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perf_tests() -> | |
true = perf(6), | |
true = perf(28), | |
false = perf(7), | |
false = perf(15), | |
false = perf(0), | |
all_tests_passed. | |
perf(0) -> false; | |
perf(N) -> | |
Divisor = 1, | |
DivSum = 0, | |
perf(N, Divisor, DivSum). | |
perf(N, N, DivSum) -> | |
DivSum =:= N; | |
perf(N, Divisor, DivSum) when (N rem Divisor =:= 0) -> | |
perf(N, Divisor+1, DivSum+Divisor); | |
perf(N, Divisor, DivSum) -> | |
perf(N, Divisor+1, DivSum). | |
%---stop checking divisors when you reach N/2: | |
perf(0) -> false; | |
perf(N) -> | |
Divisor = 1, | |
DivSum = 0, | |
MaxDivisor = (N div 2) + 1, | |
perf(N, MaxDivisor, Divisor, DivSum). | |
perf(N, MaxDivisor, MaxDivisor, DivSum) -> | |
DivSum =:= N; | |
perf(N, MaxDivisor, Divisor, DivSum) when (N rem Divisor =:= 0) -> | |
perf(N, MaxDivisor, Divisor+1, DivSum+Divisor); | |
perf(N, MaxDivisor, Divisor, DivSum) -> | |
perf(N, MaxDivisor, Divisor+1, DivSum). | |
%----------------- | |
fib_tests() -> | |
0 = fib(0), | |
1 = fib(1), | |
1 = fib(2), | |
2 = fib(3), | |
3 = fib(4), | |
5 = fib(5), | |
all_tests_passed. | |
fib(0) -> 0; | |
fib(1) -> 1; | |
fib(N) -> | |
N1 = 1, % N1 => N-1 | |
N2 = 0, % N2 => N-2 | |
fib_acc(N, N1, N2). | |
fib_acc(2, N1, N2) -> | |
N1 + N2; | |
fib_acc(N, N1, N2) -> | |
fib_acc(N-1, N1+N2, N1). | |
%----------------- | |
fmax_tests() -> | |
10 = fmax(fun(X) -> X*2 end, 5), | |
2 = fmax(fun(X) -> X+2 end, 0), | |
all_tests_passed. | |
fmax(Func, N) -> | |
Max = 0, | |
fmax(Func, N, Max). | |
fmax(Func, 0, Max) -> | |
max(Func(0), Max); | |
fmax(Func, N, Max) -> | |
fmax(Func, N-1, max(Func(N), Max) ). | |
%------------------ | |
fsum_tests() -> | |
12 = fsum(fun(X) -> X*2 end, 3), | |
14 = fsum(fun(X) -> X+2 end, 3), | |
all_tests_passed. | |
fsum(Func, N) -> | |
Acc = 0, | |
fsum(Func, N, Acc). | |
fsum(Func, 0, Acc) -> | |
Acc + Func(0); | |
fsum(Func, N, Acc) -> | |
fsum(Func, N-1, Acc + Func(N) ). | |
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