mirror of
https://github.com/bkaradzic/bx.git
synced 2026-02-17 12:42:34 +01:00
Added rcpSafe.
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@@ -22,9 +22,9 @@ TEST_CASE("isFinite, isInfinite, isNan", "[math]")
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REQUIRE(::__isfinitef(u.f) == bx::isFinite(u.f) );
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REQUIRE(::__isinff(u.f) == bx::isInfinite(u.f) );
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#elif BX_COMPILER_MSVC
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REQUIRE(!!::isnan(u.f) == bx::isNan(u.f));
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REQUIRE(!!::isfinite(u.f) == bx::isFinite(u.f));
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REQUIRE(!!::isinf(u.f) == bx::isInfinite(u.f));
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REQUIRE(!!::isnan(u.f) == bx::isNan(u.f) );
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REQUIRE(!!::isfinite(u.f) == bx::isFinite(u.f) );
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REQUIRE(!!::isinf(u.f) == bx::isInfinite(u.f) );
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#else
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REQUIRE(::isnanf(u.f) == bx::isNan(u.f) );
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REQUIRE(::finitef(u.f) == bx::isFinite(u.f) );
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@@ -148,7 +148,7 @@ TEST_CASE("floorLog2", "[math]")
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}
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}
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TEST_CASE("ceil/floorLog2", "[math]")
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TEST_CASE("ceilLog2 & floorLog2", "[math]")
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{
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{
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uint32_t prev = 0;
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@@ -234,40 +234,56 @@ TEST_CASE("findFirstSet", "[math]")
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BX_PRAGMA_DIAGNOSTIC_PUSH();
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BX_PRAGMA_DIAGNOSTIC_IGNORED_MSVC(4723) // potential divide by 0
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TEST_CASE("rcp", "[math][libm]")
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{
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REQUIRE(1.0f == bx::rcp(1.0f) );
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REQUIRE(2.0f == bx::rcp(0.5f) );
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REQUIRE(bx::isInfinite(bx::rcp( 0.0f) ) );
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REQUIRE(bx::isInfinite(bx::rcp(-0.0f) ) );
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}
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TEST_CASE("rcpSafe", "[math][libm]")
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{
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REQUIRE(1.0f == bx::rcpSafe(1.0f) );
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REQUIRE(2.0f == bx::rcpSafe(0.5f) );
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REQUIRE(!bx::isInfinite(bx::rcpSafe( 0.0f) ) );
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REQUIRE(!bx::isInfinite(bx::rcpSafe(-0.0f) ) );
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}
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TEST_CASE("rsqrt", "[math][libm]")
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{
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bx::WriterI* writer = bx::getNullOut();
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bx::Error err;
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// rsqrtRef
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REQUIRE(bx::isInfinite(bx::rsqrtRef(0.0f)));
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REQUIRE(bx::isInfinite(bx::rsqrtRef(0.0f) ) );
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for (float xx = bx::kNearZero; xx < 100.0f; xx += 0.1f)
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{
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bx::write(writer, &err, "rsqrtRef(%f) == %f (expected: %f)\n", xx, bx::rsqrtRef(xx), 1.0f / ::sqrtf(xx));
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REQUIRE(err.isOk());
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REQUIRE(bx::isEqual(bx::rsqrtRef(xx), 1.0f / ::sqrtf(xx), 0.00001f));
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bx::write(writer, &err, "rsqrtRef(%f) == %f (expected: %f)\n", xx, bx::rsqrtRef(xx), 1.0f / ::sqrtf(xx) );
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REQUIRE(err.isOk() );
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REQUIRE(bx::isEqual(bx::rsqrtRef(xx), 1.0f / ::sqrtf(xx), 0.00001f) );
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}
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// rsqrtSimd
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REQUIRE(bx::isInfinite(bx::rsqrtSimd(0.0f)));
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REQUIRE(bx::isInfinite(bx::rsqrtSimd(0.0f) ) );
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for (float xx = bx::kNearZero; xx < 100.0f; xx += 0.1f)
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{
