apply _clang-format to Bullet/src/LinearMath/btScalar.h, disable around preprocessor defines
(issue with clang-format lacking preprocessor indentation support, see https://bugs.llvm.org//show_bug.cgi?id=17362 and possibly apply this patch: https://github.com/mkurdej/clang/tree/indent-pp-directives )
This commit is contained in:
@@ -12,18 +12,14 @@ subject to the following restrictions:
|
|||||||
3. This notice may not be removed or altered from any source distribution.
|
3. This notice may not be removed or altered from any source distribution.
|
||||||
*/
|
*/
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
#ifndef BT_SCALAR_H
|
#ifndef BT_SCALAR_H
|
||||||
#define BT_SCALAR_H
|
#define BT_SCALAR_H
|
||||||
|
|
||||||
|
|
||||||
#ifdef BT_MANAGED_CODE
|
#ifdef BT_MANAGED_CODE
|
||||||
//Aligned data types not supported in managed code
|
//Aligned data types not supported in managed code
|
||||||
#pragma unmanaged
|
#pragma unmanaged
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
|
|
||||||
#include <math.h>
|
#include <math.h>
|
||||||
#include <stdlib.h> //size_t for MSVC 6.0
|
#include <stdlib.h> //size_t for MSVC 6.0
|
||||||
#include <float.h>
|
#include <float.h>
|
||||||
@@ -36,15 +32,14 @@ inline int btGetVersion()
|
|||||||
return BT_BULLET_VERSION;
|
return BT_BULLET_VERSION;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
// clang and most formatting tools don't support indentation of preprocessor guards, so turn it off
|
||||||
|
// clang-format off
|
||||||
#if defined(DEBUG) || defined (_DEBUG)
|
#if defined(DEBUG) || defined (_DEBUG)
|
||||||
#define BT_DEBUG
|
#define BT_DEBUG
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
|
|
||||||
#ifdef _WIN32
|
#ifdef _WIN32
|
||||||
|
|
||||||
#if defined(__MINGW32__) || defined(__CYGWIN__) || (defined (_MSC_VER) && _MSC_VER < 1300)
|
#if defined(__MINGW32__) || defined(__CYGWIN__) || (defined (_MSC_VER) && _MSC_VER < 1300)
|
||||||
|
|
||||||
#define SIMD_FORCE_INLINE inline
|
#define SIMD_FORCE_INLINE inline
|
||||||
#define ATTRIBUTE_ALIGNED16(a) a
|
#define ATTRIBUTE_ALIGNED16(a) a
|
||||||
#define ATTRIBUTE_ALIGNED64(a) a
|
#define ATTRIBUTE_ALIGNED64(a) a
|
||||||
@@ -54,7 +49,7 @@ inline int btGetVersion()
|
|||||||
#define ATTRIBUTE_ALIGNED16(a) __declspec() a
|
#define ATTRIBUTE_ALIGNED16(a) __declspec() a
|
||||||
#define ATTRIBUTE_ALIGNED64(a) __declspec() a
|
#define ATTRIBUTE_ALIGNED64(a) __declspec() a
|
||||||
#define ATTRIBUTE_ALIGNED128(a) __declspec () a
|
#define ATTRIBUTE_ALIGNED128(a) __declspec () a
|
||||||
#else
|
#else//__MINGW32__
|
||||||
//#define BT_HAS_ALIGNED_ALLOCATOR
|
//#define BT_HAS_ALIGNED_ALLOCATOR
|
||||||
#pragma warning(disable : 4324) // disable padding warning
|
#pragma warning(disable : 4324) // disable padding warning
|
||||||
// #pragma warning(disable:4530) // Disable the exception disable but used in MSCV Stl warning.
|
// #pragma warning(disable:4530) // Disable the exception disable but used in MSCV Stl warning.
