git-svn-id: http://moon:8086/svn/vhdl/trunk@1099 cc03376c-175c-47c8-b038-4cd826a8556b
1622 lines
79 KiB
VHDL
1622 lines
79 KiB
VHDL
-- Copyright (C) 1991-2010 Altera Corporation
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-- This simulation model contains highly confidential and
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-- proprietary information of Altera and is being provided
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-- in accordance with and subject to the protections of the
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-- applicable Altera Program License Subscription Agreement
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-- which governs its use and disclosure. Your use of Altera
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-- Corporation's design tools, logic functions and other
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-- software and tools, and its AMPP partner logic functions,
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-- and any output files any of the foregoing (including device
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-- programming or simulation files), and any associated
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-- documentation or information are expressly subject to the
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-- terms and conditions of the Altera Program License Subscription
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-- Agreement, Altera MegaCore Function License Agreement, or other
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-- applicable license agreement, including, without limitation,
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-- that your use is for the sole purpose of simulating designs for
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-- use exclusively in logic devices manufactured by Altera and sold
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-- by Altera or its authorized distributors. Please refer to the
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-- applicable agreement for further details. Altera products and
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-- services are protected under numerous U.S. and foreign patents,
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-- maskwork rights, copyrights and other intellectual property laws.
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-- Altera assumes no responsibility or liability arising out of the
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-- application or use of this simulation model.
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library ieee;
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use ieee.std_logic_1164.all;
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package altera_lnsim_components is
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component altera_pll
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generic(
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reference_clock_frequency: string := "0 ps";
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fractional_vco_multiplier : string := "false";
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pll_type : string := "General";
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pll_subtype : string := "General";
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number_of_clocks: integer := 1;
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operation_mode : string := "internal feedback";
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deserialization_factor: integer := 4;
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data_rate : integer := 0;
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sim_additional_refclk_cycles_to_lock: integer := 0;
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output_clock_frequency0: string := "0 ps";
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phase_shift0 : string := "0 ps";
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duty_cycle0 : integer := 50;
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output_clock_frequency1: string := "0 ps";
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phase_shift1 : string := "0 ps";
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duty_cycle1 : integer := 50;
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output_clock_frequency2: string := "0 ps";
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phase_shift2 : string := "0 ps";
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duty_cycle2 : integer := 50;
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output_clock_frequency3: string := "0 ps";
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phase_shift3 : string := "0 ps";
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duty_cycle3 : integer := 50;
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output_clock_frequency4: string := "0 ps";
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phase_shift4 : string := "0 ps";
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duty_cycle4 : integer := 50;
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output_clock_frequency5: string := "0 ps";
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phase_shift5 : string := "0 ps";
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duty_cycle5 : integer := 50;
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output_clock_frequency6: string := "0 ps";
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phase_shift6 : string := "0 ps";
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duty_cycle6 : integer := 50;
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output_clock_frequency7: string := "0 ps";
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phase_shift7 : string := "0 ps";
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duty_cycle7 : integer := 50;
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output_clock_frequency8: string := "0 ps";
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phase_shift8 : string := "0 ps";
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duty_cycle8 : integer := 50;
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output_clock_frequency9: string := "0 ps";
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phase_shift9 : string := "0 ps";
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duty_cycle9 : integer := 50;
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output_clock_frequency10: string := "0 ps";
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phase_shift10 : string := "0 ps";
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duty_cycle10 : integer := 50;
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output_clock_frequency11: string := "0 ps";
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phase_shift11 : string := "0 ps";
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duty_cycle11 : integer := 50;
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output_clock_frequency12: string := "0 ps";
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phase_shift12 : string := "0 ps";
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duty_cycle12 : integer := 50;
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output_clock_frequency13: string := "0 ps";
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phase_shift13 : string := "0 ps";
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duty_cycle13 : integer := 50;
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output_clock_frequency14: string := "0 ps";
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phase_shift14 : string := "0 ps";
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duty_cycle14 : integer := 50;
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output_clock_frequency15: string := "0 ps";
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phase_shift15 : string := "0 ps";
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duty_cycle15 : integer := 50;
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output_clock_frequency16: string := "0 ps";
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phase_shift16 : string := "0 ps";
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duty_cycle16 : integer := 50;
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output_clock_frequency17: string := "0 ps";
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phase_shift17 : string := "0 ps";
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duty_cycle17 : integer := 50;
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m_cnt_hi_div :integer := 1;
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m_cnt_lo_div :integer := 1;
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m_cnt_bypass_en :string := "false";
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m_cnt_odd_div_duty_en :string := "false";
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n_cnt_hi_div :integer := 1;
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n_cnt_lo_div :integer := 1;
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n_cnt_bypass_en :string := "false";
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n_cnt_odd_div_duty_en :string := "false";
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c_cnt_hi_div0 :integer := 1;
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c_cnt_lo_div0 :integer := 1;
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c_cnt_bypass_en0 :string := "false";
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c_cnt_in_src0 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en0 :string := "false";
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c_cnt_prst0 :integer := 1;
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c_cnt_ph_mux_prst0 :integer := 0;
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c_cnt_hi_div1 :integer := 1;
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c_cnt_lo_div1 :integer := 1;
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c_cnt_bypass_en1 :string := "false";
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c_cnt_in_src1 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en1 :string := "false";
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c_cnt_prst1 :integer := 1;
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c_cnt_ph_mux_prst1 :integer := 0;
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c_cnt_hi_div2 :integer := 1;
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c_cnt_lo_div2 :integer := 1;
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c_cnt_bypass_en2 :string := "false";
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c_cnt_in_src2 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en2 :string := "false";
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c_cnt_prst2 :integer := 1;
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c_cnt_ph_mux_prst2 :integer := 0;
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c_cnt_hi_div3 :integer := 1;
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c_cnt_lo_div3 :integer := 1;
