | // Tapped delay line: shift one
|
---|
57 | for(i = 0; i < index3; i = i + 1)
|
---|
58 | begin
|
---|
59 | tap[i+1] <= tap[i];
|
---|
60 | end
|
---|
61 |
|
---|
62 | // Input in register 0
|
---|
63 | tap[0] <= x;
|
---|
64 | end
|
---|
65 | end
|
---|
66 |
|
---|
67 | always @*
|
---|
68 | begin
|
---|
69 | // Compute d and a with the filter coefficients.
|
---|
70 | // The coefficients are [1, 3, -3, -1] and [1, 3, 3, 1]
|
---|
71 |
|
---|
72 | d_next = zero - (tap[index3])
|
---|
73 | - (tap[index2] << 1) - tap[index2]
|
---|
74 | + (tap[index1] << 1) + tap[index1]
|
---|
75 | + (tap[0]);
|
---|
76 |
|
---|
77 | a_next = (tap[index3])
|
---|
78 | + (tap[index2] << 1) + tap[index2]
|
---|
79 | + (tap[index1] << 1) + tap[index1]
|
---|
80 | + (tap[0]);
|
---|
81 |
|
---|
82 | peak_next = (tap[peak_index] >> peak_shift);
|
---|
83 | end
|
---|
84 |
|
---|
85 | // output logic
|
---|
86 | assign d = d_reg;
|
---|
87 | assign a = a_reg;
|
---|
88 | assign peak = peak_reg;
|
---|
89 | assign flag = flag_reg;
|
---|
90 |
|
---|
91 | endmodule
|
---|