|
||||||
@@ -119,7 +114,7 @@ inline int btGetVersion()
|
|||||||
#define btLikely(_c) _c
|
#define btLikely(_c) _c
|
||||||
#define btUnlikely(_c) _c
|
#define btUnlikely(_c) _c
|
||||||
|
|
||||||
#else
|
#else//_WIN32
|
||||||
|
|
||||||
#if defined (__CELLOS_LV2__)
|
#if defined (__CELLOS_LV2__)
|
||||||
#define SIMD_FORCE_INLINE inline __attribute__((always_inline))
|
#define SIMD_FORCE_INLINE inline __attribute__((always_inline))
|
||||||
@@ -138,16 +133,16 @@ inline int btGetVersion()
|
|||||||
#define btAssert assert
|
#define btAssert assert
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
#else
|
#else//BT_DEBUG
|
||||||
#define btAssert(x)
|
#define btAssert(x)
|
||||||
#endif
|
#endif//BT_DEBUG
|
||||||
//btFullAssert is optional, slows down a lot
|
//btFullAssert is optional, slows down a lot
|
||||||
#define btFullAssert(x)
|
#define btFullAssert(x)
|
||||||
|
|
||||||
#define btLikely(_c) _c
|
#define btLikely(_c) _c
|
||||||
#define btUnlikely(_c) _c
|
#define btUnlikely(_c) _c
|
||||||
|
|
||||||
#else
|
#else//defined (__CELLOS_LV2__)
|
||||||
|
|
||||||
#ifdef USE_LIBSPE2
|
#ifdef USE_LIBSPE2
|
||||||
|
|
||||||
@@ -171,7 +166,7 @@ inline int btGetVersion()
|
|||||||
#define btUnlikely(_c) __builtin_expect((_c), 0)
|
#define btUnlikely(_c) __builtin_expect((_c), 0)
|
||||||
|
|
||||||
|
|
||||||
#else
|
#else//USE_LIBSPE2
|
||||||
//non-windows systems
|
//non-windows systems
|
||||||
|
|
||||||
#if (defined (__APPLE__) && (!defined (BT_USE_DOUBLE_PRECISION)))
|
#if (defined (__APPLE__) && (!defined (BT_USE_DOUBLE_PRECISION)))
|
||||||
@@ -236,7 +231,7 @@ inline int btGetVersion()
|
|||||||
#define btLikely(_c) _c
|
#define btLikely(_c) _c
|
||||||
#define btUnlikely(_c) _c
|
#define btUnlikely(_c) _c
|
||||||
|
|
||||||
#else
|
#else//__APPLE__
|
||||||
|
|
||||||
#define SIMD_FORCE_INLINE inline
|
#define SIMD_FORCE_INLINE inline
|
||||||
///@todo: check out alignment methods for other platforms/compilers
|
///@todo: check out alignment methods for other platforms/compilers
|
||||||
@@ -261,21 +256,17 @@ inline int btGetVersion()
|
|||||||
#define btLikely(_c) _c
|
#define btLikely(_c) _c
|
||||||
#define btUnlikely(_c) _c
|
#define btUnlikely(_c) _c
|
||||||
#endif //__APPLE__
|
#endif //__APPLE__
|
||||||
|
|
||||||
#endif // LIBSPE2
|
#endif // LIBSPE2
|
||||||
|
|
||||||
#endif //__CELLOS_LV2__
|
#endif //__CELLOS_LV2__
|
||||||
#endif
|
#endif//_WIN32
|
||||||
|
|
||||||
|
|
||||||
///The btScalar type abstracts floating point numbers, to easily switch between double and single floating point precision.
|
///The btScalar type abstracts floating point numbers, to easily switch between double and single floating point precision.