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c_cnt_bypass_en3 :string := "false";
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c_cnt_in_src3 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en3 :string := "false";
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c_cnt_prst3 :integer := 1;
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c_cnt_ph_mux_prst3 :integer := 0;
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c_cnt_hi_div4 :integer := 1;
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c_cnt_lo_div4 :integer := 1;
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c_cnt_bypass_en4 :string := "false";
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c_cnt_in_src4 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en4 :string := "false";
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c_cnt_prst4 :integer := 1;
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c_cnt_ph_mux_prst4 :integer := 0;
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c_cnt_hi_div5 :integer := 1;
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c_cnt_lo_div5 :integer := 1;
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c_cnt_bypass_en5 :string := "false";
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c_cnt_in_src5 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en5 :string := "false";
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c_cnt_prst5 :integer := 1;
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c_cnt_ph_mux_prst5 :integer := 0;
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c_cnt_hi_div6 :integer := 1;
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c_cnt_lo_div6 :integer := 1;
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c_cnt_bypass_en6 :string := "false";
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c_cnt_in_src6 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en6 :string := "false";
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c_cnt_prst6 :integer := 1;
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c_cnt_ph_mux_prst6 :integer := 0;
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c_cnt_hi_div7 :integer := 1;
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c_cnt_lo_div7 :integer := 1;
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c_cnt_bypass_en7 :string := "false";
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c_cnt_in_src7 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en7 :string := "false";
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c_cnt_prst7 :integer := 1;
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c_cnt_ph_mux_prst7 :integer := 0;
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c_cnt_hi_div8 :integer := 1;
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c_cnt_lo_div8 :integer := 1;
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c_cnt_bypass_en8 :string := "false";
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c_cnt_in_src8 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en8 :string := "false";
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c_cnt_prst8 :integer := 1;
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c_cnt_ph_mux_prst8 :integer := 0;
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c_cnt_hi_div9 :integer := 1;
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c_cnt_lo_div9 :integer := 1;
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c_cnt_bypass_en9 :string := "false";
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c_cnt_in_src9 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en9 :string := "false";
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c_cnt_prst9 :integer := 1;
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c_cnt_ph_mux_prst9 :integer := 0;
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c_cnt_hi_div10 :integer := 1;
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c_cnt_lo_div10 :integer := 1;
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c_cnt_bypass_en10 :string := "false";
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c_cnt_in_src10 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en10 :string := "false";
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c_cnt_prst10 :integer := 1;
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c_cnt_ph_mux_prst10 :integer := 0;
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c_cnt_hi_div11 :integer := 1;
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c_cnt_lo_div11 :integer := 1;
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c_cnt_bypass_en11 :string := "false";
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c_cnt_in_src11 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en11 :string := "false";
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c_cnt_prst11 :integer := 1;
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c_cnt_ph_mux_prst11 :integer := 0;
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c_cnt_hi_div12 :integer := 1;
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c_cnt_lo_div12 :integer := 1;
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c_cnt_bypass_en12 :string := "false";
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c_cnt_in_src12 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en12 :string := "false";
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c_cnt_prst12 :integer := 1;
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c_cnt_ph_mux_prst12 :integer := 0;
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c_cnt_hi_div13 :integer := 1;
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c_cnt_lo_div13 :integer := 1;
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c_cnt_bypass_en13 :string := "false";
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c_cnt_in_src13 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en13 :string := "false";
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c_cnt_prst13 :integer := 1;
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c_cnt_ph_mux_prst13 :integer := 0;
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c_cnt_hi_div14 :integer := 1;
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c_cnt_lo_div14 :integer := 1;
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c_cnt_bypass_en14 :string := "false";
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c_cnt_in_src14 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en14 :string := "false";
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c_cnt_prst14 :integer := 1;
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c_cnt_ph_mux_prst14 :integer := 0;
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c_cnt_hi_div15 :integer := 1;
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c_cnt_lo_div15 :integer := 1;
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c_cnt_bypass_en15 :string := "false";
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c_cnt_in_src15 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en15 :string := "false";
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c_cnt_prst15 :integer := 1;
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c_cnt_ph_mux_prst15 :integer := 0;
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c_cnt_hi_div16 :integer := 1;
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c_cnt_lo_div16 :integer := 1;
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c_cnt_bypass_en16 :string := "false";
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c_cnt_in_src16 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en16 :string := "false";
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c_cnt_prst16 :integer := 1;
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c_cnt_ph_mux_prst16 :integer := 0;
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c_cnt_hi_div17 :integer := 1;
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c_cnt_lo_div17 :integer := 1;
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c_cnt_bypass_en17 :string := "false";
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c_cnt_in_src17 :string := "ph_mux_clk";
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c_cnt_odd_div_duty_en17 :string := "false";
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c_cnt_prst17 :integer := 1;
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c_cnt_ph_mux_prst17 :integer := 0;
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pll_vco_div :integer := 0;
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pll_bwctrl :integer := 0;
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pll_cp_current :integer := 0;
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pll_fractional_division :integer := 0;
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pll_fractional_cout :integer := 24;
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pll_dsm_out_sel :string := "1st_order";
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pll_output_clk_frequency :string := "0 MHz";
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refclk1_frequency :string := "0 MHz";
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pll_clkin_0_src :string := "clk_0";
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pll_clkin_1_src :string := "clk_0";
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pll_clk_loss_sw_en :string := "false";
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pll_auto_clk_sw_en :string := "false";
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pll_manu_clk_sw_en :string := "false";
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mimic_fbclk_type :string:= "gclk";
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pll_fbclk_mux_1 :string:= "glb";
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pll_fbclk_mux_2 :string:= "fb_1";
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pll_m_cnt_in_src :string:= "ph_mux_clk";
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pll_vcoph_div : integer := 1;
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pll_clk_sw_dly :integer := 0;
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pll_slf_rst :string := "false";
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pll_bw_sel :string := "low";
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pll_extclk_0_cnt_src :string := "pll_extclk_cnt_src_vss";
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pll_extclk_1_cnt_src :string := "pll_extclk_cnt_src_vss";
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clock_name_0 : string := "";
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clock_name_1 : string := "";
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clock_name_2 : string := "";
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clock_name_3 : string := "";
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clock_name_4 : string := "";
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clock_name_5 : string := "";
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clock_name_6 : string := "";
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clock_name_7 : string := "";
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clock_name_8 : string := "";
