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  /frameworks/compile/libbcc/runtime/lib/
popcountdi2.c 20 __popcountdi2(di_int a)
ashlti3.c 26 const int bits_in_dword = (int)(sizeof(di_int) * CHAR_BIT);
lshrti3.c 26 const int bits_in_dword = (int)(sizeof(di_int) * CHAR_BIT);
udivmodti4.c 173 ((di_int)(int)(n_udword_bits - sr) >> (n_udword_bits-1));
175 ((di_int)(int)(sr - n_udword_bits - 1) >> (n_udword_bits-1))) |
178 ((di_int)(int)(n_udword_bits - sr) >> (n_udword_bits-1)));
180 ((di_int)(int)(sr - n_udword_bits) >> (n_udword_bits-1));
182 ((di_int)(int)(n_udword_bits - sr - 1) >> (n_udword_bits-1))) |
185 ((di_int)(int)(sr - n_udword_bits) >> (n_udword_bits-1)));
219 ((di_int)(int)(sr - n_udword_bits) >> (n_udword_bits-1));
222 ((di_int)(int)(sr - n_udword_bits) >> (n_udword_bits-1)));
ashrti3.c 26 const int bits_in_dword = (int)(sizeof(di_int) * CHAR_BIT);
multi3.c 26 const int bits_in_dword_2 = (int)(sizeof(di_int) * CHAR_BIT) / 2;
  /frameworks/compile/libbcc/runtime/test/Unit/
fixxfdi_test.c 23 // value in long double is representable in di_int (no range checking performed)
28 di_int __fixxfdi(long double a);
30 int test__fixxfdi(long double a, di_int expected)
32 di_int x = __fixxfdi(a);
39 char assumption_1[sizeof(di_int) == 2*sizeof(si_int)] = {0};
floatdisf_test.c 21 // di_int is a 64 bit integral type
25 float __floatdisf(di_int a);
27 int test__floatdisf(di_int a, float expected)
36 char assumption_1[sizeof(di_int) == 2*sizeof(si_int)] = {0};
37 char assumption_2[sizeof(di_int)*CHAR_BIT == 64] = {0};
parityti2_test.c 46 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
47 char assumption_2[sizeof(di_int)*CHAR_BIT == 64] = {0};
floatdidf_test.c 21 // di_int is a 64 bit integral type
25 double __floatdidf(di_int a);
27 int test__floatdidf(di_int a, double expected)
35 char assumption_1[sizeof(di_int) == 2*sizeof(si_int)] = {0};
36 char assumption_2[sizeof(di_int)*CHAR_BIT == 64] = {0};
floatdixf_test.c 21 // di_int is a 64 bit integral type
26 long double __floatdixf(di_int a);
28 int test__floatdixf(di_int a, long double expected)
37 char assumption_1[sizeof(di_int) == 2*sizeof(si_int)] = {0};
38 char assumption_2[sizeof(di_int)*CHAR_BIT == 64] = {0};
popcountti2_test.c 46 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
47 char assumption_2[sizeof(di_int)*CHAR_BIT == 64] = {0};
floatundidf_test.c 27 int test__floatundidf(di_int a, double expected)
36 char assumption_1[sizeof(di_int) == 2*sizeof(si_int)] = {0};
37 char assumption_2[sizeof(di_int)*CHAR_BIT == 64] = {0};
ctzti2_test.c 38 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
ffsti2_test.c 37 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
clzti2_test.c 38 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
divti3_test.c 44 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
fixdfti_test.c 44 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
modti3_test.c 44 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
cmpti2_test.c 40 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
fixsfti_test.c 44 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
fixunssfti_test.c 46 char assumption_1[sizeof(tu_int) == 2*sizeof(di_int)] = {0};
fixxfti_test.c 45 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
floattisf_test.c 42 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
multi3_test.c 42 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};

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