|
||||||
#if defined(BT_USE_DOUBLE_PRECISION)
|
#if defined(BT_USE_DOUBLE_PRECISION)
|
||||||
|
|
||||||
typedef double btScalar;
|
typedef double btScalar;
|
||||||
//this number could be bigger in double precision
|
//this number could be bigger in double precision
|
||||||
#define BT_LARGE_FLOAT 1e30
|
#define BT_LARGE_FLOAT 1e30
|
||||||
#else
|
#else
|
||||||
|
|
||||||
typedef float btScalar;
|
typedef float btScalar;
|
||||||
//keep BT_LARGE_FLOAT*BT_LARGE_FLOAT < FLT_MAX
|
//keep BT_LARGE_FLOAT*BT_LARGE_FLOAT < FLT_MAX
|
||||||
#define BT_LARGE_FLOAT 1e18f
|
#define BT_LARGE_FLOAT 1e18f
|
||||||
@@ -303,6 +294,8 @@ inline int btGetInfinityMask()//suppress stupid compiler warning
|
|||||||
}
|
}
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
//use this, in case there are clashes (such as xnamath.h)
|
//use this, in case there are clashes (such as xnamath.h)
|
||||||
#ifndef BT_NO_SIMD_OPERATOR_OVERLOADS
|
#ifndef BT_NO_SIMD_OPERATOR_OVERLOADS
|
||||||
inline __m128 operator+(const __m128 A, const __m128 B)
|
inline __m128 operator+(const __m128 A, const __m128 B)
|
||||||
@@ -335,11 +328,12 @@ inline __m128 operator * (const __m128 A, const __m128 B)
|
|||||||
#define btCastiTo128f(a) ((__m128)(a))
|
#define btCastiTo128f(a) ((__m128)(a))
|
||||||
#define btCastdTo128f(a) ((__m128)(a))
|
#define btCastdTo128f(a) ((__m128)(a))
|
||||||
#define btCastdTo128i(a) ((__m128i)(a))
|
#define btCastdTo128i(a) ((__m128i)(a))
|
||||||
#define btAssign128(r0,r1,r2,r3) (__m128){r0,r1,r2,r3}
|
#define btAssign128(r0, r1, r2, r3) \
|
||||||
|
(__m128) { r0, r1, r2, r3 }
|
||||||
#define BT_INFINITY INFINITY
|
#define BT_INFINITY INFINITY
|
||||||
#define BT_NAN NAN
|
#define BT_NAN NAN
|
||||||
#endif //_WIN32
|
#endif //_WIN32
|
||||||
#else
|
#else//BT_USE_SSE
|
||||||
|
|
||||||
#ifdef BT_USE_NEON
|
#ifdef BT_USE_NEON
|
||||||
#include <arm_neon.h>
|
#include <arm_neon.h>
|
||||||
@@ -347,7 +341,8 @@ inline __m128 operator * (const __m128 A, const __m128 B)
|
|||||||
typedef float32x4_t btSimdFloat4;
|
typedef float32x4_t btSimdFloat4;
|
||||||
#define BT_INFINITY INFINITY
|
#define BT_INFINITY INFINITY
|
||||||
#define BT_NAN NAN
|
#define BT_NAN NAN
|
||||||
#define btAssign128(r0,r1,r2,r3) (float32x4_t){r0,r1,r2,r3}
|
#define btAssign128(r0, r1, r2, r3) \
|
||||||
|
(float32x4_t) { r0, r1, r2, r3 }
|
||||||
#else //BT_USE_NEON
|
#else //BT_USE_NEON
|
||||||
|
|
||||||
#ifndef BT_INFINITY
|
#ifndef BT_INFINITY
|
||||||
@@ -379,12 +374,9 @@ inline __m128 operator * (const __m128 A, const __m128 B)
|
|||||||
typedef float32x4_t btSimdFloat4;
|
typedef float32x4_t btSimdFloat4;
|
||||||
#define BT_INFINITY INFINITY
|
#define BT_INFINITY INFINITY
|
||||||
#define BT_NAN NAN
|
#define BT_NAN NAN
|
||||||
#define btAssign128(r0,r1,r2,r3) (float32x4_t){r0,r1,r2,r3}
|
#define btAssign128(r0, r1, r2, r3) \
|
||||||
#endif
|
(float32x4_t) { r0, r1, r2, r3 }
|
||||||
|
#endif//BT_USE_NEON
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
#define BT_DECLARE_ALIGNED_ALLOCATOR() \
|
#define BT_DECLARE_ALIGNED_ALLOCATOR() \
