#ifndef IMPORTS_H
#define IMPORTS_H
#include "compiler.h"
#include "glheader.h"
#ifdef __cplusplus
extern "C" {
#endif
#define MALLOC_STRUCT(T) (struct T *) malloc(sizeof(struct T))
#define CALLOC_STRUCT(T) (struct T *) calloc(1, sizeof(struct T))
#define ADD_POINTERS(A, B) ( (GLubyte *) (A) + (uintptr_t) (B) )
typedef union { GLfloat f; GLint i; GLuint u; } fi_type;
#define MAX_GLUSHORT 0xffff
#define MAX_GLUINT 0xffffffff
#define DEG2RAD (M_PI/180.0)
#if (!defined(_XOPEN_SOURCE) || (_XOPEN_SOURCE < 600)) && !defined(_ISOC99_SOURCE) \
&& (!defined(__STDC_VERSION__) || (__STDC_VERSION__ < 199901L)) \
&& (!defined(_MSC_VER) || (_MSC_VER < 1400))
#define acosf(f) ((float) acos(f))
#define asinf(f) ((float) asin(f))
#define atan2f(x,y) ((float) atan2(x,y))
#define atanf(f) ((float) atan(f))
#define ceilf(f) ((float) ceil(f))
#define cosf(f) ((float) cos(f))
#define coshf(f) ((float) cosh(f))
#define expf(f) ((float) exp(f))
#define exp2f(f) ((float) exp2(f))
#define floorf(f) ((float) floor(f))
#define logf(f) ((float) log(f))
#ifdef ANDROID
#define log2f(f) (logf(f) * (float) (1.0 / M_LN2))
#else
#define log2f(f) ((float) log2(f))
#endif
#define powf(x,y) ((float) pow(x,y))
#define sinf(f) ((float) sin(f))
#define sinhf(f) ((float) sinh(f))
#define sqrtf(f) ((float) sqrt(f))
#define tanf(f) ((float) tan(f))
#define tanhf(f) ((float) tanh(f))
#define acoshf(f) ((float) acosh(f))
#define asinhf(f) ((float) asinh(f))
#define atanhf(f) ((float) atanh(f))
#endif
#if defined(_MSC_VER)
#if _MSC_VER < 1800
static inline float truncf(float x) { return x < 0.0f ? ceilf(x) : floorf(x); }
static inline float exp2f(float x) { return powf(2.0f, x); }
static inline float log2f(float x) { return logf(x) * 1.442695041f; }
static inline float asinhf(float x) { return logf(x + sqrtf(x * x + 1.0f)); }
static inline float acoshf(float x) { return logf(x + sqrtf(x * x - 1.0f)); }
static inline float atanhf(float x) { return (logf(1.0f + x) - logf(1.0f - x)) / 2.0f; }
static inline int isblank(int ch) { return ch == ' ' || ch == '\t'; }
#define strtoll(p, e, b) _strtoi64(p, e, b)
#endif
#define strcasecmp(s1, s2) _stricmp(s1, s2)
#endif
#ifndef signbit
#define signbit(x) ((x) < 0.0f)
#endif
static inline float
INV_SQRTF(float x)
{
return 1.0F / sqrtf(x);
}
static inline GLfloat LOG2(GLfloat x)
{
#if 0#endif
fi_type num;
GLint log_2;
num.f = x;
log_2 = ((num.i >> 23) & 255) - 128;
num.i &= ~(255 << 23);
num.i += 127 << 23;
num.f = ((-1.0f/3) * num.f + 2) * num.f - 2.0f/3;
return num.f + log_2;
}
#if defined(isfinite)
#define IS_INF_OR_NAN(x) (!isfinite(x))
#elif defined(finite)
#define IS_INF_OR_NAN(x) (!finite(x))
#elif defined(__STDC_VERSION__) && __STDC_VERSION__ >= 199901L
#define IS_INF_OR_NAN(x) (!isfinite(x))
#else
#define IS_INF_OR_NAN(x) (!finite(x))
#endif
#if defined(__gnu_linux__)
#define CEILF(x) ceilf(x)
#define FLOORF(x) floorf(x)
#define FABSF(x) fabsf(x)
#define LOGF(x) logf(x)
#define EXPF(x) expf(x)
#define LDEXPF(x,y) ldexpf(x,y)
#define FREXPF(x,y) frexpf(x,y)
#else
#define CEILF(x) ((GLfloat) ceil(x))
#define FLOORF(x) ((GLfloat) floor(x))
#define FABSF(x) ((GLfloat) fabs(x))
#define LOGF(x) ((GLfloat) log(x))
#define EXPF(x) ((GLfloat) exp(x))
#define LDEXPF(x,y) ((GLfloat) ldexp(x,y))
#define FREXPF(x,y) ((GLfloat) frexp(x,y))
#endif
static inline int IROUND(float f)
{
return (int) ((f >= 0.0F) ? (f + 0.5F) : (f - 0.5F));
}
static inline int IROUND_POS(float f)
{
assert(f >= 0.0F);
return (int) (f + 0.5F);
}
#ifdef __x86_64__
# include <xmmintrin.h>
#endif
static inline int F_TO_I(float f)
{
#if defined(USE_X86_ASM) && defined(__GNUC__) && defined(__i386__)
int r;
__asm__ ("fistpl %0" : "=m" (r) : "t" (f) : "st");
return r;
#elif defined(USE_X86_ASM) && defined(_MSC_VER)
int r;
_asm {
fld f
fistp r
}
return r;
#elif defined(__x86_64__)
return _mm_cvt_ss2si(_mm_load_ss(&f));
#else
return IROUND(f);
#endif
}