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clock_name_global_0 : string := "false";
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clock_name_global_1 : string := "false";
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clock_name_global_2 : string := "false";
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clock_name_global_3 : string := "false";
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clock_name_global_4 : string := "false";
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clock_name_global_5 : string := "false";
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clock_name_global_6 : string := "false";
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clock_name_global_7 : string := "false";
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clock_name_global_8 : string := "false"
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);
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port(
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refclk : in std_logic := '0';
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refclk1 : in std_logic := '0';
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adjpllin : in std_logic := '0';
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cclk : in std_logic := '0';
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fbclk : in std_logic := '0';
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scanclk : in std_logic := '0';
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rst : in std_logic := '0';
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extswitch : in std_logic := '0';
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phase_en : in std_logic := '0';
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updn : in std_logic := '0';
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cntsel : in std_logic_vector(4 downto 0):= (others => '0');
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num_phase_shifts : in std_logic_vector(2 downto 0):= (others => '0');
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reconfig_to_pll : in std_logic_vector(63 downto 0) := (others => '0');
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outclk : out std_logic_vector(number_of_clocks - 1 downto 0);
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cascade_out : out std_logic_vector(number_of_clocks - 1 downto 0);
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fboutclk : out std_logic;
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locked : out std_logic;
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phase_done : out std_logic;
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activeclk : out std_logic;
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clkbad : out std_logic_vector(1 downto 0);
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phout : out std_logic_vector(7 downto 0);
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lvds_clk : out std_logic_vector(1 downto 0);
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loaden : out std_logic_vector(1 downto 0);
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extclk_out : out std_logic_vector(1 downto 0);
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reconfig_from_pll : out std_logic_vector(63 downto 0);
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zdbfbclk : inout std_logic
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);
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end component;
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component altera_pll_dps_lcell_comb
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generic(
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family : string := "Stratix V";
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lut_mask : std_logic_vector(63 downto 0) := (OTHERS => '1');
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dont_touch : string := "on"
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);
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port(
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dataa : in std_logic := '0';
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datab : in std_logic := '0';
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datac : in std_logic := '0';
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datad : in std_logic := '0';
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datae : in std_logic := '0';
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dataf : in std_logic := '0';
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combout : out std_logic
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);
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end component;
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component generic_pll
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generic(
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lpm_type : string := "generic_pll";
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duty_cycle : integer := 50;
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output_clock_frequency: string := "0 ps";
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phase_shift : string := "0 ps";
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reference_clock_frequency: string := "0 ps";
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sim_additional_refclk_cycles_to_lock: integer := 0;
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fractional_vco_multiplier: string := "false";
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use_khz : integer := 1;
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clock_name : string := "";
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clock_name_global : string := "false"
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);
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port(
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refclk : in std_logic := '0';
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rst : in std_logic := '0';
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fbclk : in std_logic := '0';
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writerefclkdata : in std_logic_vector(63 downto 0) := (others => '0');
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writeoutclkdata : in std_logic_vector(63 downto 0) := (others => '0');
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writephaseshiftdata : in std_logic_vector(63 downto 0) := (others => '0');
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writedutycycledata : in std_logic_vector(63 downto 0) := (others => '0');
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outclk : out std_logic;
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locked : out std_logic;
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fboutclk : out std_logic;
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readrefclkdata : out std_logic_vector(63 downto 0);
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readoutclkdata : out std_logic_vector(63 downto 0);
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readphaseshiftdata : out std_logic_vector(63 downto 0);
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readdutycycledata : out std_logic_vector(63 downto 0)
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);
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end component;
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component generic_cdr
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generic(
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reference_clock_frequency: string := "0 ps";
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output_clock_frequency: string := "0 ps"
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);
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port(
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extclk : in std_logic;
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ltd : in std_logic;
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ltr : in std_logic;
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ppmlock : in std_logic;
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refclk : in std_logic;
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rst : in std_logic;
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sd : in std_logic;
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rxp : in std_logic;
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clk90bdes : out std_logic;
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clk270bdes : out std_logic;
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clklow : out std_logic;
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deven : out std_logic;
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dodd : out std_logic;
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fref : out std_logic;
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pfdmodelock : out std_logic;
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rxplllock : out std_logic
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);
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end component;
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COMPONENT generic_m20k
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GENERIC (
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operation_mode : STRING := "single_port";
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mixed_port_feed_through_mode : STRING := "dont_care";
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ram_block_type : STRING := "auto";
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logical_ram_name : STRING := "ram_name";
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init_file : STRING := "init_file.hex";
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init_file_layout : STRING := "none";
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ecc_pipeline_stage_enabled : STRING := "false";
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enable_ecc : STRING := "false";
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width_eccstatus : INTEGER := 2;
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data_interleave_width_in_bits : INTEGER := 1;
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data_interleave_offset_in_bits : INTEGER := 1;
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port_a_logical_ram_depth : INTEGER := 0;
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port_a_logical_ram_width : INTEGER := 0;
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port_a_first_address : INTEGER := 0;
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port_a_last_address : INTEGER := 0;
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port_a_first_bit_number : INTEGER := 0;
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bist_ena : STRING := "false";
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port_a_address_clear : STRING := "none";
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port_a_data_out_clear : STRING := "none";
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port_a_data_in_clock : STRING := "clock0";
