module stitcher( input clk, input rst_n, input left_data_valid, input [7:0] left_data, input right_data_valid, input [7:0] right_data, input keypoint_valid, input [31:0] left_keypoint, input [31:0] right_keypoint, output data_valid, output [7:0] data); reg [7:0] L_DATA[0:(3*N*M - 1)]; reg [7:0] R_DATA[0:(3*N*M - 1)]; reg [7:0] IMAGE[0:(6*N*M - 1)]; reg [7:0] pixel_value; reg [7:0] out; reg [2:0] PS, NS; parameter IDLE = 3'b000, STORE = 3'b001, LOAD = 3'b010, COMPUTE = 3'b011, BLEND = 3'b100, DISPLAY = 3'b101; parameter N = 450, M = 450; integer i, j, k, p, q, o, row1, row2, col1, col2, ref_keypoint1, ref_keypoint2; always @(posedge clk or negedge rst_n) begin if (~rst_n) PS <= IDLE; else PS <= NS; end always @(posedge clk) begin if (left_data_valid) begin L_DATA[i] <= left_data; i <= i + 1; end else i <= i; end always @(posedge clk) begin if (right_data_valid) begin R_DATA[i] <= right_data; j <= j + 1; end else j <= j; end always @(left_data_valid, right_data_valid,left_data, right_data, keypoint_valid, PS) begin case (PS) IDLE: begin i = 0; j = 0; k = 0; p = 0; q = 0; o = 0; row1 = 0; row2 = 0; col1 = 0; col2 = 0; ref_keypoint1 = 0; ref_keypoint2 = 0; pixel_value = 0; for(p = 0; p < 6*N*M; p = p+1) begin IMAGE[p] = 0; end if (left_data_valid || right_data_valid) NS = STORE; else NS = IDLE; end STORE: begin NS = (i == 3*N*M - 1 && j == 3*N*M - 1) ? LOAD : STORE; end LOAD: begin ref_keypoint1 = (keypoint_valid == 1'b1) ? left_keypoint : ref_keypoint1; ref_keypoint2 = (keypoint_valid == 1'b1) ? right_keypoint : ref_keypoint2; NS = (keypoint_valid == 1'b1) ? COMPUTE : LOAD; end COMPUTE: begin row1 = ref_keypoint1/M; row2 = ref_keypoint2/M; col1 = 3*(ref_keypoint1 - (row1*M)); col2 = 3*(ref_keypoint2 - (row2*M)); NS = BLEND; end BLEND: begin pixel_value = (q <= col1) ? L_DATA[q + (o*3*M)] : R_DATA[col2 + (q - col1) + (o*3*M)]; IMAGE[q + (6*o*M)] = pixel_value; o = (q == (((3*M)-col2)+col1)-1) ? o + 1 : o; q = (q == (((3*M)-col2)+col1)-1) ? 0 : q + 1; NS = DISPLAY; end DISPLAY: begin out = IMAGE[k]; k = k + 1; NS = (k == 6*N*M) ? IDLE : BLEND; end endcase end assign data_valid = (PS == DISPLAY) ? 1'b1 : 1'b0; assign data = (PS == DISPLAY) ? out : 8'hzz; endmodule