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10a8cb858e
...
396650eec0
22
src/fib.erl
22
src/fib.erl
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@ -1,5 +1,5 @@
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-module(fib).
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-export([fib_p/1, fib_g/1, tail_fib/1, say/0, start_time_check/0]).
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-export([fib_p/1]).
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% Сопоставление с образцом
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fib_p(0) -> 0;
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@ -10,23 +10,3 @@ fib_p(N) -> fib_p(N - 1) + fib_p(N - 2).
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fib_g(N) when N < 1 -> 0;
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fib_g(N) when N < 2 -> 1;
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fib_g(N) -> fib_g(N-1) + fib_g(N-2).
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% Хвостовая рекурсия
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tail_fib(N) -> tfib(N, 0, 1).
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tfib(0, Result, Next) -> Result;
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tfib(N, Result, Next) -> tfib(N - 1, Next, Result + Next).
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say() -> io:format("The result is: ~p~n", [tail_fib(10)]).
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exec_time(Depth) ->
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Start = os:timestamp(),
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fib_p(Depth),
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io:format("Depth = ~p, Time ~f sec~n", [Depth, (timer:now_diff(os:timestamp(), Start) / 1000)]).
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for(0, _, _) -> [];
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for(N, Term, Step) when N > 0 ->
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exec_time(N),
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[Term | for(N - Step, Term, Step)].
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start_time_check() ->
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for(40, 20, 5).
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@ -1,94 +0,0 @@
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%%%-------------------------------------------------------------------
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%%% @author ivan-igorevich
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%%% @copyright (C) 2023, self
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%%% @doc
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%%%
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%%% @end
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%%% Created : 13. Feb 2023 8:49 AM
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%%%-------------------------------------------------------------------
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-module(mobius).
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-author("ivan-igorevich").
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%% API
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-export([is_prime/1, prime_factors/1, is_square_multiple/1, find_square_multiples/2, say/1, start_time_check/0]).
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%% region is_prime
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is_prime(N) when N < 2 ->
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false;
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is_prime(N) ->
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is_prime(N, 2, trunc(math:sqrt(N)) + 1).
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is_prime(_, Max, Max) ->
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true;
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is_prime(N, I, Max) ->
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if
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N rem I =:= 0 ->
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false;
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true ->
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is_prime(N, I + 1, Max)
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end.
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%% endregion is_prime
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%% region prime_factors
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prime_factors(N) ->
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prime_factors(N, 2, []).
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prime_factors(X, N, Primes) when X rem N == 0 ->
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prime_factors(trunc(X / N), 2, [N | Primes]);
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prime_factors(X, N, Primes) ->
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case N < math:sqrt(X) + 1 of
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true ->
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prime_factors(X, N + 1, Primes);
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false ->
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[X | Primes]
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end.
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%% endregion prime_factors
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%% region is_square_multiple
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is_square_multiple(N)->
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is_square_multiple_fun(prime_factors(N)).
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is_square_multiple_fun([H | T]) ->
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case lists:member(H, T) of
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true -> true;
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false -> is_square_multiple_fun(T)
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end;
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is_square_multiple_fun([]) ->
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false.
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%% endregion is_square_multiple
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%% region find_square_multiples
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find_square_multiples(Count, MaxN) ->
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find_square_multiples_fun(Count, MaxN, []).
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find_square_multiples_fun(Count, CurrentNumber, FoundSquareMultipleNumber)
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when length(FoundSquareMultipleNumber) == Count ->
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CurrentNumber + 1;
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find_square_multiples_fun(_, 2, _) ->
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fail;
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find_square_multiples_fun(Count, TestNumber, FoundSquareMultipleNumber) ->
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case is_square_multiple(TestNumber) of
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true -> FoundsNumber = FoundSquareMultipleNumber ++ [TestNumber];
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false -> FoundsNumber = []
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end,
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find_square_multiples_fun(Count, TestNumber - 1, FoundsNumber).
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%% endregion find_square_multiples
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for(0, _, _) -> [];
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for(N, Term, Step) when N > Term ->
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exec_time(N),
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[Term | for(N - Step, Term, Step)].
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start_time_check() ->
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for(6, 4, 1).
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exec_time(Depth) ->
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Start = os:timestamp(),
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say(Depth),
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io:format("Depth = ~p, Time ~f sec~n", [Depth, (timer:now_diff(os:timestamp(), Start) / 1000)]).
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say(Depth) -> io:format("The result is: ~p~n", [find_square_multiples(Depth, 30000)]).
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@ -11,8 +11,7 @@
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fib_test_() -> [
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{"Test fib_p", fun test_fib_p/0 },
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{"Test fib_g", fun test_fib_g/0 },
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{"Test tail_fib", fun test_tail_fib/0 }
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{"Test fib_g", fun test_fib_g/0 }
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].
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test_fib_p() ->
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@ -40,16 +39,3 @@ test_fib_g() ->
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?assertEqual(21, fib:fib_g(8)),
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?assertEqual(34, fib:fib_g(9)),
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?assertEqual(55, fib:fib_g(10)).
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test_tail_fib() ->
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?assertEqual(0, fib:tail_fib(0)),
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?assertEqual(1, fib:tail_fib(1)),
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?assertEqual(1, fib:tail_fib(2)),
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?assertEqual(2, fib:tail_fib(3)),
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?assertEqual(3, fib:tail_fib(4)),
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?assertEqual(5, fib:tail_fib(5)),
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?assertEqual(8, fib:tail_fib(6)),
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?assertEqual(13, fib:tail_fib(7)),
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?assertEqual(21, fib:tail_fib(8)),
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?assertEqual(34, fib:tail_fib(9)),
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?assertEqual(55, fib:tail_fib(10)).
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@ -1,30 +0,0 @@
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%%%-------------------------------------------------------------------
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%%% @author ivan-igorevich
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%%% @copyright (C) 2023, self
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%%% @doc
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%%%
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%%% @end
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%%% Created : 13. Feb 2023 9:03 AM
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%%%-------------------------------------------------------------------
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-module(mobius_test).
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-include_lib("eunit/include/eunit.hrl").
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mobius_test_() -> [
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{"Test is_prime", fun test_is_prime/0},
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{"Test prime_factors", fun test_find_square_multiples/0}
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].
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test_is_prime() ->
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?assertNot(mobius:is_prime(1)),
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?assert(mobius:is_prime(2)),
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?assert(mobius:is_prime(3)),
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?assertNot(mobius:is_prime(58)),
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?assert(mobius:is_prime(59)),
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?assertNot(mobius:is_prime(60)),
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?assertNot(mobius:is_prime(112)),
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?assert(mobius:is_prime(113)).
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test_find_square_multiples() ->
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?assertEqual(fail, mobius:find_square_multiples(3, 20)),
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?assertEqual(48, mobius:find_square_multiples(3, 50)).
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