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port_a_address_clock : STRING := "clock0";
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port_a_write_enable_clock : STRING := "clock0";
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port_a_read_enable_clock : STRING := "clock0";
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port_a_byte_enable_clock : STRING := "clock0";
|
|
port_a_data_out_clock : STRING := "none";
|
|
port_a_data_width : INTEGER := 1;
|
|
port_a_address_width : INTEGER := 1;
|
|
port_a_byte_enable_mask_width : INTEGER := 1;
|
|
port_b_logical_ram_depth : INTEGER := 0;
|
|
port_b_logical_ram_width : INTEGER := 0;
|
|
port_b_first_address : INTEGER := 0;
|
|
port_b_last_address : INTEGER := 0;
|
|
port_b_first_bit_number : INTEGER := 0;
|
|
port_b_address_clear : STRING := "none";
|
|
port_b_data_out_clear : STRING := "none";
|
|
port_b_data_in_clock : STRING := "clock1";
|
|
port_b_address_clock : STRING := "clock1";
|
|
port_b_write_enable_clock : STRING := "clock1";
|
|
port_b_read_enable_clock : STRING := "clock1";
|
|
port_b_byte_enable_clock : STRING := "clock1";
|
|
port_b_data_out_clock : STRING := "none";
|
|
port_b_data_width : INTEGER := 1;
|
|
port_b_address_width : INTEGER := 1;
|
|
port_b_byte_enable_mask_width : INTEGER := 1;
|
|
port_a_read_during_write_mode : STRING := "new_data_no_nbe_read";
|
|
port_b_read_during_write_mode : STRING := "new_data_no_nbe_read";
|
|
power_up_uninitialized : STRING := "false";
|
|
port_b_byte_size : INTEGER := 0;
|
|
port_a_byte_size : INTEGER := 0;
|
|
lpm_type : STRING := "stratixv_ram_block";
|
|
lpm_hint : STRING := "true";
|
|
clk0_input_clock_enable : STRING := "none"; -- ena0,ena2,none
|
|
clk0_core_clock_enable : STRING := "none"; -- ena0,ena2,none
|
|
clk0_output_clock_enable : STRING := "none"; -- ena0,none
|
|
clk1_input_clock_enable : STRING := "none"; -- ena1,ena3,none
|
|
clk1_core_clock_enable : STRING := "none"; -- ena1,ena3,none
|
|
clk1_output_clock_enable : STRING := "none"; -- ena1,none
|
|
mem_init0 : STRING := "";
|
|
mem_init1 : STRING := "";
|
|
mem_init2 : STRING := "";
|
|
mem_init3 : STRING := "";
|
|
mem_init4 : STRING := "";
|
|
mem_init5 : STRING := "";
|
|
mem_init6 : STRING := "";
|
|
mem_init7 : STRING := "";
|
|
mem_init8 : STRING := "";
|
|
mem_init9 : STRING := "";
|
|
connectivity_checking : string := "off"
|
|
);
|
|
PORT (
|
|
portadatain : IN STD_LOGIC_VECTOR(port_a_data_width - 1 DOWNTO 0) := (OTHERS => '0');
|
|
portaaddr : IN STD_LOGIC_VECTOR(port_a_address_width - 1 DOWNTO 0) := (OTHERS => '0');
|
|
portawe : IN STD_LOGIC := '0';
|
|
portare : IN STD_LOGIC := '1';
|
|
portbdatain : IN STD_LOGIC_VECTOR(port_b_data_width - 1 DOWNTO 0) := (OTHERS => '0');
|
|
portbaddr : IN STD_LOGIC_VECTOR(port_b_address_width - 1 DOWNTO 0) := (OTHERS => '0');
|
|
portbwe : IN STD_LOGIC := '0';
|
|
portbre : IN STD_LOGIC := '1';
|
|
clk0 : IN STD_LOGIC := '0';
|
|
clk1 : IN STD_LOGIC := '0';
|
|
ena0 : IN STD_LOGIC := '1';
|
|
ena1 : IN STD_LOGIC := '1';
|
|
ena2 : IN STD_LOGIC := '1';
|
|
ena3 : IN STD_LOGIC := '1';
|
|
clr0 : IN STD_LOGIC := '0';
|
|
clr1 : IN STD_LOGIC := '0';
|
|
nerror : IN STD_LOGIC := '1';
|
|
portabyteenamasks : IN STD_LOGIC_VECTOR(port_a_byte_enable_mask_width - 1 DOWNTO 0) := (OTHERS => '1');
|
|
portbbyteenamasks : IN STD_LOGIC_VECTOR(port_b_byte_enable_mask_width - 1 DOWNTO 0) := (OTHERS => '1');
|
|
devclrn : IN STD_LOGIC := '1';
|
|
devpor : IN STD_LOGIC := '1';
|
|
portaaddrstall : IN STD_LOGIC := '0';
|
|
portbaddrstall : IN STD_LOGIC := '0';
|
|
eccstatus : OUT STD_LOGIC_VECTOR(width_eccstatus - 1 DOWNTO 0) := (OTHERS => '0');
|
|
dftout : OUT STD_LOGIC_VECTOR(8 DOWNTO 0) := "000000000";
|
|
portadataout : OUT STD_LOGIC_VECTOR(port_a_data_width - 1 DOWNTO 0);
|
|
portbdataout : OUT STD_LOGIC_VECTOR(port_b_data_width - 1 DOWNTO 0)
|
|
);
|
|
END COMPONENT;
|
|
|
|
COMPONENT generic_m10k
|
|
GENERIC (
|
|
operation_mode : STRING := "single_port";
|
|
mixed_port_feed_through_mode : STRING := "dont_care";
|
|
ram_block_type : STRING := "auto";
|
|
logical_ram_name : STRING := "ram_name";
|
|
init_file : STRING := "init_file.hex";
|
|
init_file_layout : STRING := "none";
|
|
ecc_pipeline_stage_enabled : STRING := "false";
|
|
enable_ecc : STRING := "false";
|
|
width_eccstatus : INTEGER := 2;
|
|
data_interleave_width_in_bits : INTEGER := 1;
|
|
data_interleave_offset_in_bits : INTEGER := 1;
|
|
port_a_logical_ram_depth : INTEGER := 0;
|
|
port_a_logical_ram_width : INTEGER := 0;
|
|
port_a_first_address : INTEGER := 0;
|
|
port_a_last_address : INTEGER := 0;
|
|
port_a_first_bit_number : INTEGER := 0;
|
|
bist_ena : STRING := "false";
|
|
port_a_address_clear : STRING := "none";
|
|
port_a_data_out_clear : STRING := "none";
|
|
port_a_data_in_clock : STRING := "clock0";
|
|
port_a_address_clock : STRING := "clock0";
|
|
port_a_write_enable_clock : STRING := "clock0";
|
|
port_a_read_enable_clock : STRING := "clock0";
|
|
port_a_byte_enable_clock : STRING := "clock0";
|
|
port_a_data_out_clock : STRING := "none";
|
|
port_a_data_width : INTEGER := 1;
|
|
port_a_address_width : INTEGER := 1;
|
|
port_a_byte_enable_mask_width : INTEGER := 1;
|
|
port_b_logical_ram_depth : INTEGER := 0;
|
|
port_b_logical_ram_width : INTEGER := 0;
|
|
port_b_first_address : INTEGER := 0;
|
|
port_b_last_address : INTEGER := 0;
|
|
port_b_first_bit_number : INTEGER := 0;
|
|
port_b_address_clear : STRING := "none";
|
|
port_b_data_out_clear : STRING := "none";
|
|
port_b_data_in_clock : STRING := "clock1";
|
|
port_b_address_clock : STRING := "clock1";
|
|
port_b_write_enable_clock : STRING := "clock1";
|
|
port_b_read_enable_clock : STRING := "clock1";
|
|
port_b_byte_enable_clock : STRING := "clock1";
|
|
port_b_data_out_clock : STRING := "none";
|
|
port_b_data_width : INTEGER := 1;
|
|
port_b_address_width : INTEGER := 1;
|
|
port_b_byte_enable_mask_width : INTEGER := 1;
|
|
port_a_read_during_write_mode : STRING := "new_data_no_nbe_read";
|
|
port_b_read_during_write_mode : STRING := "new_data_no_nbe_read";
|
|
power_up_uninitialized : STRING := "false";
|
|
port_b_byte_size : INTEGER := 0;
|
|
port_a_byte_size : INTEGER := 0;
|
|
lpm_type : STRING := "arriav_ram_block";
|
|
lpm_hint : STRING := "true";
|
|
clk0_input_clock_enable : STRING := "none"; -- ena0,ena2,none
|
|
clk0_core_clock_enable : STRING := "none"; -- ena0,ena2,none
|
|
clk0_output_clock_enable : STRING := "none"; -- ena0,none
|
|
clk1_input_clock_enable : STRING := "none"; -- ena1,ena3,none
|
|
clk1_core_clock_enable : STRING := "none"; -- ena1,ena3,none
|
|
clk1_output_clock_enable : STRING := "none"; -- ena1,none
|
|
mem_init0 : STRING := "";
|
|
mem_init1 : STRING := "";
|
|
mem_init2 : STRING := "";
|
|
mem_init3 : STRING := "";
|
|
mem_init4 : STRING := "";
|
|
connectivity_checking : STRING := "off"
|
|
);
|
|
PORT (
|
|
portadatain : IN STD_LOGIC_VECTOR(port_a_data_width - 1 DOWNTO 0) := (OTHERS => '0');
|
|
portaaddr : IN STD_LOGIC_VECTOR(port_a_address_width - 1 DOWNTO 0) := (OTHERS => '0');
|
|
portawe : IN STD_LOGIC := '0';
|
|
portare : IN STD_LOGIC := '1';
|
|
portbdatain : IN STD_LOGIC_VECTOR(port_b_data_width - 1 DOWNTO 0) := (OTHERS => '0');
|
|
portbaddr : IN STD_LOGIC_VECTOR(port_b_address_width - 1 DOWNTO 0) := (OTHERS => '0');
|
|
portbwe : IN STD_LOGIC := '0';
|
|
portbre : IN STD_LOGIC := '1';
|
|
clk0 : IN STD_LOGIC := '0';
|
|
clk1 : IN STD_LOGIC := '0';
|
|
ena0 : IN STD_LOGIC := '1';
|
|
ena1 : IN STD_LOGIC := '1';
|
|
ena2 : IN STD_LOGIC := '1';
|
|
ena3 : IN STD_LOGIC := '1';
|
|
clr0 : IN STD_LOGIC := '0';
|
|
clr1 : IN STD_LOGIC := '0';
|
|
nerror : IN STD_LOGIC := '1';
|
|
portabyteenamasks : IN STD_LOGIC_VECTOR(port_a_byte_enable_mask_width - 1 DOWNTO 0) := (OTHERS => '1');
|
|
portbbyteenamasks : IN STD_LOGIC_VECTOR(port_b_byte_enable_mask_width - 1 DOWNTO 0) := (OTHERS => '1');
|
|
devclrn : IN STD_LOGIC := '1';
|
|
devpor : IN STD_LOGIC := '1';
|
|
portaaddrstall : IN STD_LOGIC := '0';
|
|
portbaddrstall : IN STD_LOGIC := '0';
|
|
eccstatus : OUT STD_LOGIC_VECTOR(width_eccstatus - 1 DOWNTO 0) := (OTHERS => '0');
|
|
dftout : OUT STD_LOGIC_VECTOR(8 DOWNTO 0) := "000000000";
|
|
portadataout : OUT STD_LOGIC_VECTOR(port_a_data_width - 1 DOWNTO 0);
|
|
portbdataout : OUT STD_LOGIC_VECTOR(port_b_data_width - 1 DOWNTO 0)
|
|
);
|
|
END COMPONENT;
|
|
|
|
COMPONENT generic_mlab_cell
|
|
GENERIC (
|
|
logical_ram_name : STRING := "lutram";
|
|
logical_ram_depth : INTEGER := 0;
|
|
logical_ram_width : INTEGER := 0;
|
|
first_address : INTEGER := 0;
|
|
last_address : INTEGER := 0;
|
|
first_bit_number : INTEGER := 0;
|
|
init_file : STRING := "NONE";
|
|
data_width : INTEGER := 20;
|
|
address_width : INTEGER := 6;
|
|
byte_enable_mask_width : INTEGER := 1;
|
|
byte_size : INTEGER := 1;
|
|
port_b_data_out_clock : STRING := "none";
|
|
port_b_data_out_clear : STRING := "none";
|
|
lpm_type : STRING := "stratixv_lutram";
|
|
lpm_hint : STRING := "true";
|
|
mem_init0 : STRING := "";
|
|
mixed_port_feed_through_mode : STRING := "new"
|
|
);
|
|
PORT (
|
|
portadatain : IN STD_LOGIC_VECTOR(data_width - 1 DOWNTO 0) := (others => '0');
|
|
portaaddr : IN STD_LOGIC_VECTOR(address_width - 1 DOWNTO 0) := (others => '0');
|
|
portabyteenamasks : IN STD_LOGIC_VECTOR(byte_enable_mask_width - 1 DOWNTO 0) := (others => '1');
|
|
portbaddr : IN STD_LOGIC_VECTOR(address_width - 1 DOWNTO 0) := (others => '0');
|
|
clk0 : IN STD_LOGIC := '0';
|
|
clk1 : IN STD_LOGIC := '0';
|
|
ena0 : IN STD_LOGIC := '1';
|
|
ena1 : IN STD_LOGIC := '1';
|
|
ena2 : IN STD_LOGIC := '1';
|
|
clr : IN STD_LOGIC := '0';
|
|
devclrn : IN STD_LOGIC := '1';
|
|
devpor : IN STD_LOGIC := '1';
|
|
portbdataout : OUT STD_LOGIC_VECTOR(data_width - 1 DOWNTO 0)
|
|
);
|
|
END COMPONENT;
|
|
|
|
COMPONENT generic_28nm_hp_mlab_cell_impl
|
|
GENERIC (
|
|
logical_ram_name : STRING := "lutram";
|
|
logical_ram_depth : INTEGER := 0;
|
|
logical_ram_width : INTEGER := 0;
|
|
first_address : INTEGER := 0;
|
|
last_address : INTEGER := 0;
|
|
first_bit_number : INTEGER := 0;
|
|
init_file : STRING := "NONE";
|
|
data_width : INTEGER := 20;
|
|
address_width : INTEGER := 6;
|
|
byte_enable_mask_width : INTEGER := 1;
|
|
byte_size : INTEGER := 1;
|
|
port_b_data_out_clock : STRING := "none";
|
|
port_b_data_out_clear : STRING := "none";
|
|
lpm_type : STRING := "stratixv_lutram";
|
|
lpm_hint : STRING := "true";
|
|
mem_init0 : STRING := "";
|
|
mixed_port_feed_through_mode : STRING := "new"
|
|
);
|
|
PORT (
|
|
portadatain : IN STD_LOGIC_VECTOR(data_width - 1 DOWNTO 0) := (others => '0');
|
|
portaaddr : IN STD_LOGIC_VECTOR(address_width - 1 DOWNTO 0) := (others => '0');
|
|
portabyteenamasks : IN STD_LOGIC_VECTOR(byte_enable_mask_width - 1 DOWNTO 0) := (others => '1');
|
|
portbaddr : IN STD_LOGIC_VECTOR(address_width - 1 DOWNTO 0) := (others => '0');
|
|
clk0 : IN STD_LOGIC := '0';
|
|
clk1 : IN STD_LOGIC := '0';
|
|
ena0 : IN STD_LOGIC := '1';
|
|
ena1 : IN STD_LOGIC := '1';
|
|
ena2 : IN STD_LOGIC := '1';
|
|
clr : IN STD_LOGIC := '0';
|
|
devclrn : IN STD_LOGIC := '1';
|
|
devpor : IN STD_LOGIC := '1';
|
|
portbdataout : OUT STD_LOGIC_VECTOR(data_width - 1 DOWNTO 0)
