module keypoints( input clk, input rst_n, input data_valid, input [15:0] Diff1, input [15:0] Diff2, input [15:0] Diff3, output [31:0] Dout, output output_valid, output done); parameter N = 450, M = 450; parameter IDLE = 3'b000, STORE = 3'b001, LOAD = 3'b010, CALCULATE = 3'b011; integer i, j, k, p, q, o, count; reg [15:0] image1[0:(N*M)-1]; reg [15:0] image2[0:(N*M)-1]; reg [15:0] image3[0:(N*M)-1]; reg [15:0] w1[0:8]; reg [15:0] w2[0:8]; reg [15:0] w3[0:8]; reg [31:0] result; reg [2:0] PS; reg [2:0] NS; always @(posedge clk or negedge rst_n) begin if (~rst_n) PS <= IDLE; else PS <= NS; end always @(posedge clk) begin if(data_valid) begin image1[i] <= Diff1; image2[i] <= Diff2; image3[i] <= Diff3; i <= (i == (N*M)-1) ? 0 : i + 1; end else begin i <= i; end if(NS == CALCULATE) begin k = (k == M-2) ? 0 : k + 1; count = count + 1; end end always @(Diff1, data_valid, i, count, k, PS) begin case (PS) IDLE: begin i = 0; j = 0; k = 0; p = 0; q = 0; o = 0; count = 0; if (data_valid) NS = STORE; else NS = IDLE; end STORE: begin NS = (i == (N*M)-1) ? LOAD : STORE; end LOAD: begin o = 0; for(p = 0; p < 3; p = p+1) begin for(q = 0; q < 3; q = q+1) begin w1[o] = image1[j + (p*M) + q]; w2[o] = image2[j + (p*M) + q]; w3[o] = image3[j + (p*M) + q]; o = o + 1; end end NS = CALCULATE; end CALCULATE: begin //result = ((w2[4] > w1[0] && w2[4] > w1[1] && w2[4] > w1[2] && w2[4] > w1[3] && w2[4] > w1[4] && w2[4] > w1[5] && w2[4] > w1[6] && w2[4] > w1[7] && w2[4] > w1[8] && w2[4] > w2[0] && w2[4] > w2[1] && w2[4] > w2[2] && w2[4] > w2[3] && w2[4] > w2[5] && w2[4] > w2[6] && w2[4] > w2[7] && w2[4] > w2[8] && w2[4] > w3[0] && w2[4] > w3[1] && w2[4] > w3[2] && w2[4] > w3[3] && w2[4] > w3[4] && w2[4] > w3[5] && w2[4] > w3[6] && w2[4] > w3[7] && w2[4] > w3[8]) || (w2[4] < w1[0] && w2[4] < w1[1] && w2[4] < w1[2] && w2[4] < w1[3] && w2[4] < w1[4] && w2[4] < w1[5] && w2[4] < w1[6] && w2[4] < w1[7] && w2[4] < w1[8] && w2[4] < w2[0] && w2[4] < w2[1] && w2[4] < w2[2] && w2[4] < w2[3] && w2[4] < w2[5] && w2[4] < w2[6] && w2[4] < w2[7] && w2[4] < w2[8] && w2[4] < w3[0] && w2[4] < w3[1] && w2[4] < w3[2] && w2[4] < w3[3] && w2[4] < w3[4] && w2[4] < w3[5] && w2[4] < w3[6] && w2[4] < w3[7] && w2[4] < w3[8])) ? 8'hff : 8'h00; result = (w2[4] < w1[0] && w2[4] < w1[1] && w2[4] < w1[2] && w2[4] < w1[3] && w2[4] < w1[4] && w2[4] < w1[5] && w2[4] < w1[6] && w2[4] < w1[7] && w2[4] < w1[8] && w2[4] < w2[0] && w2[4] < w2[1] && w2[4] < w2[2] && w2[4] < w2[3] && w2[4] < w2[5] && w2[4] < w2[6] && w2[4] < w2[7] && w2[4] < w2[8] && w2[4] < w3[0] && w2[4] < w3[1] && w2[4] < w3[2] && w2[4] < w3[3] && w2[4] < w3[4] && w2[4] < w3[5] && w2[4] < w3[6] && w2[4] < w3[7] && w2[4] < w3[8]) ? j : 8'h00; j = (k == 0) ? j + 3 : j + 1; NS = (count == (N-2)*(M-2)) ? IDLE : LOAD; end endcase end assign output_valid = (PS==CALCULATE && result != 8'h00) ? 1'b1 : 1'b0; assign Dout = (PS==CALCULATE) ? result : 8'hzz; assign done = (count == (N-2)*(M-2)) ? 1'b1 : 1'b0; endmodule