|
||||||
SIMD_FORCE_INLINE void *operator new(size_t sizeInBytes) { return btAlignedAlloc(sizeInBytes, 16); } \
|
SIMD_FORCE_INLINE void *operator new(size_t sizeInBytes) { return btAlignedAlloc(sizeInBytes, 16); } \
|
||||||
@@ -394,19 +386,30 @@ typedef float32x4_t btSimdFloat4;
|
|||||||
SIMD_FORCE_INLINE void *operator new[](size_t sizeInBytes) { return btAlignedAlloc(sizeInBytes, 16); } \
|
SIMD_FORCE_INLINE void *operator new[](size_t sizeInBytes) { return btAlignedAlloc(sizeInBytes, 16); } \
|
||||||
SIMD_FORCE_INLINE void operator delete[](void *ptr) { btAlignedFree(ptr); } \
|
SIMD_FORCE_INLINE void operator delete[](void *ptr) { btAlignedFree(ptr); } \
|
||||||
SIMD_FORCE_INLINE void *operator new[](size_t, void *ptr) { return ptr; } \
|
SIMD_FORCE_INLINE void *operator new[](size_t, void *ptr) { return ptr; } \
|
||||||
SIMD_FORCE_INLINE void operator delete[](void*, void*) { } \
|
SIMD_FORCE_INLINE void operator delete[](void *, void *) {}
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
#if defined(BT_USE_DOUBLE_PRECISION) || defined(BT_FORCE_DOUBLE_FUNCTIONS)
|
#if defined(BT_USE_DOUBLE_PRECISION) || defined(BT_FORCE_DOUBLE_FUNCTIONS)
|
||||||
|
|
||||||
SIMD_FORCE_INLINE btScalar btSqrt(btScalar x) { return sqrt(x); }
|
SIMD_FORCE_INLINE btScalar btSqrt(btScalar x)
|
||||||
|
{
|
||||||
|
return sqrt(x);
|
||||||
|
}
|
||||||
SIMD_FORCE_INLINE btScalar btFabs(btScalar x) { return fabs(x); }
|
SIMD_FORCE_INLINE btScalar btFabs(btScalar x) { return fabs(x); }
|
||||||
SIMD_FORCE_INLINE btScalar btCos(btScalar x) { return cos(x); }
|
SIMD_FORCE_INLINE btScalar btCos(btScalar x) { return cos(x); }
|
||||||
SIMD_FORCE_INLINE btScalar btSin(btScalar x) { return sin(x); }
|
SIMD_FORCE_INLINE btScalar btSin(btScalar x) { return sin(x); }
|
||||||
SIMD_FORCE_INLINE btScalar btTan(btScalar x) { return tan(x); }
|
SIMD_FORCE_INLINE btScalar btTan(btScalar x) { return tan(x); }
|
||||||
SIMD_FORCE_INLINE btScalar btAcos(btScalar x) { if (x<btScalar(-1)) x=btScalar(-1); if (x>btScalar(1)) x=btScalar(1); return acos(x); }
|
SIMD_FORCE_INLINE btScalar btAcos(btScalar x)
|
||||||
SIMD_FORCE_INLINE btScalar btAsin(btScalar x) { if (x<btScalar(-1)) x=btScalar(-1); if (x>btScalar(1)) x=btScalar(1); return asin(x); }
|
{
|
||||||
|
if (x < btScalar(-1)) x = btScalar(-1);
|
||||||
|
if (x > btScalar(1)) x = btScalar(1);
|
||||||
|
return acos(x);
|
||||||
|
}
|
||||||
|
SIMD_FORCE_INLINE btScalar btAsin(btScalar x)
|
||||||
|
{
|
||||||
|
if (x < btScalar(-1)) x = btScalar(-1);
|
||||||
|
if (x > btScalar(1)) x = btScalar(1);
|
||||||
|
return asin(x);
|
||||||
|
}
|
||||||
SIMD_FORCE_INLINE btScalar btAtan(btScalar x) { return atan(x); }
|
SIMD_FORCE_INLINE btScalar btAtan(btScalar x) { return atan(x); }
|
||||||
SIMD_FORCE_INLINE btScalar btAtan2(btScalar x, btScalar y) { return atan2(x, y); }
|
SIMD_FORCE_INLINE btScalar btAtan2(btScalar x, btScalar y) { return atan2(x, y); }
|
||||||
SIMD_FORCE_INLINE btScalar btExp(btScalar x) { return exp(x); }
|
SIMD_FORCE_INLINE btScalar btExp(btScalar x) { return exp(x); }