|
|
);
|
|
END COMPONENT;
|
|
|
|
COMPONENT generic_28nm_lc_mlab_cell_impl
|
|
GENERIC (
|
|
logical_ram_name : STRING := "lutram";
|
|
logical_ram_depth : INTEGER := 0;
|
|
logical_ram_width : INTEGER := 0;
|
|
first_address : INTEGER := 0;
|
|
last_address : INTEGER := 0;
|
|
first_bit_number : INTEGER := 0;
|
|
init_file : STRING := "NONE";
|
|
data_width : INTEGER := 20;
|
|
address_width : INTEGER := 5;
|
|
byte_enable_mask_width : INTEGER := 1;
|
|
byte_size : INTEGER := 1;
|
|
port_b_data_out_clock : STRING := "none";
|
|
port_b_data_out_clear : STRING := "none";
|
|
lpm_type : STRING := "arriav_lutram";
|
|
lpm_hint : STRING := "true";
|
|
mem_init0 : STRING := "";
|
|
mixed_port_feed_through_mode : STRING := "new"
|
|
);
|
|
PORT (
|
|
portadatain : IN STD_LOGIC_VECTOR(data_width - 1 DOWNTO 0) := (others => '0');
|
|
portaaddr : IN STD_LOGIC_VECTOR(address_width - 1 DOWNTO 0) := (others => '0');
|
|
portabyteenamasks : IN STD_LOGIC_VECTOR(byte_enable_mask_width - 1 DOWNTO 0) := (others => '1');
|
|
portbaddr : IN STD_LOGIC_VECTOR(address_width - 1 DOWNTO 0) := (others => '0');
|
|
clk0 : IN STD_LOGIC := '0';
|
|
clk1 : IN STD_LOGIC := '0';
|
|
ena0 : IN STD_LOGIC := '1';
|
|
ena1 : IN STD_LOGIC := '1';
|
|
ena2 : IN STD_LOGIC := '1';
|
|
clr : IN STD_LOGIC := '0';
|
|
devclrn : IN STD_LOGIC := '1';
|
|
devpor : IN STD_LOGIC := '1';
|
|
portbdataout : OUT STD_LOGIC_VECTOR(data_width - 1 DOWNTO 0)
|
|
);
|
|
END COMPONENT;
|
|
|
|
component altera_functions
|
|
end component;
|
|
|
|
component generic_mux
|
|
port(
|
|
din : in std_logic_vector(63 downto 0);
|
|
sel : in std_logic_vector(5 downto 0);
|
|
dout : out std_logic_vector
|
|
);
|
|
end component;
|
|
|
|
component generic_device_pll
|
|
generic(
|
|
reference_clock_frequency : string := "0 ps";
|
|
output_clock_frequency : string := "0 ps";
|
|
forcelock : string := "false";
|
|
nreset_invert : string := "false";
|
|
pll_enable : string := "true";
|
|
pll_fbclk_mux_1 : string := "glb";
|
|
pll_fbclk_mux_2 : string := "fb_1";
|
|
pll_m_cnt_bypass_en : string := "false";
|
|
pll_m_cnt_hi_div : integer := 1;
|
|
pll_m_cnt_in_src : string := "ph_mux_clk";
|
|
pll_m_cnt_lo_div : integer := 1;
|
|
pll_n_cnt_bypass_en : string := "false";
|
|
pll_n_cnt_hi_div : integer := 1;
|
|
pll_n_cnt_lo_div : integer := 1;
|
|
pll_vco_ph0_en : string := "false";
|
|
pll_vco_ph1_en : string := "false";
|
|
pll_vco_ph2_en : string := "false";
|
|
pll_vco_ph3_en : string := "false";
|
|
pll_vco_ph4_en : string := "false";
|
|
pll_vco_ph5_en : string := "false";
|
|
pll_vco_ph6_en : string := "false";
|
|
pll_vco_ph7_en : string := "false"
|
|
);
|
|
port(
|
|
coreclkfb : in std_logic;
|
|
fbclkfpll : in std_logic;
|
|
lvdsfbin : in std_logic;
|
|
nresync : in std_logic;
|
|
pfden : in std_logic;
|
|
refclkin : in std_logic;
|
|
zdb : in std_logic;
|
|
|
|
fbclk : out std_logic;
|
|
fblvdsout : out std_logic;
|
|
lock : out std_logic;
|
|
vcoph : out std_logic_vector(7 downto 0)
|
|
);
|
|
end component;
|
|
|
|
|
|
|
|
component altera_mult_add
|
|
GENERIC (
|
|
extra_latency : INTEGER := 0;
|
|
dedicated_multiplier_circuitry : STRING := "AUTO";
|
|
dsp_block_balancing : STRING := "AUTO";
|
|
selected_device_family : STRING := "Stratix V";
|
|
lpm_type : STRING := "altera_mult_add";
|
|
lpm_hint : STRING := "UNUSED";
|
|
width_a : INTEGER := 1;
|
|
input_register_a0 : STRING := "UNREGISTERED";
|
|
input_aclr_a0 : STRING := "NONE";
|
|
input_source_a0 : STRING := "DATAA";
|
|
input_register_a1 : STRING := "UNREGISTERED";
|
|
input_aclr_a1 : STRING := "NONE";
|
|
input_source_a1 : STRING := "DATAA";
|
|
input_register_a2 : STRING := "UNREGISTERED";
|
|
input_aclr_a2 : STRING := "NONE";
|
|
input_source_a2 : STRING := "DATAA";
|
|
input_register_a3 : STRING := "UNREGISTERED";
|
|
input_aclr_a3 : STRING := "NONE";
|
|
input_source_a3 : STRING := "DATAA";
|
|
width_b : INTEGER := 1;
|
|
input_register_b0 : STRING := "UNREGISTERED";
|
|
input_aclr_b0 : STRING := "NONE";
|
|
input_source_b0 : STRING := "DATAB";
|
|
input_register_b1 : STRING := "UNREGISTERED";
|
|
input_aclr_b1 : STRING := "NONE";
|
|
input_source_b1 : STRING := "DATAB";
|
|
input_register_b2 : STRING := "UNREGISTERED";
|
|
input_aclr_b2 : STRING := "NONE";
|
|
input_source_b2 : STRING := "DATAB";
|
|
input_register_b3 : STRING := "UNREGISTERED";
|
|
input_aclr_b3 : STRING := "NONE";
|
|
input_source_b3 : STRING := "DATAB";
|
|
width_c : INTEGER := 1;
|
|
input_register_c0 : STRING := "UNREGISTERED";
|
|
input_aclr_c0 : STRING := "NONE";
|
|
input_register_c1 : STRING := "UNREGISTERED";
|
|
input_aclr_c1 : STRING := "NONE";
|
|
input_register_c2 : STRING := "UNREGISTERED";
|
|
input_aclr_c2 : STRING := "NONE";
|
|
input_register_c3 : STRING := "UNREGISTERED";
|
|
input_aclr_c3 : STRING := "NONE";
|
|
width_result : INTEGER := 34;
|
|
output_register : STRING := "UNREGISTERED";
|
|
output_aclr : STRING := "NONE";
|
|
port_signa : STRING := "PORT_UNUSED";
|
|
representation_a : STRING := "UNSIGNED";
|
|
signed_register_a : STRING := "UNREGISTERED";
|
|
signed_aclr_a : STRING := "NONE";
|
|
signed_pipeline_register_a : STRING := "UNREGISTERED";
|
|
signed_pipeline_aclr_a : STRING := "NONE";
|
|
port_signb : STRING := "PORT_UNUSED";
|
|
representation_b : STRING := "UNSIGNED";
|
|
signed_register_b : STRING := "UNREGISTERED";
|
|
signed_aclr_b : STRING := "NONE";
|
|
signed_pipeline_register_b : STRING := "UNREGISTERED";
|
|
signed_pipeline_aclr_b : STRING := "NONE";
|
|
number_of_multipliers : INTEGER := 1;
|
|
multiplier1_direction : STRING := "UNUSED";
|
|
multiplier3_direction : STRING := "UNUSED";
|
|
multiplier_register0 : STRING := "UNREGISTERED";
|
|
multiplier_aclr0 : STRING := "NONE";
|
|
multiplier_register1 : STRING := "UNREGISTERED";
|
|
multiplier_aclr1 : STRING := "NONE";
|
|
multiplier_register2 : STRING := "UNREGISTERED";
|
|
multiplier_aclr2 : STRING := "NONE";
|
|
multiplier_register3 : STRING := "UNREGISTERED";
|
|
multiplier_aclr3 : STRING := "NONE";
|
|
port_addnsub1 : STRING := "PORT_UNUSED";
|
|
addnsub_multiplier_register1 : STRING := "UNREGISTERED";
|
|
addnsub_multiplier_aclr1 : STRING := "NONE";
|
|
addnsub_multiplier_pipeline_register1 : STRING := "UNREGISTERED";
|
|
addnsub_multiplier_pipeline_aclr1 : STRING := "NONE";
|
|
port_addnsub3 : STRING := "PORT_UNUSED";
|
|
addnsub_multiplier_register3 : STRING := "UNREGISTERED";
|
|
addnsub_multiplier_aclr3 : STRING := "NONE";
|
|
addnsub_multiplier_pipeline_register3 : STRING := "UNREGISTERED";
|
|
addnsub_multiplier_pipeline_aclr3 : STRING := "NONE";
|
|
use_subnadd : STRING := "NO";
|
|
adder1_rounding : STRING := "NO";
|
|
addnsub1_round_register : STRING := "UNREGISTERED";
|
|
addnsub1_round_aclr : STRING := "NONE";
|
|
addnsub1_round_pipeline_register : STRING := "UNREGISTERED";
|
|
addnsub1_round_pipeline_aclr : STRING := "NONE";
|
|
adder3_rounding : STRING := "NO";
|
|
addnsub3_round_register : STRING := "UNREGISTERED";
|
|
addnsub3_round_aclr : STRING := "NONE";
|
|
addnsub3_round_pipeline_register : STRING := "UNREGISTERED";
|
|
addnsub3_round_pipeline_aclr : STRING := "NONE";
|
|
multiplier01_rounding : STRING := "NO";
|
|
mult01_round_register : STRING := "UNREGISTERED";
|
|
mult01_round_aclr : STRING := "NONE";
|
|
multiplier23_rounding : STRING := "NO";
|
|
mult23_round_register : STRING := "UNREGISTERED";
|
|
mult23_round_aclr : STRING := "NONE";
|
|
width_msb : INTEGER := 17;
|
|
output_rounding : STRING := "NO";
|
|
output_round_type : STRING := "NEAREST_INTEGER";
|
|
output_round_register : STRING := "UNREGISTERED";
|
|
output_round_aclr : STRING := "NONE";
|
|
output_round_pipeline_register : STRING := "UNREGISTERED";
|
|
output_round_pipeline_aclr : STRING := "NONE";
|
|
chainout_rounding : STRING := "NO";
|
|
chainout_round_register : STRING := "UNREGISTERED";
|
|
chainout_round_aclr : STRING := "NONE";
|
|
chainout_round_pipeline_register : STRING := "UNREGISTERED";
|
|
chainout_round_pipeline_aclr : STRING := "NONE";
|
|
chainout_round_output_register : STRING := "UNREGISTERED";
|
|
chainout_round_output_aclr : STRING := "NONE";
|
|
multiplier01_saturation : STRING := "NO";
|
|
mult01_saturation_register : STRING := "UNREGISTERED";
|
|
mult01_saturation_aclr : STRING := "NONE";
|
|
multiplier23_saturation : STRING := "NO";
|
|
mult23_saturation_register : STRING := "UNREGISTERED";
|
|
mult23_saturation_aclr : STRING := "NONE";
|
|
port_mult0_is_saturated : STRING := "UNUSED";
|
|
port_mult1_is_saturated : STRING := "UNUSED";
|
|
port_mult2_is_saturated : STRING := "UNUSED";
|
|
port_mult3_is_saturated : STRING := "UNUSED";
|
|
width_saturate_sign : INTEGER := 1;
|
|
output_saturation : STRING := "NO";
|
|
port_output_is_overflow : STRING := "PORT_UNUSED";
|
|
output_saturate_type : STRING := "ASYMMETRIC";
|
|
output_saturate_register : STRING := "UNREGISTERED";
|
|
output_saturate_aclr : STRING := "NONE";
|
|
output_saturate_pipeline_register : STRING := "UNREGISTERED";
|
|
output_saturate_pipeline_aclr : STRING := "NONE";
|
|
chainout_saturation : STRING := "NO";
|
|
port_chainout_sat_is_overflow : STRING := "PORT_UNUSED";
|
|
chainout_saturate_register : STRING := "UNREGISTERED";
|
|
chainout_saturate_aclr : STRING := "NONE";
|
|
chainout_saturate_pipeline_register : STRING := "UNREGISTERED";
|
|
chainout_saturate_pipeline_aclr : STRING := "NONE";
|
|
chainout_saturate_output_register : STRING := "UNREGISTERED";
|
|
chainout_saturate_output_aclr : STRING := "NONE";
|
|
scanouta_register : STRING := "UNREGISTERED";
|
|
scanouta_aclr : STRING := "NONE";
|
|
width_chainin : INTEGER := 1;
|
|
chainout_adder : STRING := "NO";
|
|
chainout_adder_direction : STRING := "ADD";
|
|
chainout_register : STRING := "UNREGISTERED";
|
|
chainout_aclr : STRING := "NONE";
|
|
port_negate : STRING := "PORT_UNUSED";
|
|
negate_register : STRING := "UNREGISTERED";
|
|
negate_aclr : STRING := "NONE";
|
|
negate_latency_clock : STRING := "UNREGISTERED";
|
|
negate_latency_aclr : STRING := "NONE";
|
|
zero_chainout_output_register : STRING := "UNREGISTERED";
|
|
zero_chainout_output_aclr : STRING := "NONE";
|
|
shift_mode : STRING := "NO";
|
|
rotate_register : STRING := "UNREGISTERED";
|
|
rotate_aclr : STRING := "NONE";
|
|
rotate_pipeline_register : STRING := "UNREGISTERED";
|
|
rotate_pipeline_aclr : STRING := "NONE";
|
|
rotate_output_register : STRING := "UNREGISTERED";
|
|
rotate_output_aclr : STRING := "NONE";
|
|
shift_right_register : STRING := "UNREGISTERED";
|
|
shift_right_aclr : STRING := "NONE";
|
|
shift_right_pipeline_register : STRING := "UNREGISTERED";
|
|
shift_right_pipeline_aclr : STRING := "NONE";
|
|
shift_right_output_register : STRING := "UNREGISTERED";
|
|
shift_right_output_aclr : STRING := "NONE";
|
|
zero_loopback_register : STRING := "UNREGISTERED";
|
|
zero_loopback_aclr : STRING := "NONE";
|
|
zero_loopback_pipeline_register : STRING := "UNREGISTERED";
|
|
zero_loopback_pipeline_aclr : STRING := "NONE";
|
|
zero_loopback_output_register : STRING := "UNREGISTERED";
|
|
zero_loopback_output_aclr : STRING := "NONE";
|
|
accumulator : STRING := "NO";
|
|
accum_direction : STRING := "ADD";
|
|
double_accum : STRING := "NO";
|
|
loadconst_value : INTEGER := 0;
