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Write a verilog code that implements the following funtions: E = A / 2 ^ i + B * 2 ^ j F = E

Write a verilog code that implements the following funtions:
E = A /2^i+ B *2^j
F = E * C
Where:
A, B, C and E are 8-bit unsigned numbers
i and j are 3-bit unsigned numbers.
F is 16-bit unsigned number
Design Specification:
Implement the design using Verilog language. Do not use the following math operations:
-,+,*,/, shift/rotate (>>,<<). You need to implement them yourself.
The top design name is mydesign and the port definition is illustrated below. You must
use the below testbench and template in your design.
timescale 1ns/100ps
module mydesign_tb;
reg [7:0] A;
reg [7:0] B;
reg [7:0] C;
reg [2:0] i, j;
wire [15:0] F;
// Mydesign one round in hardware
mydesign mydesign (
.A (A),
.B (B),
.C (C),
.i (i),
.j (j),
.F (F)
);
initial begin
$monitor ("(values are in HEX) A=%h B=%h C=%h i=%h j=%h F=%h", A, B, C,
i, j, F);
A=8'h06; B=8'h06; C=8'h06 ; i=3'h1; j=3'h1;
#10;
A=8'h01; B=8'h01; C=8'h01 ; i=3'h1; j=3'h1;
#10;
A=8'hFF; B=8'hFF; C=8'hFF ; i=3'h7; j=3'h7;
#10;
A=8'hFF; B=8'hFF; C=8'hFF ; i=3'h0; j=3'h0;
#10;
$stop;
end
endmodul
Use your own choice of multiplier algorithm to implement the multiplier

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