module sbtm (input logic [11:0] a, output logic [10:0] ia_out); // bit partitions logic [3:0] x0; logic [2:0] x1; logic [3:0] x2; logic [2:0] x2_1cmp; // mem outputs logic [12:0] y0; logic [4:0] y1; // input to CPA logic [14:0] op1; logic [14:0] op2; logic [14:0] p; logic cout; assign x0 = a[10:7]; assign x1 = a[6:4]; assign x2 = a[3:0]; sbtm_a0 mem1 ({x0, x1}, y0); // 1s cmp per sbtm/stam assign x2_1cmp = x2[3] ? ~x2[2:0] : x2[2:0]; sbtm_a1 mem2 ({x0, x2_1cmp}, y1); assign op1 = {1'b0, y0, 1'b0}; // 1s cmp per sbtm/stam assign op2 = x2[3] ? {1'b1, {8{1'b1}}, ~y1, 1'b1} : {1'b0, 8'b0, y1, 1'b1}; // CPA bk15 cp1 (cout, p, op1, op2, 1'b0); //assign ia_out = {p[14:4], {53{1'b0}}}; assign ia_out = p[14:4]; endmodule // sbtm