|
|
use_sload_accum_port : STRING := "NO";
|
|
accum_sload_register : STRING := "UNREGISTERED";
|
|
accum_sload_aclr : STRING := "NONE";
|
|
accum_sload_pipeline_register : STRING := "UNREGISTERED";
|
|
accum_sload_pipeline_aclr : STRING := "NONE";
|
|
loadconst_control_register : STRING := "UNREGISTERED";
|
|
loadconst_control_aclr : STRING := "NONE";
|
|
systolic_delay1 : STRING := "UNREGISTERED";
|
|
systolic_delay3 : STRING := "UNREGISTERED";
|
|
systolic_aclr1 : STRING := "NONE";
|
|
systolic_aclr3 : STRING := "NONE";
|
|
preadder_mode : STRING := "SIMPLE";
|
|
preadder_direction_0 : STRING := "ADD";
|
|
preadder_direction_1 : STRING := "ADD";
|
|
preadder_direction_2 : STRING := "ADD";
|
|
preadder_direction_3 : STRING := "ADD";
|
|
width_coef : INTEGER := 1;
|
|
coefsel0_register : STRING := "UNREGISTERED";
|
|
coefsel0_aclr : STRING := "NONE";
|
|
coefsel1_register : STRING := "UNREGISTERED";
|
|
coefsel1_aclr : STRING := "NONE";
|
|
coefsel2_register : STRING := "UNREGISTERED";
|
|
coefsel2_aclr : STRING := "NONE";
|
|
coefsel3_register : STRING := "UNREGISTERED";
|
|
coefsel3_aclr : STRING := "NONE";
|
|
coef0_0 : INTEGER := 0;
|
|
coef0_1 : INTEGER := 0;
|
|
coef0_2 : INTEGER := 0;
|
|
coef0_3 : INTEGER := 0;
|
|
coef0_4 : INTEGER := 0;
|
|
coef0_5 : INTEGER := 0;
|
|
coef0_6 : INTEGER := 0;
|
|
coef0_7 : INTEGER := 0;
|
|
coef1_0 : INTEGER := 0;
|
|
coef1_1 : INTEGER := 0;
|
|
coef1_2 : INTEGER := 0;
|
|
coef1_3 : INTEGER := 0;
|
|
coef1_4 : INTEGER := 0;
|
|
coef1_5 : INTEGER := 0;
|
|
coef1_6 : INTEGER := 0;
|
|
coef1_7 : INTEGER := 0;
|
|
coef2_0 : INTEGER := 0;
|
|
coef2_1 : INTEGER := 0;
|
|
coef2_2 : INTEGER := 0;
|
|
coef2_3 : INTEGER := 0;
|
|
coef2_4 : INTEGER := 0;
|
|
coef2_5 : INTEGER := 0;
|
|
coef2_6 : INTEGER := 0;
|
|
coef2_7 : INTEGER := 0;
|
|
coef3_0 : INTEGER := 0;
|
|
coef3_1 : INTEGER := 0;
|
|
coef3_2 : INTEGER := 0;
|
|
coef3_3 : INTEGER := 0;
|
|
coef3_4 : INTEGER := 0;
|
|
coef3_5 : INTEGER := 0;
|
|
coef3_6 : INTEGER := 0;
|
|
coef3_7 : INTEGER := 0;
|
|
latency : INTEGER := 0;
|
|
input_a0_latency_clock : STRING := "UNREGISTERED";
|
|
input_a0_latency_aclr : STRING := "NONE";
|
|
input_a1_latency_clock : STRING := "UNREGISTERED";
|
|
input_a1_latency_aclr : STRING := "NONE";
|
|
input_a2_latency_clock : STRING := "UNREGISTERED";
|
|
input_a2_latency_aclr : STRING := "NONE";
|
|
input_a3_latency_clock : STRING := "UNREGISTERED";
|
|
input_a3_latency_aclr : STRING := "NONE";
|
|
input_b0_latency_clock : STRING := "UNREGISTERED";
|
|
input_b0_latency_aclr : STRING := "NONE";
|
|
input_b1_latency_clock : STRING := "UNREGISTERED";
|
|
input_b1_latency_aclr : STRING := "NONE";
|
|
input_b2_latency_clock : STRING := "UNREGISTERED";
|
|
input_b2_latency_aclr : STRING := "NONE";
|
|
input_b3_latency_clock : STRING := "UNREGISTERED";
|
|
input_b3_latency_aclr : STRING := "NONE";
|
|
input_c0_latency_clock : STRING := "UNREGISTERED";
|
|
input_c0_latency_aclr : STRING := "NONE";
|
|
input_c1_latency_clock : STRING := "UNREGISTERED";
|
|
input_c1_latency_aclr : STRING := "NONE";
|
|
input_c2_latency_clock : STRING := "UNREGISTERED";
|
|
input_c2_latency_aclr : STRING := "NONE";
|
|
input_c3_latency_clock : STRING := "UNREGISTERED";
|
|
input_c3_latency_aclr : STRING := "NONE";
|
|
coefsel0_latency_clock : STRING := "UNREGISTERED";
|
|
coefsel0_latency_aclr : STRING := "NONE";
|
|
coefsel1_latency_clock : STRING := "UNREGISTERED";
|
|
coefsel1_latency_aclr : STRING := "NONE";
|
|
coefsel2_latency_clock : STRING := "UNREGISTERED";
|
|
coefsel2_latency_aclr : STRING := "NONE";
|
|
coefsel3_latency_clock : STRING := "UNREGISTERED";
|
|
coefsel3_latency_aclr : STRING := "NONE";
|
|
signed_latency_clock_a : STRING := "UNREGISTERED";
|
|
signed_latency_aclr_a : STRING := "NONE";
|
|
signed_latency_clock_b : STRING := "UNREGISTERED";
|
|
signed_latency_aclr_b : STRING := "NONE";
|
|
addnsub_multiplier_latency_clock1 : STRING := "UNREGISTERED";
|
|
addnsub_multiplier_latency_aclr1 : STRING := "NONE";
|
|
addnsub_multiplier_latency_clock3 : STRING := "UNREGISTERED";
|
|
addnsub_multiplier_latency_aclr3 : STRING := "NONE";
|
|
accum_sload_latency_clock : STRING := "UNREGISTERED";
|
|
accum_sload_latency_aclr : STRING := "NONE"
|
|
);
|
|
PORT (
|
|
dataa : IN STD_LOGIC_VECTOR(width_a * number_of_multipliers - 1 downto 0) := (OTHERS => '0');
|
|
datab : IN STD_LOGIC_VECTOR(width_b * number_of_multipliers - 1 downto 0) := (OTHERS => '0');
|
|
datac : IN STD_LOGIC_VECTOR(width_c * number_of_multipliers - 1 downto 0) := (OTHERS => '0');
|
|
scanina : IN STD_LOGIC_VECTOR(width_a - 1 downto 0) := (OTHERS => '0');
|
|
scaninb : IN STD_LOGIC_VECTOR(width_b - 1 downto 0) := (OTHERS => '0');
|
|
sourcea : IN STD_LOGIC_VECTOR(number_of_multipliers - 1 downto 0) := (OTHERS => '0');
|
|
sourceb : IN STD_LOGIC_VECTOR(number_of_multipliers - 1 downto 0) := (OTHERS => '0');
|
|
clock3 : IN STD_LOGIC := '0';
|
|
clock2 : IN STD_LOGIC := '0';
|
|
clock1 : IN STD_LOGIC := '0';
|
|
clock0 : IN STD_LOGIC := '0';
|
|
aclr3 : IN STD_LOGIC := '0';
|
|
aclr2 : IN STD_LOGIC := '0';
|
|
aclr1 : IN STD_LOGIC := '0';
|
|
aclr0 : IN STD_LOGIC := '0';
|
|
ena3 : IN STD_LOGIC := '1';
|
|
ena2 : IN STD_LOGIC := '1';
|
|
ena1 : IN STD_LOGIC := '1';
|
|
ena0 : IN STD_LOGIC := '1';
|
|
signa : IN STD_LOGIC := '0';
|
|
signb : IN STD_LOGIC := '0';
|
|
addnsub1 : IN STD_LOGIC := '0';
|
|
addnsub3 : IN STD_LOGIC := '0';
|
|
result : OUT STD_LOGIC_VECTOR(width_result - 1 downto 0);
|
|
scanouta : OUT STD_LOGIC_VECTOR(width_a - 1 downto 0);
|
|
scanoutb : OUT STD_LOGIC_VECTOR(width_b - 1 downto 0);
|
|
mult01_round : IN STD_LOGIC := '0';
|
|
mult23_round : IN STD_LOGIC := '0';
|
|
mult01_saturation : IN STD_LOGIC := '0';
|
|
mult23_saturation : IN STD_LOGIC := '0';
|
|
addnsub1_round : IN STD_LOGIC := '0';
|
|
addnsub3_round : IN STD_LOGIC := '0';
|
|
mult0_is_saturated : OUT STD_LOGIC;
|
|
mult1_is_saturated : OUT STD_LOGIC;
|
|
mult2_is_saturated : OUT STD_LOGIC;
|
|
mult3_is_saturated : OUT STD_LOGIC;
|
|
output_round : IN STD_LOGIC := '0';
|
|
chainout_round : IN STD_LOGIC := '0';
|
|
output_saturate : IN STD_LOGIC := '0';
|
|
chainout_saturate : IN STD_LOGIC := '0';
|
|
overflow : OUT STD_LOGIC;
|
|
chainout_sat_overflow : OUT STD_LOGIC;
|
|
chainin : IN STD_LOGIC_VECTOR(width_chainin - 1 downto 0) := (OTHERS => '0');
|
|
zero_chainout : IN STD_LOGIC := '0';
|
|
rotate : IN STD_LOGIC := '0';
|
|
shift_right : IN STD_LOGIC := '0';
|
|
zero_loopback : IN STD_LOGIC := '0';
|
|
accum_sload : IN STD_LOGIC := '0';
|
|
sload_accum : IN STD_LOGIC := '0';
|
|
negate : IN STD_LOGIC := '0';
|
|
coefsel0 : IN STD_LOGIC_VECTOR(2 downto 0) := (OTHERS => '0');
|
|
coefsel1 : IN STD_LOGIC_VECTOR(2 downto 0) := (OTHERS => '0');
|
|
coefsel2 : IN STD_LOGIC_VECTOR(2 downto 0) := (OTHERS => '0');
|
|
coefsel3 : IN STD_LOGIC_VECTOR(2 downto 0) := (OTHERS => '0')
|
|
);
|
|
end component;
|
|
|
|
component altera_mult_add_rtl
|
|
GENERIC (
|
|
extra_latency : INTEGER := 0;
|
|
dedicated_multiplier_circuitry : STRING := "AUTO";
|
|
dsp_block_balancing : STRING := "AUTO";
|
|
selected_device_family : STRING := "Stratix V";
|
|
lpm_type : STRING := "altera_mult_add";
|
|
lpm_hint : STRING := "UNUSED";
|
|
width_a : INTEGER := 1;
|
|
input_register_a0 : STRING := "UNREGISTERED";
|
|
input_aclr_a0 : STRING := "NONE";
|
|
input_source_a0 : STRING := "DATAA";
|
|
input_register_a1 : STRING := "UNREGISTERED";
|
|
input_aclr_a1 : STRING := "NONE";
|
|
input_source_a1 : STRING := "DATAA";
|
|
input_register_a2 : STRING := "UNREGISTERED";
|
|
input_aclr_a2 : STRING := "NONE";
|
|
input_source_a2 : STRING := "DATAA";
|
|
input_register_a3 : STRING := "UNREGISTERED";
|
|
input_aclr_a3 : STRING := "NONE";
|
|
input_source_a3 : STRING := "DATAA";
|
|
width_b : INTEGER := 1;
|
|
input_register_b0 : STRING := "UNREGISTERED";
|
|
input_aclr_b0 : STRING := "NONE";
|
|
input_source_b0 : STRING := "DATAB";
|
|
input_register_b1 : STRING := "UNREGISTERED";
|
|
input_aclr_b1 : STRING := "NONE";
|
|
input_source_b1 : STRING := "DATAB";
|
|
input_register_b2 : STRING := "UNREGISTERED";
|
|
input_aclr_b2 : STRING := "NONE";
|
|
input_source_b2 : STRING := "DATAB";
|
|
input_register_b3 : STRING := "UNREGISTERED";
|
|
input_aclr_b3 : STRING := "NONE";
|
|
input_source_b3 : STRING := "DATAB";
|
|
width_c : INTEGER := 1;
|
|
input_register_c0 : STRING := "UNREGISTERED";
|
|
input_aclr_c0 : STRING := "NONE";
|
|
input_register_c1 : STRING := "UNREGISTERED";
|
|
input_aclr_c1 : STRING := "NONE";
|
|
input_register_c2 : STRING := "UNREGISTERED";
|
|
input_aclr_c2 : STRING := "NONE";
|
|
input_register_c3 : STRING := "UNREGISTERED";
|
|
input_aclr_c3 : STRING := "NONE";
|
|
width_result : INTEGER := 34;
|
|
output_register : STRING := "UNREGISTERED";
|
|
output_aclr : STRING := "NONE";
|
|
port_signa : STRING := "PORT_UNUSED";
|
|
representation_a : STRING := "UNSIGNED";
|
|
signed_register_a : STRING := "UNREGISTERED";
|
|
signed_aclr_a : STRING := "NONE";
|
|
signed_pipeline_register_a : STRING := "UNREGISTERED";
|
|
signed_pipeline_aclr_a : STRING := "NONE";
|
|
port_signb : STRING := "PORT_UNUSED";
|
|
representation_b : STRING := "UNSIGNED";
|
|
signed_register_b : STRING := "UNREGISTERED";
|
|
signed_aclr_b : STRING := "NONE";
|
|
signed_pipeline_register_b : STRING := "UNREGISTERED";
|
|
signed_pipeline_aclr_b : STRING := "NONE";
|
|
number_of_multipliers : INTEGER := 1;
|
|
multiplier1_direction : STRING := "UNUSED";
|
|
multiplier3_direction : STRING := "UNUSED";
|
|
multiplier_register0 : STRING := "UNREGISTERED";
|
|
multiplier_aclr0 : STRING := "NONE";
|
|
multiplier_register1 : STRING := "UNREGISTERED";
|
|
multiplier_aclr1 : STRING := "NONE";
|
|
multiplier_register2 : STRING := "UNREGISTERED";
|
|
multiplier_aclr2 : STRING := "NONE";
|
|
multiplier_register3 : STRING := "UNREGISTERED";
|
|
multiplier_aclr3 : STRING := "NONE";
|
|
port_addnsub1 : STRING := "PORT_UNUSED";
|
|
addnsub_multiplier_register1 : STRING := "UNREGISTERED";
|
|
addnsub_multiplier_aclr1 : STRING := "NONE";
|
|
addnsub_multiplier_pipeline_register1 : STRING := "UNREGISTERED";
|
|
addnsub_multiplier_pipeline_aclr1 : STRING := "NONE";
|
|
port_addnsub3 : STRING := "PORT_UNUSED";
|
|
use_subnadd : STRING := "NO";
|
|
addnsub_multiplier_register3 : STRING := "UNREGISTERED";
|
|
addnsub_multiplier_aclr3 : STRING := "NONE";
|
|
addnsub_multiplier_pipeline_register3 : STRING := "UNREGISTERED";
|
|
addnsub_multiplier_pipeline_aclr3 : STRING := "NONE";
|
|
adder1_rounding : STRING := "NO";
|
|
addnsub1_round_register : STRING := "UNREGISTERED";
|
|
addnsub1_round_aclr : STRING := "NONE";
|
|
addnsub1_round_pipeline_register : STRING := "UNREGISTERED";
|
|
addnsub1_round_pipeline_aclr : STRING := "NONE";
|
|
adder3_rounding : STRING := "NO";
|
|
addnsub3_round_register : STRING := "UNREGISTERED";
|
|
addnsub3_round_aclr : STRING := "NONE";
|
|
addnsub3_round_pipeline_register : STRING := "UNREGISTERED";
|
|
addnsub3_round_pipeline_aclr : STRING := "NONE";
|
|
multiplier01_rounding : STRING := "NO";
|
|
mult01_round_register : STRING := "UNREGISTERED";
|
|
mult01_round_aclr : STRING := "NONE";
|
|
multiplier23_rounding : STRING := "NO";
|
|
