| module processing_element #( | |
| parameter int DATA_WIDTH = 32, | |
| parameter int ACC_WIDTH = 64 | |
| ) ( | |
| input logic clk, | |
| input logic rst_n, | |
| input logic en, | |
| input logic clear, | |
| input logic signed [DATA_WIDTH-1:0] a_in, | |
| input logic signed [DATA_WIDTH-1:0] b_in, | |
| output logic signed [DATA_WIDTH-1:0] a_out, | |
| output logic signed [DATA_WIDTH-1:0] b_out, | |
| output logic signed [ACC_WIDTH-1:0] acc_out | |
| ); | |
| logic signed [(2*DATA_WIDTH)-1:0] mul_full; | |
| logic signed [ACC_WIDTH-1:0] mul_ext; | |
| always_comb begin | |
| mul_full = a_in * b_in; | |
| mul_ext = {{(ACC_WIDTH-(2*DATA_WIDTH)){mul_full[(2*DATA_WIDTH)-1]}}, mul_full}; | |
| end | |
| always_ff @(posedge clk or negedge rst_n) begin | |
| if (!rst_n) begin | |
| a_out <= '0; | |
| b_out <= '0; | |
| acc_out <= '0; | |
| end else if (clear) begin | |
| a_out <= '0; | |
| b_out <= '0; | |
| acc_out <= '0; | |
| end else if (en) begin | |
| a_out <= a_in; | |
| b_out <= b_in; | |
| acc_out <= acc_out + mul_ext; | |
| end | |
| end | |
| endmodule | |