/** 16x32 multiplication, followed by a 16-bit shift right. Results fits in 32 bits */ #define MULT16_32_Q16(a,b) ADD32(MULT16_16((a),SHR32((b),16)), SHR32(MULT16_16SU((a),((b)&0x0000ffff)),16))
/** Add two 32-bit values, ignore any overflows */ #define ADD32_ovflw(a,b) (celt_mips+=2,(opus_val32)((opus_uint32)(a)+(opus_uint32)(b))) /** Subtract two 32-bit values, ignore any overflows */ #define SUB32_ovflw(a,b) (celt_mips+=2,(opus_val32)((opus_uint32)(a)-(opus_uint32)(b))) /* Avoid MSVC warning C4146: unary minus operator applied to unsigned type */ /** Negate 32-bit value, ignore any overflows */ #define NEG32_ovflw(a) (celt_mips+=2,(opus_val32)(0-(opus_uint32)(a))) /** 32-bit shift left, ignoring overflows */ #define SHL32_ovflw(a,shift) ((opus_int32)((opus_uint32)(a)<<(shift))) /** 32-bit arithmetic shift right with rounding-to-nearest, ignoring overflows */ #define PSHR32_ovflw(a,shift) (SHR32(ADD32_ovflw(a, (EXTEND32(1)<<(shift)>>1)),shift))
static OPUS_INLINE short NEG16(int x)
{ int res; if (!VERIFY_SHORT(x))
{
fprintf (stderr, "NEG16: input is not short: %d\n", (int)x); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = -x; if (!VERIFY_SHORT(res))
{
fprintf (stderr, "NEG16: output is not short: %d\n", (int)res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips++; return res;
} static OPUS_INLINE int NEG32(opus_int64 x)
{
opus_int64 res; if (!VERIFY_INT(x))
{
fprintf (stderr, "NEG16: input is not int: %d\n", (int)x); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = -x; if (!VERIFY_INT(res))
{
fprintf (stderr, "NEG16: output is not int: %d\n", (int)res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=2; return res;
}
#define EXTRACT16(x) EXTRACT16_(x, __FILE__, __LINE__) static OPUS_INLINE short EXTRACT16_(int x, char *file, int line)
{ int res; if (!VERIFY_SHORT(x))
{
fprintf (stderr, "EXTRACT16: input is not short: %d in %s: line %d\n", x, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = x;
celt_mips++; return res;
}
#define EXTEND32(x) EXTEND32_(x, __FILE__, __LINE__) static OPUS_INLINE int EXTEND32_(int x, char *file, int line)
{ int res; if (!VERIFY_SHORT(x))
{
fprintf (stderr, "EXTEND32: input is not short: %d in %s: line %d\n", x, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = x;
celt_mips++; return res;
}
#define SHR16(a, shift) SHR16_(a, shift, __FILE__, __LINE__) static OPUS_INLINE short SHR16_(int a, int shift, char *file, int line)
{ int res; if (!VERIFY_SHORT(a) || !VERIFY_SHORT(shift))
{
fprintf (stderr, "SHR16: inputs are not short: %d >> %d in %s: line %d\n", a, shift, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = a>>shift; if (!VERIFY_SHORT(res))
{
fprintf (stderr, "SHR16: output is not short: %d in %s: line %d\n", res, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips++; return res;
} #define SHL16(a, shift) SHL16_(a, shift, __FILE__, __LINE__) static OPUS_INLINE short SHL16_(int a, int shift, char *file, int line)
{
opus_int32 res; if (!VERIFY_SHORT(a) || !VERIFY_SHORT(shift))
{
fprintf (stderr, "SHL16: inputs are not short: %d %d in %s: line %d\n", a, shift, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = (opus_int32)((opus_uint32)a<<shift); if (!VERIFY_SHORT(res))
{
fprintf (stderr, "SHL16: output is not short: %d in %s: line %d\n", res, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips++; return res;
}
static OPUS_INLINE int SHR32(opus_int64 a, int shift)
{
opus_int64 res; if (!VERIFY_INT(a) || !VERIFY_SHORT(shift))
{
fprintf (stderr, "SHR32: inputs are not int: %d %d\n", (int)a, shift); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = a>>shift; if (!VERIFY_INT(res))
{
fprintf (stderr, "SHR32: output is not int: %d\n", (int)res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=2; return res;
} #define SHL32(a, shift) SHL32_(a, shift, __FILE__, __LINE__) static OPUS_INLINE int SHL32_(opus_int64 a, int shift, char *file, int line)
{
opus_int64 res; if (!VERIFY_INT(a) || !VERIFY_SHORT(shift))