mult23_round_register : STRING := "UNREGISTERED";
|
|
mult23_round_aclr : STRING := "NONE";
|
|
width_msb : INTEGER := 17;
|
|
output_rounding : STRING := "NO";
|
|
output_round_type : STRING := "NEAREST_INTEGER";
|
|
output_round_register : STRING := "UNREGISTERED";
|
|
output_round_aclr : STRING := "NONE";
|
|
output_round_pipeline_register : STRING := "UNREGISTERED";
|
|
output_round_pipeline_aclr : STRING := "NONE";
|
|
chainout_rounding : STRING := "NO";
|
|
chainout_round_register : STRING := "UNREGISTERED";
|
|
chainout_round_aclr : STRING := "NONE";
|
|
chainout_round_pipeline_register : STRING := "UNREGISTERED";
|
|
chainout_round_pipeline_aclr : STRING := "NONE";
|
|
chainout_round_output_register : STRING := "UNREGISTERED";
|
|
chainout_round_output_aclr : STRING := "NONE";
|
|
multiplier01_saturation : STRING := "NO";
|
|
mult01_saturation_register : STRING := "UNREGISTERED";
|
|
mult01_saturation_aclr : STRING := "NONE";
|
|
multiplier23_saturation : STRING := "NO";
|
|
mult23_saturation_register : STRING := "UNREGISTERED";
|
|
mult23_saturation_aclr : STRING := "NONE";
|
|
port_mult0_is_saturated : STRING := "UNUSED";
|
|
port_mult1_is_saturated : STRING := "UNUSED";
|
|
port_mult2_is_saturated : STRING := "UNUSED";
|
|
port_mult3_is_saturated : STRING := "UNUSED";
|
|
width_saturate_sign : INTEGER := 1;
|
|
output_saturation : STRING := "NO";
|
|
port_output_is_overflow : STRING := "PORT_UNUSED";
|
|
output_saturate_type : STRING := "ASYMMETRIC";
|
|
output_saturate_register : STRING := "UNREGISTERED";
|
|
output_saturate_aclr : STRING := "NONE";
|
|
output_saturate_pipeline_register : STRING := "UNREGISTERED";
|
|
output_saturate_pipeline_aclr : STRING := "NONE";
|
|
chainout_saturation : STRING := "NO";
|
|
port_chainout_sat_is_overflow : STRING := "PORT_UNUSED";
|
|
chainout_saturate_register : STRING := "UNREGISTERED";
|
|
chainout_saturate_aclr : STRING := "NONE";
|
|
chainout_saturate_pipeline_register : STRING := "UNREGISTERED";
|
|
chainout_saturate_pipeline_aclr : STRING := "NONE";
|
|
chainout_saturate_output_register : STRING := "UNREGISTERED";
|
|
chainout_saturate_output_aclr : STRING := "NONE";
|
|
scanouta_register : STRING := "UNREGISTERED";
|
|
scanouta_aclr : STRING := "NONE";
|
|
width_chainin : INTEGER := 1;
|
|
chainout_adder : STRING := "NO";
|
|
chainout_adder_direction : STRING := "ADD";
|
|
chainout_register : STRING := "UNREGISTERED";
|
|
chainout_aclr : STRING := "NONE";
|
|
port_negate : STRING := "PORT_UNUSED";
|
|
negate_register : STRING := "UNREGISTERED";
|
|
negate_aclr : STRING := "NONE";
|
|
negate_latency_clock : STRING := "UNREGISTERED";
|
|
negate_latency_aclr : STRING := "NONE";
|
|
zero_chainout_output_register : STRING := "UNREGISTERED";
|
|
zero_chainout_output_aclr : STRING := "NONE";
|
|
shift_mode : STRING := "NO";
|
|
rotate_register : STRING := "UNREGISTERED";
|
|
rotate_aclr : STRING := "NONE";
|
|
rotate_pipeline_register : STRING := "UNREGISTERED";
|
|
rotate_pipeline_aclr : STRING := "NONE";
|
|
rotate_output_register : STRING := "UNREGISTERED";
|
|
rotate_output_aclr : STRING := "NONE";
|
|
shift_right_register : STRING := "UNREGISTERED";
|
|
shift_right_aclr : STRING := "NONE";
|
|
shift_right_pipeline_register : STRING := "UNREGISTERED";
|
|
shift_right_pipeline_aclr : STRING := "NONE";
|
|
shift_right_output_register : STRING := "UNREGISTERED";
|
|
shift_right_output_aclr : STRING := "NONE";
|
|
zero_loopback_register : STRING := "UNREGISTERED";
|
|
zero_loopback_aclr : STRING := "NONE";
|
|
zero_loopback_pipeline_register : STRING := "UNREGISTERED";
|
|
zero_loopback_pipeline_aclr : STRING := "NONE";
|
|
zero_loopback_output_register : STRING := "UNREGISTERED";
|
|
zero_loopback_output_aclr : STRING := "NONE";
|
|
accumulator : STRING := "NO";
|
|
accum_direction : STRING := "ADD";
|
|
double_accum : STRING := "NO";
|
|
loadconst_value : INTEGER := 0;
|
|
use_sload_accum_port : STRING := "NO";
|
|
accum_sload_register : STRING := "UNREGISTERED";
|
|
accum_sload_aclr : STRING := "NONE";
|
|
accum_sload_pipeline_register : STRING := "UNREGISTERED";
|
|
accum_sload_pipeline_aclr : STRING := "NONE";
|
|
loadconst_control_register : STRING := "UNREGISTERED";
|
|
loadconst_control_aclr : STRING := "NONE";
|
|
systolic_delay1 : STRING := "UNREGISTERED";
|
|
systolic_delay3 : STRING := "UNREGISTERED";
|
|
systolic_aclr1 : STRING := "NONE";
|
|
systolic_aclr3 : STRING := "NONE";
|
|
preadder_mode : STRING := "SIMPLE";
|
|
preadder_direction_0 : STRING := "ADD";
|
|
preadder_direction_1 : STRING := "ADD";
|
|
preadder_direction_2 : STRING := "ADD";
|
|
preadder_direction_3 : STRING := "ADD";
|
|
width_coef : INTEGER := 1;
|
|
coefsel0_register : STRING := "UNREGISTERED";
|
|
coefsel0_aclr : STRING := "NONE";
|
|
coefsel1_register : STRING := "UNREGISTERED";
|
|
coefsel1_aclr : STRING := "NONE";
|
|
coefsel2_register : STRING := "UNREGISTERED";
|
|
coefsel2_aclr : STRING := "NONE";
|
|
coefsel3_register : STRING := "UNREGISTERED";
|
|
coefsel3_aclr : STRING := "NONE";
|
|
coef0_0 : INTEGER := 0;
|
|
coef0_1 : INTEGER := 0;
|
|
coef0_2 : INTEGER := 0;
|
|
coef0_3 : INTEGER := 0;
|
|
coef0_4 : INTEGER := 0;
|
|
coef0_5 : INTEGER := 0;
|
|
coef0_6 : INTEGER := 0;
|
|
coef0_7 : INTEGER := 0;
|
|
coef1_0 : INTEGER := 0;
|
|
coef1_1 : INTEGER := 0;
|
|
coef1_2 : INTEGER := 0;
|
|
coef1_3 : INTEGER := 0;
|
|
coef1_4 : INTEGER := 0;
|
|
coef1_5 : INTEGER := 0;
|
|
coef1_6 : INTEGER := 0;
|
|
coef1_7 : INTEGER := 0;
|
|
coef2_0 : INTEGER := 0;
|
|
coef2_1 : INTEGER := 0;
|
|
coef2_2 : INTEGER := 0;
|
|
coef2_3 : INTEGER := 0;
|
|
coef2_4 : INTEGER := 0;
|
|
coef2_5 : INTEGER := 0;
|
|
coef2_6 : INTEGER := 0;
|
|
coef2_7 : INTEGER := 0;
|
|
coef3_0 : INTEGER := 0;
|
|
coef3_1 : INTEGER := 0;
|
|
coef3_2 : INTEGER := 0;
|
|
coef3_3 : INTEGER := 0;
|
|
coef3_4 : INTEGER := 0;
|
|
coef3_5 : INTEGER := 0;
|
|
coef3_6 : INTEGER := 0;
|
|
coef3_7 : INTEGER := 0;
|
|
latency : INTEGER := 0;
|
|
input_a0_latency_clock : STRING := "UNREGISTERED";
|
|
input_a0_latency_aclr : STRING := "NONE";
|
|
input_a1_latency_clock : STRING := "UNREGISTERED";
|
|
input_a1_latency_aclr : STRING := "NONE";
|
|
input_a2_latency_clock : STRING := "UNREGISTERED";
|
|
input_a2_latency_aclr : STRING := "NONE";
|
|
input_a3_latency_clock : STRING := "UNREGISTERED";
|
|
input_a3_latency_aclr : STRING := "NONE";
|
|
input_b0_latency_clock : STRING := "UNREGISTERED";
|
|
input_b0_latency_aclr : STRING := "NONE";
|
|
input_b1_latency_clock : STRING := "UNREGISTERED";
|
|
input_b1_latency_aclr : STRING := "NONE";
|
|
input_b2_latency_clock : STRING := "UNREGISTERED";
|
|
input_b2_latency_aclr : STRING := "NONE";
|
|
input_b3_latency_clock : STRING := "UNREGISTERED";
|
|
input_b3_latency_aclr : STRING := "NONE";
|
|
input_c0_latency_clock : STRING := "UNREGISTERED";
|
|
input_c0_latency_aclr : STRING := "NONE";
|
|
input_c1_latency_clock : STRING := "UNREGISTERED";
|
|
input_c1_latency_aclr : STRING := "NONE";
|
|
input_c2_latency_clock : STRING := "UNREGISTERED";
|
|
input_c2_latency_aclr : STRING := "NONE";
|
|
input_c3_latency_clock : STRING := "UNREGISTERED";
|
|
input_c3_latency_aclr : STRING := "NONE";
|
|
coefsel0_latency_clock : STRING := "UNREGISTERED";
|
|
coefsel0_latency_aclr : STRING := "NONE";
|
|
coefsel1_latency_clock : STRING := "UNREGISTERED";
|
|
coefsel1_latency_aclr : STRING := "NONE";
|
|
coefsel2_latency_clock : STRING := "UNREGISTERED";
|
|
coefsel2_latency_aclr : STRING := "NONE";
|
|
coefsel3_latency_clock : STRING := "UNREGISTERED";
|
|
coefsel3_latency_aclr : STRING := "NONE";
|
|
signed_latency_clock_a : STRING := "UNREGISTERED";
|
|
signed_latency_aclr_a : STRING := "NONE";
|
|
signed_latency_clock_b : STRING := "UNREGISTERED";
|
|
signed_latency_aclr_b : STRING := "NONE";
|
|
addnsub_multiplier_latency_clock1 : STRING := "UNREGISTERED";
|
|
addnsub_multiplier_latency_aclr1 : STRING := "NONE";
|
|
addnsub_multiplier_latency_clock3 : STRING := "UNREGISTERED";
|
|
addnsub_multiplier_latency_aclr3 : STRING := "NONE";
|
|
accum_sload_latency_clock : STRING := "UNREGISTERED";
|
|
accum_sload_latency_aclr : STRING := "NONE"
|
|
);
|
|
PORT (
|
|
dataa : IN STD_LOGIC_VECTOR(width_a * number_of_multipliers - 1 downto 0) := (OTHERS => '0');
|
|
datab : IN STD_LOGIC_VECTOR(width_b * number_of_multipliers - 1 downto 0) := (OTHERS => '0');
|
|
datac : IN STD_LOGIC_VECTOR(width_c * number_of_multipliers - 1 downto 0) := (OTHERS => '0');
|
|
scanina : IN STD_LOGIC_VECTOR(width_a - 1 downto 0) := (OTHERS => '0');
|
|
scaninb : IN STD_LOGIC_VECTOR(width_b - 1 downto 0) := (OTHERS => '0');
|
|
sourcea : IN STD_LOGIC_VECTOR(number_of_multipliers - 1 downto 0) := (OTHERS => '0');
|
|
sourceb : IN STD_LOGIC_VECTOR(number_of_multipliers - 1 downto 0) := (OTHERS => '0');
|
|
clock3 : IN STD_LOGIC := '0';
|
|
clock2 : IN STD_LOGIC := '0';
|
|
clock1 : IN STD_LOGIC := '0';
|
|
clock0 : IN STD_LOGIC := '0';
|
|
aclr3 : IN STD_LOGIC := '0';
|
|
aclr2 : IN STD_LOGIC := '0';
|
|
aclr1 : IN STD_LOGIC := '0';
|
|
aclr0 : IN STD_LOGIC := '0';
|
|
ena3 : IN STD_LOGIC := '1';
|
|
ena2 : IN STD_LOGIC := '1';
|
|
ena1 : IN STD_LOGIC := '1';
|
|
ena0 : IN STD_LOGIC := '1';
|
|
signa : IN STD_LOGIC := '0';
|
|
signb : IN STD_LOGIC := '0';
|
|
addnsub1 : IN STD_LOGIC := '0';
|
|
addnsub3 : IN STD_LOGIC := '0';
|
|
result : OUT STD_LOGIC_VECTOR(width_result - 1 downto 0);
|
|
scanouta : OUT STD_LOGIC_VECTOR(width_a - 1 downto 0);
|
|
scanoutb : OUT STD_LOGIC_VECTOR(width_b - 1 downto 0);
|
|
mult01_round : IN STD_LOGIC := '0';
|
|
mult23_round : IN STD_LOGIC := '0';
|
|
mult01_saturation : IN STD_LOGIC := '0';
|
|
mult23_saturation : IN STD_LOGIC := '0';
|
|
addnsub1_round : IN STD_LOGIC := '0';
|
|
addnsub3_round : IN STD_LOGIC := '0';
|
|
mult0_is_saturated : OUT STD_LOGIC;
|
|
mult1_is_saturated : OUT STD_LOGIC;
|
|
mult2_is_saturated : OUT STD_LOGIC;
|
|
mult3_is_saturated : OUT STD_LOGIC;
|
|
output_round : IN STD_LOGIC := '0';
|
|
chainout_round : IN STD_LOGIC := '0';
|
|
output_saturate : IN STD_LOGIC := '0';
|
|
chainout_saturate : IN STD_LOGIC := '0';
|
|
overflow : OUT STD_LOGIC;
|
|
chainout_sat_overflow : OUT STD_LOGIC;
|
|
chainin : IN STD_LOGIC_VECTOR(width_chainin - 1 downto 0) := (OTHERS => '0');
|
|
zero_chainout : IN STD_LOGIC := '0';
|
|
rotate : IN STD_LOGIC := '0';
|
|
shift_right : IN STD_LOGIC := '0';
|
|
zero_loopback : IN STD_LOGIC := '0';
|
|
accum_sload : IN STD_LOGIC := '0';
|
|
sload_accum : IN STD_LOGIC := '0';
|
|
negate : IN STD_LOGIC := '0';
|
|
coefsel0 : IN STD_LOGIC_VECTOR(2 downto 0) := (OTHERS => '0');
|
|
coefsel1 : IN STD_LOGIC_VECTOR(2 downto 0) := (OTHERS => '0');
|
|
coefsel2 : IN STD_LOGIC_VECTOR(2 downto 0) := (OTHERS => '0');
|
|
coefsel3 : IN STD_LOGIC_VECTOR(2 downto 0) := (OTHERS => '0')
|
|
);
|
|
end component;
|
|
|
|
component altera_pll_reconfig_tasks
|
|
generic(
|
|
number_of_fplls :integer := 1
|
|
);
|
|
end component;
|
|
|
|
component altera_syncram
|
|
generic (
|
|
operation_mode : string := "BIDIR_DUAL_PORT";
|
|
-- port a parameters
|
|
width_a : integer := 1;
|
|
widthad_a : integer := 1;
|
|
numwords_a : integer := 0;
|
|
-- registering parameters
|
|
-- port a read parameters
|
|
outdata_reg_a : string := "UNREGISTERED";
