--lpm_counter DEVICE_FAMILY="Cyclone IV E" lpm_direction="UP" lpm_port_updown="PORT_UNUSED" lpm_width=6 aclr clock cnt_en q sclr --VERSION_BEGIN 13.0 cbx_cycloneii 2013:06:12:18:03:43:SJ cbx_lpm_add_sub 2013:06:12:18:03:43:SJ cbx_lpm_compare 2013:06:12:18:03:43:SJ cbx_lpm_counter 2013:06:12:18:03:43:SJ cbx_lpm_decode 2013:06:12:18:03:43:SJ cbx_mgl 2013:06:12:18:05:10:SJ cbx_stratix 2013:06:12:18:03:43:SJ cbx_stratixii 2013:06:12:18:03:43:SJ VERSION_END -- Copyright (C) 1991-2013 Altera Corporation -- Your use of Altera Corporation's design tools, logic functions -- and other software and tools, and its AMPP partner logic -- functions, and any output files from any of the foregoing -- (including device programming or simulation files), and any -- associated documentation or information are expressly subject -- to the terms and conditions of the Altera Program License -- Subscription Agreement, Altera MegaCore Function License -- Agreement, or other applicable license agreement, including, -- without limitation, that your use is for the sole purpose of -- programming logic devices manufactured by Altera and sold by -- Altera or its authorized distributors. Please refer to the -- applicable agreement for further details. FUNCTION cycloneive_lcell_comb (cin, dataa, datab, datac, datad) WITH ( DONT_TOUCH, LUT_MASK, SUM_LUTC_INPUT) RETURNS ( combout, cout); --synthesis_resources = lut 6 reg 6 SUBDESIGN cntr_1ob ( aclr : input; clock : input; cnt_en : input; q[5..0] : output; sclr : input; ) VARIABLE counter_comb_bita0 : cycloneive_lcell_comb WITH ( LUT_MASK = "5A90", SUM_LUTC_INPUT = "cin" ); counter_comb_bita1 : cycloneive_lcell_comb WITH ( LUT_MASK = "5A90", SUM_LUTC_INPUT = "cin" ); counter_comb_bita2 : cycloneive_lcell_comb WITH ( LUT_MASK = "5A90", SUM_LUTC_INPUT = "cin" ); counter_comb_bita3 : cycloneive_lcell_comb WITH ( LUT_MASK = "5A90", SUM_LUTC_INPUT = "cin" ); counter_comb_bita4 : cycloneive_lcell_comb WITH ( LUT_MASK = "5A90", SUM_LUTC_INPUT = "cin" ); counter_comb_bita5 : cycloneive_lcell_comb WITH ( LUT_MASK = "5A90", SUM_LUTC_INPUT = "cin" ); counter_reg_bit[5..0] : dffeas; aclr_actual : WIRE; clk_en : NODE; data[5..0] : NODE; external_cin : WIRE; s_val[5..0] : WIRE; safe_q[5..0] : WIRE; sload : NODE; sset : NODE; updown_dir : WIRE; BEGIN counter_comb_bita[5..0].cin = ( counter_comb_bita[4..0].cout, external_cin); counter_comb_bita[5..0].dataa = ( counter_reg_bit[5..0].q); counter_comb_bita[5..0].datab = ( updown_dir, updown_dir, updown_dir, updown_dir, updown_dir, updown_dir); counter_comb_bita[5..0].datad = ( B"1", B"1", B"1", B"1", B"1", B"1"); counter_reg_bit[].asdata = ((! sclr) & ((sset & s_val[]) # ((! sset) & data[]))); counter_reg_bit[].clk = clock; counter_reg_bit[].clrn = (! aclr_actual); counter_reg_bit[].d = ( counter_comb_bita[5..0].combout); counter_reg_bit[].ena = (clk_en & (((sclr # sset) # sload) # cnt_en)); counter_reg_bit[].sload = ((sclr # sset) # sload); aclr_actual = aclr; clk_en = VCC; data[] = GND; external_cin = B"1"; q[] = safe_q[]; s_val[] = B"111111"; safe_q[] = counter_reg_bit[].q; sload = GND; sset = GND; updown_dir = B"1"; END; --VALID FILE