|
||||||
@@ -414,7 +417,7 @@ SIMD_FORCE_INLINE btScalar btLog(btScalar x) { return log(x); }
|
|||||||
SIMD_FORCE_INLINE btScalar btPow(btScalar x, btScalar y) { return pow(x, y); }
|
SIMD_FORCE_INLINE btScalar btPow(btScalar x, btScalar y) { return pow(x, y); }
|
||||||
SIMD_FORCE_INLINE btScalar btFmod(btScalar x, btScalar y) { return fmod(x, y); }
|
SIMD_FORCE_INLINE btScalar btFmod(btScalar x, btScalar y) { return fmod(x, y); }
|
||||||
|
|
||||||
#else
|
#else//BT_USE_DOUBLE_PRECISION
|
||||||
|
|
||||||
SIMD_FORCE_INLINE btScalar btSqrt(btScalar y)
|
SIMD_FORCE_INLINE btScalar btSqrt(btScalar y)
|
||||||
{
|
{
|
||||||
@@ -451,14 +454,16 @@ SIMD_FORCE_INLINE btScalar btFabs(btScalar x) { return fabsf(x); }
|
|||||||
SIMD_FORCE_INLINE btScalar btCos(btScalar x) { return cosf(x); }
|
SIMD_FORCE_INLINE btScalar btCos(btScalar x) { return cosf(x); }
|
||||||
SIMD_FORCE_INLINE btScalar btSin(btScalar x) { return sinf(x); }
|
SIMD_FORCE_INLINE btScalar btSin(btScalar x) { return sinf(x); }
|
||||||
SIMD_FORCE_INLINE btScalar btTan(btScalar x) { return tanf(x); }
|
SIMD_FORCE_INLINE btScalar btTan(btScalar x) { return tanf(x); }
|
||||||
SIMD_FORCE_INLINE btScalar btAcos(btScalar x) {
|
SIMD_FORCE_INLINE btScalar btAcos(btScalar x)
|
||||||
|
{
|
||||||
if (x < btScalar(-1))
|
if (x < btScalar(-1))
|
||||||
x = btScalar(-1);
|
x = btScalar(-1);
|
||||||
if (x > btScalar(1))
|
if (x > btScalar(1))
|
||||||
x = btScalar(1);
|
x = btScalar(1);
|
||||||
return acosf(x);
|
return acosf(x);
|
||||||
}
|
}
|
||||||
SIMD_FORCE_INLINE btScalar btAsin(btScalar x) {
|
SIMD_FORCE_INLINE btScalar btAsin(btScalar x)
|
||||||
|
{
|
||||||
if (x < btScalar(-1))
|
if (x < btScalar(-1))
|
||||||
x = btScalar(-1);
|
x = btScalar(-1);
|
||||||
if (x > btScalar(1))
|
if (x > btScalar(1))
|
||||||
@@ -472,7 +477,7 @@ SIMD_FORCE_INLINE btScalar btLog(btScalar x) { return logf(x); }
|
|||||||
SIMD_FORCE_INLINE btScalar btPow(btScalar x, btScalar y) { return powf(x, y); }
|
SIMD_FORCE_INLINE btScalar btPow(btScalar x, btScalar y) { return powf(x, y); }
|
||||||
SIMD_FORCE_INLINE btScalar btFmod(btScalar x, btScalar y) { return fmodf(x, y); }
|
SIMD_FORCE_INLINE btScalar btFmod(btScalar x, btScalar y) { return fmodf(x, y); }
|
||||||
|
|
||||||
#endif
|
#endif//BT_USE_DOUBLE_PRECISION
|
||||||
|
|
||||||
#define SIMD_PI btScalar(3.1415926535897932384626433832795029)
|
#define SIMD_PI btScalar(3.1415926535897932384626433832795029)
|
||||||
#define SIMD_2_PI (btScalar(2.0) * SIMD_PI)
|
#define SIMD_2_PI (btScalar(2.0) * SIMD_PI)
|
||||||
@@ -480,7 +485,6 @@ SIMD_FORCE_INLINE btScalar btFmod(btScalar x,btScalar y) { return fmodf(x,y); }
|
|||||||
#define SIMD_RADS_PER_DEG (SIMD_2_PI / btScalar(360.0))
|
#define SIMD_RADS_PER_DEG (SIMD_2_PI / btScalar(360.0))
|
||||||
#define SIMD_DEGS_PER_RAD (btScalar(360.0) / SIMD_2_PI)
|
#define SIMD_DEGS_PER_RAD (btScalar(360.0) / SIMD_2_PI)
|
||||||
#define SIMDSQRT12 btScalar(0.7071067811865475244008443621048490)
|
#define SIMDSQRT12 btScalar(0.7071067811865475244008443621048490)
|
||||||