|
|
-- clearing parameters
|
|
address_aclr_a : string := "NONE";
|
|
outdata_aclr_a : string := "NONE";
|
|
-- clearing parameters
|
|
-- port a write parameters
|
|
-- width of the byte enable ports. if it is used, must be WIDTH_WRITE_A/8 or /9
|
|
width_byteena_a : integer := 1;
|
|
-- port b parameters
|
|
width_b : integer := 1;
|
|
widthad_b : integer := 1;
|
|
numwords_b : integer := 0;
|
|
-- registering parameters
|
|
-- port b read parameters
|
|
rdcontrol_reg_b : string := "CLOCK1";
|
|
address_reg_b : string := "CLOCK1";
|
|
outdata_reg_b : string := "UNREGISTERED";
|
|
-- clearing parameters
|
|
outdata_aclr_b : string := "NONE";
|
|
-- registering parameters
|
|
-- port b write parameters
|
|
indata_reg_b : string := "CLOCK1";
|
|
-- registering parameter for the byte enable reister for port b
|
|
byteena_reg_b : string := "CLOCK1";
|
|
-- clearing parameters
|
|
address_aclr_b : string := "NONE";
|
|
-- clear parameter for byte enable port register
|
|
clock_enable_input_a : string := "NORMAL";
|
|
clock_enable_output_a : string := "NORMAL";
|
|
clock_enable_input_b : string := "NORMAL";
|
|
clock_enable_output_b : string := "NORMAL";
|
|
-- width of the byte enable ports. if it is used, must be WIDTH_WRITE_A/8 or /9
|
|
width_byteena_b : integer := 1;
|
|
-- clock enable setting for the core
|
|
clock_enable_core_a : string := "USE_INPUT_CLKEN";
|
|
clock_enable_core_b : string := "USE_INPUT_CLKEN";
|
|
-- read-during-write-same-port setting
|
|
read_during_write_mode_port_a : string := "NEW_DATA_NO_NBE_READ";
|
|
read_during_write_mode_port_b : string := "NEW_DATA_NO_NBE_READ";
|
|
-- ECC status ports setting
|
|
enable_ecc : string := "FALSE";
|
|
ecc_pipeline_stage_enabled : string := "FALSE";
|
|
|
|
width_eccstatus : integer := 3;
|
|
-- global parameters
|
|
-- width of a byte for byte enables
|
|
byte_size : integer := 0;
|
|
read_during_write_mode_mixed_ports: string := "DONT_CARE";
|
|
-- ram block type choices are "AUTO", "M20K", "M10K" and "MLAB"
|
|
ram_block_type : string := "AUTO";
|
|
-- determine whether LE support is turned on or off for altsyncram
|
|
implement_in_les : string := "OFF";
|
|
-- determine whether RAM would be power up to uninitialized or not
|
|
power_up_uninitialized : string := "FALSE";
|
|
|
|
sim_show_memory_data_in_port_b_layout : string := "OFF";
|
|
|
|
-- general operation parameters
|
|
init_file : string := "UNUSED";
|
|
init_file_layout : string := "UNUSED";
|
|
maximum_depth : integer := 0;
|
|
intended_device_family : string := "Arria 10";
|
|
lpm_hint : string := "UNUSED";
|
|
lpm_type : string := "altsyncram" );
|
|
port (
|
|
wren_a : in std_logic := '0';
|
|
wren_b : in std_logic := '0';
|
|
rden_a : in std_logic := '1';
|
|
rden_b : in std_logic := '1';
|
|
data_a : in std_logic_vector(width_a - 1 downto 0):= (others => '1');
|
|
data_b : in std_logic_vector(width_b - 1 downto 0):= (others => '1');
|
|
address_a : in std_logic_vector(widthad_a - 1 downto 0);
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address_b : in std_logic_vector(widthad_b - 1 downto 0) := (others => '1');
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clock0 : in std_logic := '1';
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clock1 : in std_logic := 'Z';
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clocken0 : in std_logic := '1';
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clocken1 : in std_logic := '1';
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clocken2 : in std_logic := '1';
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clocken3 : in std_logic := '1';
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aclr0 : in std_logic := '0';
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aclr1 : in std_logic := '0';
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byteena_a : in std_logic_vector( (width_byteena_a - 1) downto 0) := (others => '1');
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byteena_b : in std_logic_vector( (width_byteena_b - 1) downto 0) := (others => 'Z');
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addressstall_a : in std_logic := '0';
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addressstall_b : in std_logic := '0';
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q_a : out std_logic_vector(width_a - 1 downto 0);
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q_b : out std_logic_vector(width_b - 1 downto 0);
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eccstatus : out std_logic_vector(width_eccstatus-1 downto 0) := (others => '0') );
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end component;
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component fourteennm_m20k
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generic (
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-- -------- GLOBAL PARAMETERS ---------
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clk0_clock_enable : STRING := "none";
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clk1_clock_enable : STRING := "none";
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enable_ecc : STRING := "false";
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ecc_pipeline_stage_enabled : STRING := "false";
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enable_ecc_encoder_bypass : STRING := "false";
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enable_force_to_zero : STRING := "false";
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enable_coherent_read : STRING := "false";
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init_file : STRING := "init_file.hex";
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init_file_layout : STRING := "none";
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logical_ram_name : STRING := "ram_name";
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data_interleave_width_in_bits : INTEGER := 1;
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data_interleave_offset_in_bits : INTEGER := 1;
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mixed_port_feed_through_mode : STRING := "dont_care";
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operation_mode : STRING := "dual_port";
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|
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port_a_address_width : INTEGER := 1;
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port_a_byte_enable_mask_width : INTEGER := 1;
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port_a_byte_size : INTEGER := 0;
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port_a_data_out_clear : STRING := "none";
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port_a_data_out_clock : STRING := "none";
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port_a_data_width : INTEGER := 1;
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port_a_first_address : INTEGER := 0;
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port_a_first_bit_number : INTEGER := 0;
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port_a_last_address : INTEGER := 0;
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port_a_logical_ram_depth : INTEGER := 0;
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port_a_logical_ram_width : INTEGER := 0;
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|
|
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port_b_address_clock : STRING := "clock1";
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|
port_b_address_width : INTEGER := 1;
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port_b_byte_enable_mask_width : INTEGER := 1;
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|
port_b_byte_size : INTEGER := 0;
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|
port_b_data_out_clear : STRING := "none";
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|
port_b_data_out_clock : STRING := "none";
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|
port_b_data_width : INTEGER := 1;
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|
port_b_first_address : INTEGER := 0;
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|
port_b_first_bit_number : INTEGER := 0;
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|
port_b_last_address : INTEGER := 0;
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|
port_b_logical_ram_depth : INTEGER := 0;
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|
port_b_logical_ram_width : INTEGER := 0;
|
|
|
|
width_eccencparity : INTEGER := 8;
|
|
ram_block_type : STRING := "auto";
|
|
width_eccstatus : INTEGER := 2;
|
|
|
|
power_up_uninitialized : STRING := "false";
|
|
lpm_type : STRING := "nadder_ram_block";
|
|
lpm_hint : STRING := "true";
|
|
connectivity_checking : STRING := "off";
|
|
mem_init0 : STRING := "";
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|
mem_init1 : STRING := "";
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|
mem_init2 : STRING := "";
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|
mem_init3 : STRING := "";
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|
mem_init4 : STRING := "";
|
|
mem_init5 : STRING := "";
|
|
mem_init6 : STRING := "";
|
|
mem_init7 : STRING := "";
|
|
mem_init8 : STRING := "";
|
|
mem_init9 : STRING := "";
|
|
|
|
bist_ena : STRING := "false"
|
|
|
|
|
|
);
|
|
-- -------- PORT DECLARATIONS ---------
|
|
port (
|
|
clk0 : IN STD_LOGIC := '0';
|
|
clk1 : IN STD_LOGIC := '0';
|
|
aclr : IN STD_LOGIC := '0';
|
|
sclr : IN STD_LOGIC := '0';
|
|
ena0 : IN STD_LOGIC := '1';
|
|
ena1 : IN STD_LOGIC := '1';
|
|
|
|
portaaddr : IN STD_LOGIC_VECTOR(port_a_address_width - 1 DOWNTO 0) := (OTHERS => '0');
|
|
portaaddr2 : IN STD_LOGIC_VECTOR(port_a_address_width - 1 DOWNTO 0) := (OTHERS => '0');
|
|
portaaddrstall : IN STD_LOGIC := '0';
|
|
portabyteenamasks : IN STD_LOGIC_VECTOR(port_a_byte_enable_mask_width - 1 DOWNTO 0) := (OTHERS => '1');
|
|
portadatain : IN STD_LOGIC_VECTOR(port_a_data_width - 1 DOWNTO 0) := (OTHERS => '0');
|
|
portare : IN STD_LOGIC := '1';
|
|
portawe : IN STD_LOGIC := '0';
|
|
eccencbypass : IN STD_LOGIC := '0';
|
|
eccencparity : IN STD_LOGIC_VECTOR(7 DOWNTO 0) := (OTHERS => '1');
|
|
|
|
portbaddr : IN STD_LOGIC_VECTOR(port_b_address_width - 1 DOWNTO 0) := (OTHERS => '0');
|
|
portbaddr2 : IN STD_LOGIC_VECTOR(port_b_address_width - 1 DOWNTO 0) := (OTHERS => '0');
|
|
portbaddrstall : IN STD_LOGIC := '0';
|
|
portbbyteenamasks : IN STD_LOGIC_VECTOR(port_b_byte_enable_mask_width - 1 DOWNTO 0) := (OTHERS => '1');
|
|
portbdatain : IN STD_LOGIC_VECTOR(port_b_data_width - 1 DOWNTO 0) := (OTHERS => '0');
|
|
portbre : IN STD_LOGIC := '1';
|
|
portbwe : IN STD_LOGIC := '0';
|
|
|
|
portadataout : OUT STD_LOGIC_VECTOR(port_a_data_width - 1 DOWNTO 0);
|
|
|
|
portbdataout : OUT STD_LOGIC_VECTOR(port_b_data_width - 1 DOWNTO 0);
|
|
eccstatus : OUT STD_LOGIC_VECTOR(width_eccstatus - 1 DOWNTO 0) := (OTHERS => '0');
|
|
|
|
|
|
dftout : OUT STD_LOGIC_VECTOR(8 DOWNTO 0) := "000000000";
|
|
devclrn : IN STD_LOGIC := '1';
|
|
devpor : IN STD_LOGIC := '1'
|
|
);
|
|
|
|
end component;
|
|
|
|
end altera_lnsim_components;
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