module __float32__floor_with_denorms( input wire [31:0] f, output wire [31:0] out ); function automatic priority_sel_1b_2way (input reg [1:0] sel, input reg case0, input reg case1, input reg default_value); begin casez (sel) 2'b?1: begin priority_sel_1b_2way = case0; end 2'b10: begin priority_sel_1b_2way = case1; end 2'b00: begin priority_sel_1b_2way = default_value; end default: begin // Propagate X priority_sel_1b_2way = 1'dx; end endcase end endfunction function automatic [7:0] priority_sel_8b_2way (input reg [1:0] sel, input reg [7:0] case0, input reg [7:0] case1, input reg [7:0] default_value); begin casez (sel) 2'b?1: begin priority_sel_8b_2way = case0; end 2'b10: begin priority_sel_8b_2way = case1; end 2'b00: begin priority_sel_8b_2way = default_value; end default: begin // Propagate X priority_sel_8b_2way = 8'dx; end endcase end endfunction wire [7:0] f_bexp__1; wire [7:0] exp__1; wire literal_774; wire [22:0] f_fraction__1; wire [22:0] fractional_mask__1; wire [23:0] fraction_up__2; wire [7:0] literal_782; wire [7:0] EXPR_MASK; wire and_reduce_788; wire eq_790; wire eq_791; wire f_sign__1; wire [22:0] fraction_integral__2; wire [22:0] fraction_integral__4; wire and_797; wire or_805; wire nor_806; wire ult_809; wire [7:0] add_813; wire [22:0] sel_815; wire [31:0] tuple_831; assign f_bexp__1 = f[30:23]; assign exp__1 = f_bexp__1 + 8'h81; assign literal_774 = 1'h0; assign f_fraction__1 = f[22:0]; assign fractional_mask__1 = {{24{exp__1[7]}}, exp__1} >= 32'h0000_0017 ? 23'h00_0000 : 23'h7f_ffff >> {{24{exp__1[7]}}, exp__1}; assign fraction_up__2 = {literal_774, f_fraction__1} + {literal_774, fractional_mask__1}; assign literal_782 = 8'h00; assign EXPR_MASK = 8'hff; assign and_reduce_788 = &f_bexp__1[6:0]; assign eq_790 = f_fraction__1 == 23'h00_0000; assign eq_791 = f_bexp__1 == EXPR_MASK; assign f_sign__1 = f[31:31]; assign fraction_integral__2 = ~(~f_fraction__1 | fractional_mask__1); assign fraction_integral__4 = ~(~fraction_up__2[22:0] | fractional_mask__1); assign and_797 = f_bexp__1 == literal_782 & eq_790; assign or_805 = and_797 | eq_791 & eq_790; assign nor_806 = ~(~eq_791 | eq_790); assign ult_809 = f_bexp__1 < 8'h96; assign add_813 = f_bexp__1 + {7'h00, f_sign__1 & fraction_up__2[23]}; assign sel_815 = ult_809 ? (f_sign__1 ? fraction_integral__4 : fraction_integral__2) & {23{f_bexp__1[7] | and_reduce_788}} : f_fraction__1; assign tuple_831 = {~(nor_806 | ~f_sign__1), priority_sel_8b_2way({and_797, eq_791}, EXPR_MASK, literal_782, ult_809 ? (~(f_bexp__1[7] | and_reduce_788) ? {literal_774, {7{f_sign__1}}} : add_813) : f_bexp__1), {priority_sel_1b_2way({or_805, nor_806}, 1'h1, literal_774, sel_815[22]), sel_815[21:0] & {22{~(or_805 | nor_806)}}}}; assign out = tuple_831; endmodule