|
|
||||||
#define btRecipSqrt(x) ((btScalar)(btScalar(1.0) / btSqrt(btScalar(x)))) /* reciprocal square root */
|
#define btRecipSqrt(x) ((btScalar)(btScalar(1.0) / btSqrt(btScalar(x)))) /* reciprocal square root */
|
||||||
#define btRecip(x) (btScalar(1.0) / btScalar(x))
|
#define btRecip(x) (btScalar(1.0) / btScalar(x))
|
||||||
|
|
||||||
@@ -500,16 +504,21 @@ SIMD_FORCE_INLINE btScalar btFmod(btScalar x,btScalar y) { return fmodf(x,y); }
|
|||||||
#define BT_HALF 0.5f
|
#define BT_HALF 0.5f
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
|
// clang-format on
|
||||||
|
|
||||||
SIMD_FORCE_INLINE btScalar btAtan2Fast(btScalar y, btScalar x)
|
SIMD_FORCE_INLINE btScalar btAtan2Fast(btScalar y, btScalar x)
|
||||||
{
|
{
|
||||||
btScalar coeff_1 = SIMD_PI / 4.0f;
|
btScalar coeff_1 = SIMD_PI / 4.0f;
|
||||||
btScalar coeff_2 = 3.0f * coeff_1;
|
btScalar coeff_2 = 3.0f * coeff_1;
|
||||||
btScalar abs_y = btFabs(y);
|
btScalar abs_y = btFabs(y);
|
||||||
btScalar angle;
|
btScalar angle;
|
||||||
if (x >= 0.0f) {
|
if (x >= 0.0f)
|
||||||
|
{
|
||||||
btScalar r = (x - abs_y) / (x + abs_y);
|
btScalar r = (x - abs_y) / (x + abs_y);
|
||||||
angle = coeff_1 - coeff_1 * r;
|
angle = coeff_1 - coeff_1 * r;
|
||||||
} else {
|
}
|
||||||
|
else
|
||||||
|
{
|
||||||
btScalar r = (x + abs_y) / (abs_y - x);
|
btScalar r = (x + abs_y) / (abs_y - x);
|
||||||
angle = coeff_2 - coeff_1 * r;
|
angle = coeff_2 - coeff_1 * r;
|
||||||
}
|
}
|
||||||
@@ -518,22 +527,28 @@ SIMD_FORCE_INLINE btScalar btAtan2Fast(btScalar y, btScalar x)
|
|||||||
|
|
||||||
SIMD_FORCE_INLINE bool btFuzzyZero(btScalar x) { return btFabs(x) < SIMD_EPSILON; }
|
SIMD_FORCE_INLINE bool btFuzzyZero(btScalar x) { return btFabs(x) < SIMD_EPSILON; }
|
||||||
|
|
||||||
SIMD_FORCE_INLINE bool btEqual(btScalar a, btScalar eps) {
|
SIMD_FORCE_INLINE bool btEqual(btScalar a, btScalar eps)
|
||||||
|
{
|
||||||
return (((a) <= eps) && !((a) < -eps));
|
return (((a) <= eps) && !((a) < -eps));
|
||||||
}
|
}
|
||||||
SIMD_FORCE_INLINE bool btGreaterEqual (btScalar a, btScalar eps) {
|
SIMD_FORCE_INLINE bool btGreaterEqual(btScalar a, btScalar eps)
|
||||||
|
{
|
||||||
return (!((a) <= eps));
|
return (!((a) <= eps));
|
||||||
}
|
}
|
||||||
|
|
||||||
|
SIMD_FORCE_INLINE int btIsNegative(btScalar x)
|
||||||
SIMD_FORCE_INLINE int btIsNegative(btScalar x) {
|
{
|
||||||
return x < btScalar(0.0) ? 1 : 0;
|
return x < btScalar(0.0) ? 1 : 0;
|
||||||
}
|
}
|
||||||
|
|
||||||
SIMD_FORCE_INLINE btScalar btRadians(btScalar x) { return x * SIMD_RADS_PER_DEG; }
|
SIMD_FORCE_INLINE btScalar btRadians(btScalar x) { return x * SIMD_RADS_PER_DEG; }
|
||||||
SIMD_FORCE_INLINE btScalar btDegrees(btScalar x) { return x * SIMD_DEGS_PER_RAD; }
|
SIMD_FORCE_INLINE btScalar btDegrees(btScalar x) { return x * SIMD_DEGS_PER_RAD; }
|
||||||
|
|
||||||
#define BT_DECLARE_HANDLE(name) typedef struct name##__ { int unused; } *name
|
#define BT_DECLARE_HANDLE(name) \
|
||||||
|
typedef struct name##__ \
|
||||||
|
{ \
|
||||||
|
int unused; \
|
||||||
|
} * name
|
||||||
