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112 lines
3.3 KiB
112 lines
3.3 KiB
// RUN: %clang_builtins %s %librt -o %t && %run %t
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// REQUIRES: librt_has_divsf3
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#include "int_lib.h"
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#include <stdio.h>
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#include "fp_test.h"
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// Returns: a / b
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COMPILER_RT_ABI float __divsf3(float a, float b);
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int test__divsf3(float a, float b, uint32_t expected)
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{
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float x = __divsf3(a, b);
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int ret = compareResultF(x, expected);
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if (ret){
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printf("error in test__divsf3(%.20e, %.20e) = %.20e, "
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"expected %.20e\n", a, b, x,
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fromRep32(expected));
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}
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return ret;
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}
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int main()
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{
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// Returned NaNs are assumed to be qNaN by default
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// qNaN / any = qNaN
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if (test__divsf3(makeQNaN32(), 3.F, UINT32_C(0x7fc00000)))
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return 1;
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// NaN / any = NaN
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if (test__divsf3(makeNaN32(UINT32_C(0x123)), 3.F, UINT32_C(0x7fc00000)))
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return 1;
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// any / qNaN = qNaN
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if (test__divsf3(3.F, makeQNaN32(), UINT32_C(0x7fc00000)))
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return 1;
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// any / NaN = NaN
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if (test__divsf3(3.F, makeNaN32(UINT32_C(0x123)), UINT32_C(0x7fc00000)))
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return 1;
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// +Inf / positive = +Inf
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if (test__divsf3(makeInf32(), 3.F, UINT32_C(0x7f800000)))
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return 1;
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// +Inf / negative = -Inf
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if (test__divsf3(makeInf32(), -3.F, UINT32_C(0xff800000)))
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return 1;
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// -Inf / positive = -Inf
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if (test__divsf3(makeNegativeInf32(), 3.F, UINT32_C(0xff800000)))
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return 1;
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// -Inf / negative = +Inf
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if (test__divsf3(makeNegativeInf32(), -3.F, UINT32_C(0x7f800000)))
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return 1;
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// Inf / Inf = NaN
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if (test__divsf3(makeInf32(), makeInf32(), UINT32_C(0x7fc00000)))
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return 1;
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// 0.0 / 0.0 = NaN
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if (test__divsf3(+0x0.0p+0F, +0x0.0p+0F, UINT32_C(0x7fc00000)))
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return 1;
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// +0.0 / +Inf = +0.0
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if (test__divsf3(+0x0.0p+0F, makeInf32(), UINT32_C(0x0)))
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return 1;
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// +Inf / +0.0 = +Inf
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if (test__divsf3(makeInf32(), +0x0.0p+0F, UINT32_C(0x7f800000)))
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return 1;
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// positive / +0.0 = +Inf
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if (test__divsf3(+1.F, +0x0.0p+0F, UINT32_C(0x7f800000)))
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return 1;
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// positive / -0.0 = -Inf
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if (test__divsf3(+1.F, -0x0.0p+0F, UINT32_C(0xff800000)))
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return 1;
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// negative / +0.0 = -Inf
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if (test__divsf3(-1.F, +0x0.0p+0F, UINT32_C(0xff800000)))
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return 1;
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// negative / -0.0 = +Inf
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if (test__divsf3(-1.F, -0x0.0p+0F, UINT32_C(0x7f800000)))
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return 1;
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// 1/3
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if (test__divsf3(1.F, 3.F, UINT32_C(0x3eaaaaab)))
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return 1;
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// smallest normal result
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if (test__divsf3(0x1.0p-125F, 2.F, UINT32_C(0x00800000)))
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return 1;
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// divisor is exactly 1.0
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if (test__divsf3(0x1.0p+0F, 0x1.0p+0F, UINT32_C(0x3f800000)))
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return 1;
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// divisor is truncated to exactly 1.0 in UQ1.15
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if (test__divsf3(0x1.0p+0F, 0x1.0001p+0F, UINT32_C(0x3f7fff00)))
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return 1;
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// smallest normal value divided by 2.0
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if (test__divsf3(0x1.0p-126F, 2.0F, UINT32_C(0x00400000)))
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return 1;
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// smallest subnormal result
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if (test__divsf3(0x1.0p-126F, 0x1p+23F, UINT32_C(0x00000001)))
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return 1;
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// some misc test cases obtained by fuzzing against h/w implementation
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if (test__divsf3(-0x1.3e75e6p-108F, -0x1.cf372p+38F, UINT32_C(0x00000006)))
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return 1;
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if (test__divsf3(0x1.e77c54p+81F, -0x1.e77c52p-47F, UINT32_C(0xff800000)))
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return 1;
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if (test__divsf3(0x1.fffffep-126F, 2.F, UINT32_C(0x00800000)))
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return 1;
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return 0;
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}
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