/external/compiler-rt/test/Unit/ |
ffsti2_test.c | 22 si_int __ffsti2(ti_int a); 24 int test__ffsti2(ti_int a, si_int expected) 37 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
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multi3_test.c | 19 ti_int __multi3(ti_int a, ti_int b); 21 int test__multi3(ti_int a, ti_int b, ti_int expected) 23 ti_int x = __multi3(a, b); 42 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
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clzti2_test.c | 23 si_int __clzti2(ti_int a); 25 int test__clzti2(ti_int a, si_int expected) 38 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0}; 45 const int N = (int)(sizeof(ti_int) * CHAR_BIT);
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fixdfti_test.c | 23 // value in double is representable in ti_int (no range checking performed) 27 ti_int __fixdfti(double a); 29 int test__fixdfti(double a, ti_int expected) 31 ti_int x = __fixdfti(a); 44 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
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cmpti2_test.c | 23 si_int __cmpti2(ti_int a, ti_int b); 25 int test__cmpti2(ti_int a, ti_int b, si_int expected) 40 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
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negti2_test.c | 21 ti_int __negti2(ti_int a); 23 int test__negti2(ti_int a, ti_int expected) 25 ti_int x = __negti2(a); 41 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
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fixsfti_test.c | 23 // value in float is representable in ti_int (no range checking performed) 27 ti_int __fixsfti(float a); 29 int test__fixsfti(float a, ti_int expected) 31 ti_int x = __fixsfti(a); 44 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
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mulvti3_test.c | 23 ti_int __mulvti3(ti_int a, ti_int b); 25 int test__mulvti3(ti_int a, ti_int b, ti_int expected) 27 ti_int x = __mulvti3(a, b);
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ashlti3_test.c | 23 ti_int __ashlti3(ti_int a, si_int b); 25 int test__ashlti3(ti_int a, si_int b, ti_int expected) 27 ti_int x = __ashlti3(a, b); 46 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
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ashrti3_test.c | 23 ti_int __ashrti3(ti_int a, si_int b); 25 int test__ashrti3(ti_int a, si_int b, ti_int expected) 27 ti_int x = __ashrti3(a, b); 44 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
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lshrti3_test.c | 23 ti_int __lshrti3(ti_int a, si_int b); 25 int test__lshrti3(ti_int a, si_int b, ti_int expected) 27 ti_int x = __lshrti3(a, b); 44 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
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fixxfti_test.c | 23 // value in long double is representable in ti_int (no range checking performed) 28 ti_int __fixxfti(long double a); 30 int test__fixxfti(long double a, ti_int expected) 32 ti_int x = __fixxfti(a); 45 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0};
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floattisf_test.c | 23 // ti_int is a 64 bit integral type 27 float __floattisf(ti_int a); 29 int test__floattisf(ti_int a, float expected) 42 char assumption_1[sizeof(ti_int) == 2*sizeof(di_int)] = {0}; 43 char assumption_2[sizeof(ti_int)*CHAR_BIT == 128] = {0};
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muloti4_test.c | 23 ti_int __muloti4(ti_int a, ti_int b, int *overflow); 25 int test__muloti4(ti_int a, ti_int b, ti_int expected, int expected_overflow) 28 ti_int x = __muloti4(a, b, &ov);
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/external/compiler-rt/lib/ |
ashlti3.c | 23 ti_int 24 __ashlti3(ti_int a, si_int b)
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lshrti3.c | 23 ti_int 24 __lshrti3(ti_int a, si_int b)
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clzti2.c | 24 __clzti2(ti_int a)
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ctzti2.c | 24 __ctzti2(ti_int a)
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ffsti2.c | 24 __ffsti2(ti_int a)
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multi3.c | 22 ti_int 45 ti_int 46 __multi3(ti_int a, ti_int b)
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parityti2.c | 24 __parityti2(ti_int a)
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ashrti3.c | 23 ti_int 24 __ashrti3(ti_int a, si_int b)
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int_types.h | 61 typedef int ti_int __attribute__ ((mode (TI))); typedef 66 ti_int all; 94 static inline ti_int make_ti(di_int h, di_int l) {
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floatuntisf.c | 27 si_int __clzti2(ti_int a);
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popcountti2.c | 22 __popcountti2(ti_int a)
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