|
|
||||||
#ifndef btFsel
|
#ifndef btFsel
|
||||||
SIMD_FORCE_INLINE btScalar btFsel(btScalar a, btScalar b, btScalar c)
|
SIMD_FORCE_INLINE btScalar btFsel(btScalar a, btScalar b, btScalar c)
|
||||||
@@ -543,7 +558,6 @@ SIMD_FORCE_INLINE btScalar btFsel(btScalar a, btScalar b, btScalar c)
|
|||||||
#endif
|
#endif
|
||||||
#define btFsels(a, b, c) (btScalar) btFsel(a, b, c)
|
#define btFsels(a, b, c) (btScalar) btFsel(a, b, c)
|
||||||
|
|
||||||
|
|
||||||
SIMD_FORCE_INLINE bool btMachineIsLittleEndian()
|
SIMD_FORCE_INLINE bool btMachineIsLittleEndian()
|
||||||
{
|
{
|
||||||
long int i = 1;
|
long int i = 1;
|
||||||
@@ -554,8 +568,6 @@ SIMD_FORCE_INLINE bool btMachineIsLittleEndian()
|
|||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
///btSelect avoids branches, which makes performance much better for consoles like Playstation 3 and XBox 360
|
///btSelect avoids branches, which makes performance much better for consoles like Playstation 3 and XBox 360
|
||||||
///Thanks Phil Knight. See also http://www.cellperformance.com/articles/2006/04/more_techniques_for_eliminatin_1.html
|
///Thanks Phil Knight. See also http://www.cellperformance.com/articles/2006/04/more_techniques_for_eliminatin_1.html
|
||||||
SIMD_FORCE_INLINE unsigned btSelect(unsigned condition, unsigned valueIfConditionNonZero, unsigned valueIfConditionZero)
|
SIMD_FORCE_INLINE unsigned btSelect(unsigned condition, unsigned valueIfConditionNonZero, unsigned valueIfConditionZero)
|
||||||
@@ -583,14 +595,14 @@ SIMD_FORCE_INLINE float btSelect(unsigned condition, float valueIfConditionNonZe
|
|||||||
#endif
|
#endif
|
||||||
}
|
}
|
||||||
|
|
||||||
template<typename T> SIMD_FORCE_INLINE void btSwap(T& a, T& b)
|
template <typename T>
|
||||||
|
SIMD_FORCE_INLINE void btSwap(T &a, T &b)
|
||||||
{
|
{
|
||||||
T tmp = a;
|
T tmp = a;
|
||||||
a = b;
|
a = b;
|
||||||
b = tmp;
|
b = tmp;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
//PCK: endian swapping functions
|
//PCK: endian swapping functions
|
||||||
SIMD_FORCE_INLINE unsigned btSwapEndian(unsigned val)
|
SIMD_FORCE_INLINE unsigned btSwapEndian(unsigned val)
|
||||||
{
|
{
|
||||||
@@ -646,7 +658,6 @@ SIMD_FORCE_INLINE float btUnswapEndianFloat(unsigned int a)
|
|||||||
return d;
|
return d;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
// swap using char pointers
|
// swap using char pointers
|
||||||
SIMD_FORCE_INLINE void btSwapEndianDouble(double d, unsigned char *dst)
|
SIMD_FORCE_INLINE void btSwapEndianDouble(double d, unsigned char *dst)
|
||||||
{
|
{
|
||||||
@@ -660,7 +671,6 @@ SIMD_FORCE_INLINE void btSwapEndianDouble(double d, unsigned char* dst)
|
|||||||
dst[5] = src[2];
|
dst[5] = src[2];
|
||||||
dst[6] = src[1];
|
dst[6] = src[1];
|
||||||
dst[7] = src[0];
|
dst[7] = src[0];
|
||||||
|
|
||||||
}
|
}
|
||||||
|
|
||||||
// unswap using char pointers
|
// unswap using char pointers
|
||||||
@@ -693,16 +703,18 @@ SIMD_FORCE_INLINE void btSetZero(T* a, int n)
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