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bx::write(writer, &err, "rsqrtSimd(%f) == %f (expected: %f)\n", xx, bx::rsqrtSimd(xx), 1.0f / ::sqrtf(xx));
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REQUIRE(err.isOk());
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REQUIRE(bx::isEqual(bx::rsqrtSimd(xx), 1.0f / ::sqrtf(xx), 0.00001f));
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bx::write(writer, &err, "rsqrtSimd(%f) == %f (expected: %f)\n", xx, bx::rsqrtSimd(xx), 1.0f / ::sqrtf(xx) );
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REQUIRE(err.isOk() );
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REQUIRE(bx::isEqual(bx::rsqrtSimd(xx), 1.0f / ::sqrtf(xx), 0.00001f) );
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}
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// rsqrt
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REQUIRE(bx::isInfinite(1.0f / ::sqrtf(0.0f)));
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REQUIRE(bx::isInfinite(bx::rsqrt(0.0f)));
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REQUIRE(bx::isInfinite(1.0f / ::sqrtf(0.0f) ) );
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REQUIRE(bx::isInfinite(bx::rsqrt(0.0f) ) );
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for (float xx = bx::kNearZero; xx < 100.0f; xx += 0.1f)
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{
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bx::write(writer, &err, "rsqrt(%f) == %f (expected: %f)\n", xx, bx::rsqrt(xx), 1.0f / ::sqrtf(xx));
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REQUIRE(err.isOk());
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REQUIRE(bx::isEqual(bx::rsqrt(xx), 1.0f / ::sqrtf(xx), 0.00001f));
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bx::write(writer, &err, "rsqrt(%f) == %f (expected: %f)\n", xx, bx::rsqrt(xx), 1.0f / ::sqrtf(xx) );
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REQUIRE(err.isOk() );
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REQUIRE(bx::isEqual(bx::rsqrt(xx), 1.0f / ::sqrtf(xx), 0.00001f) );
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}
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}
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@@ -277,54 +293,54 @@ TEST_CASE("sqrt", "[math][libm]")
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bx::Error err;
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// sqrtRef
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REQUIRE(bx::isNan(bx::sqrtRef(-1.0f)));
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REQUIRE(bx::isEqual(bx::sqrtRef(0.0f), ::sqrtf(0.0f), 0.0f));
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REQUIRE(bx::isEqual(bx::sqrtRef(1.0f), ::sqrtf(1.0f), 0.0f));
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REQUIRE(bx::isNan(bx::sqrtRef(-1.0f) ) );
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REQUIRE(bx::isEqual(bx::sqrtRef(0.0f), ::sqrtf(0.0f), 0.0f) );
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REQUIRE(bx::isEqual(bx::sqrtRef(1.0f), ::sqrtf(1.0f), 0.0f) );
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for (float xx = 0.0f; xx < 1000000.0f; xx += 1000.f)
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{
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bx::write(writer, &err, "sqrtRef(%f) == %f (expected: %f)\n", xx, bx::sqrtRef(xx), ::sqrtf(xx));
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REQUIRE(err.isOk());
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REQUIRE(bx::isEqual(bx::sqrtRef(xx), ::sqrtf(xx), 0.00001f));
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bx::write(writer, &err, "sqrtRef(%f) == %f (expected: %f)\n", xx, bx::sqrtRef(xx), ::sqrtf(xx) );
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REQUIRE(err.isOk() );
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REQUIRE(bx::isEqual(bx::sqrtRef(xx), ::sqrtf(xx), 0.00001f) );
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}
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// sqrtSimd
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REQUIRE(bx::isNan(bx::sqrtSimd(-1.0f)));
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REQUIRE(bx::isEqual(bx::sqrtSimd(0.0f), ::sqrtf(0.0f), 0.0f));
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REQUIRE(bx::isEqual(bx::sqrtSimd(1.0f), ::sqrtf(1.0f), 0.0f));
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REQUIRE(bx::isNan(bx::sqrtSimd(-1.0f) ) );
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REQUIRE(bx::isEqual(bx::sqrtSimd(0.0f), ::sqrtf(0.0f), 0.0f) );
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REQUIRE(bx::isEqual(bx::sqrtSimd(1.0f), ::sqrtf(1.0f), 0.0f) );
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for (float xx = 0.0f; xx < 1000000.0f; xx += 1000.f)
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{
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bx::write(writer, &err, "sqrtSimd(%f) == %f (expected: %f)\n", xx, bx::sqrtSimd(xx), ::sqrtf(xx));
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REQUIRE(err.isOk());
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REQUIRE(bx::isEqual(bx::sqrtSimd(xx), ::sqrtf(xx), 0.00001f));
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bx::write(writer, &err, "sqrtSimd(%f) == %f (expected: %f)\n", xx, bx::sqrtSimd(xx), ::sqrtf(xx) );
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REQUIRE(err.isOk() );
