📄 add_sub_c6h.tdf
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--lpm_add_sub CARRY_CHAIN="MANUAL" CARRY_CHAIN_LENGTH=48 DEVICE_FAMILY="Cyclone" LPM_DIRECTION="DEFAULT" LPM_PIPELINE=0 LPM_REPRESENTATION="SIGNED" LPM_WIDTH=16 add_sub dataa datab result
--VERSION_BEGIN 5.1 cbx_cycloneii 2005:08:30:10:31:44:SJ cbx_lpm_add_sub 2005:09:30:12:13:06:SJ cbx_mgl 2005:10:09:07:39:04:SJ cbx_stratix 2005:10:07:15:53:08:SJ cbx_stratixii 2005:07:27:05:50:56:SJ VERSION_END
-- Copyright (C) 1991-2005 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 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 cyclone_lcell (aclr, aload, cin, clk, dataa, datab, datac, datad, ena, inverta, regcascin, sclr, sload)
WITH ( cin_used, lut_mask, operation_mode, output_mode, register_cascade_mode, sum_lutc_input, synch_mode)
RETURNS ( combout, cout, regout);
--synthesis_resources = lut 17
SUBDESIGN add_sub_c6h
(
add_sub : input;
dataa[15..0] : input;
datab[15..0] : input;
result[15..0] : output;
)
VARIABLE
add_sub_cella0 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella1 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella2 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella3 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella4 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella5 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella6 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella7 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella8 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella9 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella10 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella11 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella12 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella13 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella14 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "96E8",
operation_mode = "arithmetic",
sum_lutc_input = "cin"
);
add_sub_cella15 : cyclone_lcell
WITH (
cin_used = "true",
lut_mask = "9696",
operation_mode = "normal",
sum_lutc_input = "cin"
);
strx_lcell1 : cyclone_lcell
WITH (
cin_used = "false",
lut_mask = "00CC",
operation_mode = "arithmetic"
);
BEGIN
add_sub_cella[15..0].cin = ( add_sub_cella[14..0].cout, strx_lcell1.cout);
add_sub_cella[15..0].dataa = datab[];
add_sub_cella[15..0].datab = dataa[];
add_sub_cella[15..0].inverta = (! add_sub);
strx_lcell1.dataa = B"0";
strx_lcell1.datab = (! add_sub);
strx_lcell1.inverta = (! add_sub);
result[] = add_sub_cella[15..0].combout;
END;
--VALID FILE
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