SIMD_FORCE_INLINE btScalar btLargeDot(const btScalar *a, const btScalar *b, int n)
|
SIMD_FORCE_INLINE btScalar btLargeDot(const btScalar *a, const btScalar *b, int n)
|
||||||
{
|
{
|
||||||
btScalar p0, q0, m0, p1, q1, m1, sum;
|
btScalar p0, q0, m0, p1, q1, m1, sum;
|
||||||
sum = 0;
|
sum = 0;
|
||||||
n -= 2;
|
n -= 2;
|
||||||
while (n >= 0) {
|
while (n >= 0)
|
||||||
p0 = a[0]; q0 = b[0];
|
{
|
||||||
|
p0 = a[0];
|
||||||
|
q0 = b[0];
|
||||||
m0 = p0 * q0;
|
m0 = p0 * q0;
|
||||||
p1 = a[1]; q1 = b[1];
|
p1 = a[1];
|
||||||
|
q1 = b[1];
|
||||||
m1 = p1 * q1;
|
m1 = p1 * q1;
|
||||||
sum += m0;
|
sum += m0;
|
||||||
sum += m1;
|
sum += m1;
|
||||||
@@ -711,7 +723,8 @@ SIMD_FORCE_INLINE btScalar btLargeDot(const btScalar *a, const btScalar *b, int
|
|||||||
n -= 2;
|
n -= 2;
|
||||||
}
|
}
|
||||||
n += 2;
|
n += 2;
|
||||||
while (n > 0) {
|
while (n > 0)
|
||||||
|
{
|
||||||
sum += (*a) * (*b);
|
sum += (*a) * (*b);
|
||||||
a++;
|
a++;
|
||||||
b++;
|
b++;
|
||||||
@@ -720,7 +733,6 @@ SIMD_FORCE_INLINE btScalar btLargeDot(const btScalar *a, const btScalar *b, int
|
|||||||
return sum;
|
return sum;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
// returns normalized value in range [-SIMD_PI, SIMD_PI]
|
// returns normalized value in range [-SIMD_PI, SIMD_PI]
|
||||||
SIMD_FORCE_INLINE btScalar btNormalizeAngle(btScalar angleInRadians)
|
SIMD_FORCE_INLINE btScalar btNormalizeAngle(btScalar angleInRadians)
|
||||||
{
|
{
|
||||||
@@ -739,8 +751,6 @@ SIMD_FORCE_INLINE btScalar btNormalizeAngle(btScalar angleInRadians)
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
///rudimentary class to provide type info
|
///rudimentary class to provide type info
|
||||||
struct btTypedObject
|
struct btTypedObject
|
||||||
{
|
{
|
||||||
@@ -755,23 +765,19 @@ struct btTypedObject
|
|||||||
}
|
}
|
||||||
};
|
};
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
///align a pointer to the provided alignment, upwards
|
///align a pointer to the provided alignment, upwards
|
||||||
template <typename T>T* btAlignPointer(T* unalignedPtr, size_t alignment)
|
template <typename T>
|
||||||
|
T *btAlignPointer(T *unalignedPtr, size_t alignment)
|
||||||
{
|
{
|
||||||
|
|
||||||
struct btConvertPointerSizeT
|
struct btConvertPointerSizeT
|
||||||
{
|
{
|
||||||
union
|
union {
|
||||||
{
|
|
||||||
T *ptr;
|
T *ptr;
|
||||||
size_t integer;
|
size_t integer;
|
||||||
};
|
};
|
||||||
};
|
};
|
||||||
btConvertPointerSizeT converter;
|
btConvertPointerSizeT converter;
|
||||||
|
|
||||||
|
|
||||||
const size_t bit_mask = ~(alignment - 1);
|
const size_t bit_mask = ~(alignment - 1);
|
||||||
converter.ptr = unalignedPtr;
|
converter.ptr = unalignedPtr;
|
||||||
converter.integer += alignment - 1;
|
converter.integer += alignment - 1;
|
||||||
@@ -779,5 +785,4 @@ template <typename T>T* btAlignPointer(T* unalignedPtr, size_t alignment)
|
|||||||
return converter.ptr;
|
return converter.ptr;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
#endif //BT_SCALAR_H
|
#endif //BT_SCALAR_H
|
||||||
|
|||||||
Reference in New Issue
Block a user