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REQUIRE(bx::isEqual(bx::sqrtSimd(xx), ::sqrtf(xx), 0.00001f) );
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}
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for (float xx = 0.0f; xx < 100.0f; xx += 0.1f)
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{
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bx::write(writer, &err, "sqrt(%f) == %f (expected: %f)\n", xx, bx::sqrt(xx), ::sqrtf(xx));
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REQUIRE(err.isOk());
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REQUIRE(bx::isEqual(bx::sqrt(xx), ::sqrtf(xx), 0.00001f));
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bx::write(writer, &err, "sqrt(%f) == %f (expected: %f)\n", xx, bx::sqrt(xx), ::sqrtf(xx) );
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REQUIRE(err.isOk() );
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REQUIRE(bx::isEqual(bx::sqrt(xx), ::sqrtf(xx), 0.00001f) );
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}
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// sqrt
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REQUIRE(bx::isNan(::sqrtf(-1.0f)));
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REQUIRE(bx::isNan(bx::sqrt(-1.0f)));
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REQUIRE(bx::isEqual(bx::sqrt(0.0f), ::sqrtf(0.0f), 0.0f));
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REQUIRE(bx::isEqual(bx::sqrt(1.0f), ::sqrtf(1.0f), 0.0f));
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REQUIRE(bx::isNan(::sqrtf(-1.0f) ) );
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REQUIRE(bx::isNan(bx::sqrt(-1.0f) ) );
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REQUIRE(bx::isEqual(bx::sqrt(0.0f), ::sqrtf(0.0f), 0.0f) );
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REQUIRE(bx::isEqual(bx::sqrt(1.0f), ::sqrtf(1.0f), 0.0f) );
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for (float xx = 0.0f; xx < 1000000.0f; xx += 1000.f)
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{
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bx::write(writer, &err, "sqrt(%f) == %f (expected: %f)\n", xx, bx::sqrt(xx), ::sqrtf(xx));
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REQUIRE(err.isOk());
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REQUIRE(bx::isEqual(bx::sqrt(xx), ::sqrtf(xx), 0.00001f));
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bx::write(writer, &err, "sqrt(%f) == %f (expected: %f)\n", xx, bx::sqrt(xx), ::sqrtf(xx) );
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REQUIRE(err.isOk() );
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REQUIRE(bx::isEqual(bx::sqrt(xx), ::sqrtf(xx), 0.00001f) );
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}
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for (float xx = 0.0f; xx < 100.0f; xx += 0.1f)
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{
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bx::write(writer, &err, "sqrt(%f) == %f (expected: %f)\n", xx, bx::sqrt(xx), ::sqrtf(xx));
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REQUIRE(err.isOk());
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REQUIRE(bx::isEqual(bx::sqrt(xx), ::sqrtf(xx), 0.00001f));
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bx::write(writer, &err, "sqrt(%f) == %f (expected: %f)\n", xx, bx::sqrt(xx), ::sqrtf(xx) );
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REQUIRE(err.isOk() );
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REQUIRE(bx::isEqual(bx::sqrt(xx), ::sqrtf(xx), 0.00001f) );
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}
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}
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@@ -341,6 +357,10 @@ TEST_CASE("abs", "[math][libm]")
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TEST_CASE("mod", "[math][libm]")
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{
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REQUIRE(389.0f == bx::mod(1389.0f, 1000.0f) );
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REQUIRE( 89.0f == bx::mod(1389.0f, 100.0f) );
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REQUIRE( 9.0f == bx::mod(1389.0f, 10.0f) );
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REQUIRE( 4.0f == bx::mod(1389.0f, 5.0f) );
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REQUIRE( 1.0f == bx::mod(1389.0f, 2.0f) );
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}
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TEST_CASE("floor", "[math][libm]")
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@@ -760,4 +780,7 @@ TEST_CASE("limits", "[math]")
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STATIC_REQUIRE(bx::LimitsT<double>::min == std::numeric_limits<double>::lowest() );
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STATIC_REQUIRE(bx::LimitsT<double>::max == std::numeric_limits<double>::max() );
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STATIC_REQUIRE(bx::kFloatSmallest == std::numeric_limits<float>::min() );
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STATIC_REQUIRE(bx::kDoubleSmallest == std::numeric_limits<double>::min() );
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}
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