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library ieee;
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use ieee.std_logic_1164.all;
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Library UNISIM;
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use UNISIM.vcomponents.all;
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entity clock_generator is
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generic (
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clk_period_hz : positive := 100000000);
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port (
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clk : in std_logic;
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resetn : in std_logic;
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system_clk : out std_logic;
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locked : out std_logic);
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end entity clock_generator;
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architecture rtl of clock_generator is
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signal clkfb : std_ulogic;
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type pll_settings_t is record
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clkin_period : real range 0.000 to 52.631;
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clkfbout_mult : integer range 2 to 64;
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clkout_divide : integer range 1 to 128;
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divclk_divide : integer range 1 to 56;
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end record pll_settings_t;
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function gen_pll_settings (
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constant freq_hz : positive)
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return pll_settings_t is
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begin
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if freq_hz = 100000000 then
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return (clkin_period => 10.0,
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clkfbout_mult => 16,
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clkout_divide => 32,
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divclk_divide => 1);
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else
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report "Unsupported input frequency" severity failure;
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-- return (clkin_period => 0.0,
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-- clkfbout_mult => 0,
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-- clkout_divide => 0,
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-- divclk_divide => 0);
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end if;
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end function gen_pll_settings;
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constant pll_settings : pll_settings_t := gen_pll_settings(clk_period_hz);
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begin
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pll : PLLE2_BASE
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generic map (
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BANDWIDTH => "OPTIMIZED",
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CLKFBOUT_MULT => pll_settings.clkfbout_mult,
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CLKIN1_PERIOD => pll_settings.clkin_period,
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CLKOUT0_DIVIDE => pll_settings.clkout_divide,
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DIVCLK_DIVIDE => pll_settings.divclk_divide,
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STARTUP_WAIT => "FALSE")
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port map (
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CLKOUT0 => system_clk,
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CLKOUT1 => open,
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CLKOUT2 => open,
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CLKOUT3 => open,
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CLKOUT4 => open,
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CLKOUT5 => open,
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CLKFBOUT => clkfb,
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LOCKED => locked,
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CLKIN1 => clk,
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PWRDWN => '0',
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RST => not resetn,
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CLKFBIN => clkfb);
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end architecture rtl;
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