Files
mercury/tests/hard_coded/uint_bitwise.m
Julien Fischer 9ba6fb4701 Fix an off-by-one error in the bitwise tests.
tests/hard_coded/bitwise_int*.m:
tests/hard_coded/uint_bitwise.m:
    Fix an off-by-one error in the C code that prints integers in
    their binary representation.
2017-09-08 01:33:50 -04:00

205 lines
5.7 KiB
Mathematica

%---------------------------------------------------------------------------%
% vim: ft=mercury ts=4 sw=4 et wm=0 tw=0
%---------------------------------------------------------------------------%
% Test bitwise operations for unsigned integers.
:- module uint_bitwise.
:- interface.
:- import_module io.
:- pred main(io::di, io::uo) is cc_multi.
%---------------------------------------------------------------------------%
%---------------------------------------------------------------------------%
:- implementation.
:- import_module int.
:- import_module uint.
:- import_module exception.
:- import_module list.
:- import_module require.
:- import_module string.
:- pragma foreign_import_module("C", uint). % For ML_BITS_PER_UINT.
%---------------------------------------------------------------------------%
main(!IO) :-
run_unop_test(uint.(\), "\\", !IO),
io.nl(!IO),
run_binop_test(uint.(/\), "/\\", !IO),
io.nl(!IO),
run_binop_test(uint.(\/), "\\/", !IO),
io.nl(!IO),
run_binop_test(uint_xor_proxy, "xor", !IO),
io.nl(!IO),
run_shift_test(uint.(>>), ">>", !IO),
io.nl(!IO),
run_shift_test(uint.(<<), "<<", !IO).
:- func uint_xor_proxy(uint, uint) = uint.
uint_xor_proxy(A, B) = uint.xor(A, B).
%---------------------------------------------------------------------------%
:- pred run_unop_test((func(uint) = uint)::in, string::in,
io::di, io::uo) is cc_multi.
run_unop_test(UnOpFunc, Desc, !IO) :-
io.format("*** Test unary operation '%s' ***\n\n", [s(Desc)], !IO),
As = numbers,
list.foldl(run_unop_test_2(UnOpFunc, Desc), As, !IO).
:- pred run_unop_test_2((func(uint) = uint)::in, string::in,
uint::in, io::di, io::uo) is cc_multi.
run_unop_test_2(UnOpFunc, Desc, A, !IO) :-
( try []
Result0 = UnOpFunc(A)
then
ResultStr = to_binary_string_lz(Result0)
catch_any _ ->
ResultStr = "<<exception>>"
),
io.format("%s %s = %s\n",
[s(Desc), s(to_binary_string_lz(A)), s(ResultStr)], !IO).
%---------------------------------------------------------------------------%
:- pred run_binop_test((func(uint, uint) = uint)::in, string::in,
io::di, io::uo) is cc_multi.
run_binop_test(BinOpFunc, Desc, !IO) :-
io.format("*** Test binary operation '%s' ***\n\n", [s(Desc)], !IO),
As = numbers,
Bs = numbers,
list.foldl(run_binop_test_2(BinOpFunc, Desc, Bs), As, !IO).
:- pred run_binop_test_2((func(uint, uint) = uint)::in, string::in,
list(uint)::in, uint::in, io::di, io::uo) is cc_multi.
run_binop_test_2(BinOpFunc, Desc, Bs, A, !IO) :-
list.foldl(run_binop_test_3(BinOpFunc, Desc, A), Bs, !IO).
:- pred run_binop_test_3((func(uint, uint) = uint)::in, string::in,
uint::in, uint::in, io::di, io::uo) is cc_multi.
run_binop_test_3(BinOpFunc, Desc, A, B, !IO) :-
( try []
Result0 = BinOpFunc(A, B)
then
ResultStr = to_binary_string_lz(Result0)
catch_any _ ->
ResultStr = "<<exception>>"
),
io.format("%s %s %s = %s\n",
[s(to_binary_string_lz(A)), s(Desc),
s(to_binary_string_lz(B)), s(ResultStr)], !IO).
%---------------------------------------------------------------------------%
:- pred run_shift_test((func(uint, int) = uint)::in, string::in,
io::di, io::uo) is cc_multi.
run_shift_test(ShiftOpFunc, Desc, !IO) :-
io.format("*** Test binary operation '%s' ***\n\n", [s(Desc)], !IO),
As = numbers,
Bs = shift_amounts,
list.foldl(run_shift_test_2(ShiftOpFunc, Desc, Bs), As, !IO).
:- pred run_shift_test_2((func(uint, int) = uint)::in, string::in,
list(int)::in, uint::in, io::di, io::uo) is cc_multi.
run_shift_test_2(ShiftOpFunc, Desc, Bs, A, !IO) :-
list.foldl(run_shift_test_3(ShiftOpFunc, Desc, A), Bs, !IO).
:- pred run_shift_test_3((func(uint, int) = uint)::in, string::in,
uint::in, int::in, io::di, io::uo) is cc_multi.
run_shift_test_3(ShiftOpFunc, Desc, A, B, !IO) :-
( try []
Result0 = ShiftOpFunc(A, B)
then
ResultStr = to_binary_string_lz(Result0)
catch_any _ ->
ResultStr = "<<exception>>"
),
io.format("%s %s %d = %s\n",
[s(to_binary_string_lz(A)), s(Desc), i(B), s(ResultStr)], !IO).
%---------------------------------------------------------------------------%
:- func numbers = list(uint).
numbers = [
0u,
1u,
2u,
8u,
10u,
16u,
max_uint
].
:- func shift_amounts = list(int).
shift_amounts = [
-1,
0,
1,
2,
3,
4,
8,
16,
24,
bits_per_uint - 1,
bits_per_uint
].
%---------------------------------------------------------------------------%
:- func to_binary_string_lz(uint::in) = (string::uo) is det.
:- pragma foreign_proc("C",
to_binary_string_lz(U::in) = (S::uo),
[will_not_call_mercury, promise_pure, thread_safe, will_not_modify_trail],
"
int i = ML_BITS_PER_UINT;
MR_allocate_aligned_string_msg(S, ML_BITS_PER_UINT, MR_ALLOC_ID);
S[ML_BITS_PER_UINT] = '\\0';
while (i > 0) {
i--;
S[i] = (U & 1) ? '1' : '0';
U = U >> 1;
}
").
:- pragma foreign_proc("C#",
to_binary_string_lz(U::in) = (S::uo),
[will_not_call_mercury, promise_pure, thread_safe],
"
S = System.Convert.ToString(U, 2).PadLeft(32, '0');
").
:- pragma foreign_proc("Java",
to_binary_string_lz(U::in) = (S::uo),
[will_not_call_mercury, promise_pure, thread_safe],
"
S = java.lang.String.format(""%32s"",
java.lang.Integer.toBinaryString(U)).replace(' ', '0');
").
to_binary_string_lz(_) = _ :-
sorry($file, $pred, "to_binary_string_lz for Erlang backend").
%---------------------------------------------------------------------------%
:- end_module uint_bitwise.
%---------------------------------------------------------------------------%