{
fprintf (stderr, "SHL32: inputs are not int: %lld %d in %s: line %d\n", (longlong)a, shift, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = (opus_int64)((opus_uint64)a<<shift); if (!VERIFY_INT(res))
{
fprintf (stderr, "SHL32: output is not int: %lld<<%d = %lld in %s: line %d\n", (longlong)a, shift, (longlong)res, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=2; return res;
}
#define ADD16(a, b) ADD16_(a, b, __FILE__, __LINE__) static OPUS_INLINE short ADD16_(int a, int b, char *file, int line)
{ int res; if (!VERIFY_SHORT(a) || !VERIFY_SHORT(b))
{
fprintf (stderr, "ADD16: inputs are not short: %d %d in %s: line %d\n", a, b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = a+b; if (!VERIFY_SHORT(res))
{
fprintf (stderr, "ADD16: output is not short: %d+%d=%d in %s: line %d\n", a,b,res, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips++; return res;
}
#define SUB16(a, b) SUB16_(a, b, __FILE__, __LINE__) static OPUS_INLINE short SUB16_(int a, int b, char *file, int line)
{ int res; if (!VERIFY_SHORT(a) || !VERIFY_SHORT(b))
{
fprintf (stderr, "SUB16: inputs are not short: %d %d in %s: line %d\n", a, b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = a-b; if (!VERIFY_SHORT(res))
{
fprintf (stderr, "SUB16: output is not short: %d in %s: line %d\n", res, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips++; return res;
}
#define ADD32(a, b) ADD32_(a, b, __FILE__, __LINE__) static OPUS_INLINE int ADD32_(opus_int64 a, opus_int64 b, char *file, int line)
{
opus_int64 res; if (!VERIFY_INT(a) || !VERIFY_INT(b))
{
fprintf (stderr, "ADD32: inputs are not int: %d %d in %s: line %d\n", (int)a, (int)b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = a+b; if (!VERIFY_INT(res))
{
fprintf (stderr, "ADD32: output is not int: %d in %s: line %d\n", (int)res, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=2; return res;
}
#define SUB32(a, b) SUB32_(a, b, __FILE__, __LINE__) static OPUS_INLINE int SUB32_(opus_int64 a, opus_int64 b, char *file, int line)
{
opus_int64 res; if (!VERIFY_INT(a) || !VERIFY_INT(b))
{
fprintf (stderr, "SUB32: inputs are not int: %d %d in %s: line %d\n", (int)a, (int)b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = a-b; if (!VERIFY_INT(res))
{
fprintf (stderr, "SUB32: output is not int: %d in %s: line %d\n", (int)res, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=2; return res;
}
#undef UADD32 #define UADD32(a, b) UADD32_(a, b, __FILE__, __LINE__) static OPUS_INLINE unsignedint UADD32_(opus_uint64 a, opus_uint64 b, char *file, int line)
{
opus_uint64 res; if (!VERIFY_UINT(a) || !VERIFY_UINT(b))
{
fprintf (stderr, "UADD32: inputs are not uint32: %llu %llu in %s: line %d\n", (unsignedlonglong)a, (unsignedlonglong)b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = a+b; if (!VERIFY_UINT(res))
{
fprintf (stderr, "UADD32: output is not uint32: %llu in %s: line %d\n", (unsignedlonglong)res, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=2; return res;
}
#undef USUB32 #define USUB32(a, b) USUB32_(a, b, __FILE__, __LINE__) static OPUS_INLINE unsignedint USUB32_(opus_uint64 a, opus_uint64 b, char *file, int line)
{
opus_uint64 res; if (!VERIFY_UINT(a) || !VERIFY_UINT(b))
{
fprintf (stderr, "USUB32: inputs are not uint32: %llu %llu in %s: line %d\n", (unsignedlonglong)a, (unsignedlonglong)b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
} if (a<b)
{
fprintf (stderr, "USUB32: inputs underflow: %llu < %llu in %s: line %d\n", (unsignedlonglong)a, (unsignedlonglong)b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = a-b; if (!VERIFY_UINT(res))
{
fprintf (stderr, "USUB32: output is not uint32: %llu - %llu = %llu in %s: line %d\n", (unsignedlonglong)a, (unsignedlonglong)b, (unsignedlonglong)res, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=2; return res;
}
/* result fits in 16 bits */ static OPUS_INLINE short MULT16_16_16(int a, int b)
{ int res; if (!VERIFY_SHORT(a) || !VERIFY_SHORT(b))
{