static inline int IFLOOR(float f)
{
#if defined(USE_X86_ASM) && defined(__GNUC__) && defined(__i386__)
int ai, bi;
double af, bf;
af = (3 << 22) + 0.5 + (double)f;
bf = (3 << 22) + 0.5 - (double)f;
__asm__ ("fstps %0" : "=m" (ai) : "t" (af) : "st");
__asm__ ("fstps %0" : "=m" (bi) : "t" (bf) : "st");
return (ai - bi) >> 1;
#else
int ai, bi;
double af, bf;
fi_type u;
af = (3 << 22) + 0.5 + (double)f;
bf = (3 << 22) + 0.5 - (double)f;
u.f = (float) af; ai = u.i;
u.f = (float) bf; bi = u.i;
return (ai - bi) >> 1;
#endif
}
static inline int ICEIL(float f)
{
#if defined(USE_X86_ASM) && defined(__GNUC__) && defined(__i386__)
int ai, bi;
double af, bf;
af = (3 << 22) + 0.5 + (double)f;
bf = (3 << 22) + 0.5 - (double)f;
__asm__ ("fstps %0" : "=m" (ai) : "t" (af) : "st");
__asm__ ("fstps %0" : "=m" (bi) : "t" (bf) : "st");
return (ai - bi + 1) >> 1;
#else
int ai, bi;
double af, bf;
fi_type u;
af = (3 << 22) + 0.5 + (double)f;
bf = (3 << 22) + 0.5 - (double)f;
u.f = (float) af; ai = u.i;
u.f = (float) bf; bi = u.i;
return (ai - bi + 1) >> 1;
#endif
}
static inline int
_mesa_is_pow_two(int x)
{
return !(x & (x - 1));
}
static inline int32_t
_mesa_next_pow_two_32(uint32_t x)
{
#ifdef HAVE___BUILTIN_CLZ
uint32_t y = (x != 1);
return (1 + y) << ((__builtin_clz(x - y) ^ 31) );
#else
x--;
x |= x >> 1;
x |= x >> 2;
x |= x >> 4;
x |= x >> 8;
x |= x >> 16;
x++;
return x;
#endif
}
static inline int64_t
_mesa_next_pow_two_64(uint64_t x)
{
#ifdef HAVE___BUILTIN_CLZLL
uint64_t y = (x != 1);
STATIC_ASSERT(sizeof(x) == sizeof(long long));
return (1 + y) << ((__builtin_clzll(x - y) ^ 63));
#else
x--;
x |= x >> 1;
x |= x >> 2;
x |= x >> 4;
x |= x >> 8;
x |= x >> 16;
x |= x >> 32;
x++;
return x;
#endif
}
static inline GLuint
_mesa_logbase2(GLuint n)
{
#ifdef HAVE___BUILTIN_CLZ
return (31 - __builtin_clz(n | 1));
#else
GLuint pos = 0;
if (n >= 1<<16) { n >>= 16; pos += 16; }
if (n >= 1<< 8) { n >>= 8; pos += 8; }
if (n >= 1<< 4) { n >>= 4; pos += 4; }
if (n >= 1<< 2) { n >>= 2; pos += 2; }
if (n >= 1<< 1) { pos += 1; }
return pos;
#endif
}
static inline GLboolean
_mesa_little_endian(void)
{
const GLuint ui = 1;
return *((const GLubyte *) &ui);
}
extern void *
_mesa_align_malloc( size_t bytes, unsigned long alignment );
extern void *
_mesa_align_calloc( size_t bytes, unsigned long alignment );
extern void
_mesa_align_free( void *ptr );
extern void *
_mesa_align_realloc(void *oldBuffer, size_t oldSize, size_t newSize,
unsigned long alignment);
extern void *
_mesa_exec_malloc( GLuint size );
extern void
_mesa_exec_free( void *addr );
#ifndef FFS_DEFINED
#define FFS_DEFINED 1
#ifdef HAVE___BUILTIN_FFS
#define ffs __builtin_ffs
#else
extern int ffs(int i);
#endif
#ifdef HAVE___BUILTIN_FFSLL
#define ffsll __builtin_ffsll
#else
extern int ffsll(long long int i);
#endif
#endif
#ifdef HAVE___BUILTIN_POPCOUNT
#define _mesa_bitcount(i) __builtin_popcount(i)
#else
extern unsigned int
_mesa_bitcount(unsigned int n);
#endif
#ifdef HAVE___BUILTIN_POPCOUNTLL
#define _mesa_bitcount_64(i) __builtin_popcountll(i)
#else
extern unsigned int
_mesa_bitcount_64(uint64_t n);
#endif
static inline unsigned int
_mesa_fls(unsigned int n)
{
#ifdef HAVE___BUILTIN_CLZ
return n == 0 ? 0 : 32 - __builtin_clz(n);
#else
unsigned int v = 1;
if (n == 0)
return 0;
while (n >>= 1)
v++;
return v;
#endif
}
extern int
_mesa_round_to_even(float val);
extern GLhalfARB
_mesa_float_to_half(float f);
extern float
_mesa_half_to_float(GLhalfARB h);
extern char *
_mesa_strdup( const char *s );
extern float
_mesa_strtof( const char *s, char **end );
extern unsigned int
_mesa_str_checksum(const char *str);
extern int
_mesa_snprintf( char *str, size_t size, const char *fmt, ... ) PRINTFLIKE(3, 4);
extern int
_mesa_vsnprintf(char *str, size_t size, const char *fmt, va_list arg);
#if defined(_MSC_VER) && !defined(snprintf)
#define snprintf _snprintf
#endif
#ifdef __cplusplus
}
#endif
#endif