fprintf (stderr, "MULT16_16_16: inputs are not short: %d %d\n", a, b); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = a*b; if (!VERIFY_SHORT(res))
{
fprintf (stderr, "MULT16_16_16: output is not short: %d\n", res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips++; return res;
}
/* result fits in 32 bits */ static OPUS_INLINE int MULT32_32_32(opus_int64 a, opus_int64 b)
{
opus_int64 res; if (!VERIFY_INT(a) || !VERIFY_INT(b))
{
fprintf (stderr, "MULT32_32_32: inputs are not int: %lld %lld\n", (longlong)a, (longlong)b); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = a*b; if (!VERIFY_INT(res))
{
fprintf (stderr, "MULT32_32_32: output is not int: %lld\n", (longlong)res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=5; return res;
}
static OPUS_INLINE int MULT32_32_Q16(opus_int64 a, opus_int64 b)
{
opus_int64 res; if (!VERIFY_INT(a) || !VERIFY_INT(b))
{
fprintf (stderr, "MULT32_32_Q16: inputs are not int: %lld %lld\n", (longlong)a, (longlong)b); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = ((opus_int64)(a)*(opus_int64)(b)) >> 16; if (!VERIFY_INT(res))
{
fprintf (stderr, "MULT32_32_Q16: output is not int: %lld*%lld=%lld\n", (longlong)a, (longlong)b, (longlong)res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=5; return res;
}
#define MULT16_16(a, b) MULT16_16_(a, b, __FILE__, __LINE__) static OPUS_INLINE int MULT16_16_(int a, int b, char *file, int line)
{
opus_int64 res; if (!VERIFY_SHORT(a) || !VERIFY_SHORT(b))
{
fprintf (stderr, "MULT16_16: inputs are not short: %d %d in %s: line %d\n", a, b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = ((opus_int64)a)*b; if (!VERIFY_INT(res))
{
fprintf (stderr, "MULT16_16: output is not int: %d in %s: line %d\n", (int)res, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips++; return res;
}
#define MULT16_32_QX(a, b, Q) MULT16_32_QX_(a, b, Q, __FILE__, __LINE__) static OPUS_INLINE int MULT16_32_QX_(int a, opus_int64 b, int Q, char *file, int line)
{
opus_int64 res; if (!VERIFY_SHORT(a) || !VERIFY_INT(b))
{
fprintf (stderr, "MULT16_32_Q%d: inputs are not short+int: %d %d in %s: line %d\n", Q, (int)a, (int)b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
} if (ABS32(b)>=((opus_int64)(1)<<(16+Q)))
{
fprintf (stderr, "MULT16_32_Q%d: second operand too large: %d %d in %s: line %d\n", Q, (int)a, (int)b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = (((opus_int64)a)*(opus_int64)b) >> Q; if (!VERIFY_INT(res))
{
fprintf (stderr, "MULT16_32_Q%d: output is not int: %d*%d=%d in %s: line %d\n", Q, (int)a, (int)b,(int)res, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
} if (Q==15)
celt_mips+=3; else
celt_mips+=4; return res;
}
#define MULT16_32_PX(a, b, Q) MULT16_32_PX_(a, b, Q, __FILE__, __LINE__) static OPUS_INLINE int MULT16_32_PX_(int a, opus_int64 b, int Q, char *file, int line)
{
opus_int64 res; if (!VERIFY_SHORT(a) || !VERIFY_INT(b))
{
fprintf (stderr, "MULT16_32_P%d: inputs are not short+int: %d %d in %s: line %d\n\n", Q, (int)a, (int)b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
} if (ABS32(b)>=((opus_int64)(1)<<(16+Q)))
{
fprintf (stderr, "MULT16_32_Q%d: second operand too large: %d %d in %s: line %d\n\n", Q, (int)a, (int)b,file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = ((((opus_int64)a)*(opus_int64)b) + (((opus_val32)(1)<<Q)>>1))>> Q; if (!VERIFY_INT(res))
{
fprintf (stderr, "MULT16_32_P%d: output is not int: %d*%d=%d in %s: line %d\n\n", Q, (int)a, (int)b,(int)res, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
} if (Q==15)
celt_mips+=4; else
celt_mips+=5; return res;
}
static OPUS_INLINE int SATURATE(int a, int b)
{ if (a>b)
a=b; if (a<-b)
a = -b;
celt_mips+=3; return a;
}
static OPUS_INLINE opus_int16 SATURATE16(opus_int32 a)
{
celt_mips+=3; if (a>32767) return32767; elseif (a<-32768) return -32768; elsereturn a;
}
static OPUS_INLINE int MULT16_16_Q11_32(int a, int b)
{
opus_int64 res; if (!VERIFY_SHORT(a) || !VERIFY_SHORT(b))
{
fprintf (stderr, "MULT16_16_Q11: inputs are not short: %d %d\n", a, b); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = ((opus_int64)a)*b;
res >>= 11; if (!VERIFY_INT(res))
{
fprintf (stderr, "MULT16_16_Q11: output is not short: %d*%d=%d\n", (int)a, (int)b, (int)res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=3; return res;
} static OPUS_INLINE short MULT16_16_Q13(int a, int b)
{
opus_int64 res; if (!VERIFY_SHORT(a) || !VERIFY_SHORT(b))
{
fprintf (stderr, "MULT16_16_Q13: inputs are not short: %d %d\n", a, b); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = ((opus_int64)a)*b;
res >>= 13; if (!VERIFY_SHORT(res))
{
fprintf (stderr, "MULT16_16_Q13: output is not short: %d*%d=%d\n", a, b, (int)res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=3; return res;
} static OPUS_INLINE short MULT16_16_Q14(int a, int b)
{
opus_int64 res; if (!VERIFY_SHORT(a) || !VERIFY_SHORT(b))
{
fprintf (stderr, "MULT16_16_Q14: inputs are not short: %d %d\n", a, b); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = ((opus_int64)a)*b;
res >>= 14; if (!VERIFY_SHORT(res))
{
fprintf (stderr, "MULT16_16_Q14: output is not short: %d\n", (int)res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=3; return res;
}
#define MULT16_16_Q15(a, b) MULT16_16_Q15_(a, b, __FILE__, __LINE__) static OPUS_INLINE short MULT16_16_Q15_(int a, int b, char *file, int line)
{
opus_int64 res; if (!VERIFY_SHORT(a) || !VERIFY_SHORT(b))
{
fprintf (stderr, "MULT16_16_Q15: inputs are not short: %d %d in %s: line %d\n", a, b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = ((opus_int64)a)*b;
res >>= 15; if (!VERIFY_SHORT(res))
{
fprintf (stderr, "MULT16_16_Q15: output is not short: %d in %s: line %d\n", (int)res, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=1; return res;
}
static OPUS_INLINE short MULT16_16_P13(int a, int b)
{
opus_int64 res; if (!VERIFY_SHORT(a) || !VERIFY_SHORT(b))
{
fprintf (stderr, "MULT16_16_P13: inputs are not short: %d %d\n", a, b); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = ((opus_int64)a)*b;
res += 4096; if (!VERIFY_INT(res))
{
fprintf (stderr, "MULT16_16_P13: overflow: %d*%d=%d\n", a, b, (int)res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res >>= 13; if (!VERIFY_SHORT(res))
{
fprintf (stderr, "MULT16_16_P13: output is not short: %d*%d=%d\n", a, b, (int)res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=4; return res;
} static OPUS_INLINE short MULT16_16_P14(int a, int b)
{
opus_int64 res; if (!VERIFY_SHORT(a) || !VERIFY_SHORT(b))
{
fprintf (stderr, "MULT16_16_P14: inputs are not short: %d %d\n", a, b); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = ((opus_int64)a)*b;
res += 8192; if (!VERIFY_INT(res))
{
fprintf (stderr, "MULT16_16_P14: overflow: %d*%d=%d\n", a, b, (int)res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res >>= 14; if (!VERIFY_SHORT(res))
{
fprintf (stderr, "MULT16_16_P14: output is not short: %d*%d=%d\n", a, b, (int)res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=4; return res;
} static OPUS_INLINE short MULT16_16_P15(int a, int b)
{
opus_int64 res; if (!VERIFY_SHORT(a) || !VERIFY_SHORT(b))
{
fprintf (stderr, "MULT16_16_P15: inputs are not short: %d %d\n", a, b); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = ((opus_int64)a)*b;
res += 16384; if (!VERIFY_INT(res))
{
fprintf (stderr, "MULT16_16_P15: overflow: %d*%d=%d\n", a, b, (int)res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res >>= 15; if (!VERIFY_SHORT(res))
{
fprintf (stderr, "MULT16_16_P15: output is not short: %d*%d=%d\n", a, b, (int)res); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=2; return res;
}
#define DIV32_16(a, b) DIV32_16_(a, b, __FILE__, __LINE__)
static OPUS_INLINE int DIV32_16_(opus_int64 a, opus_int64 b, char *file, int line)
{
opus_int64 res; if (b==0)
{
fprintf(stderr, "DIV32_16: divide by zero: %d/%d in %s: line %d\n", (int)a, (int)b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif return0;
} if (!VERIFY_INT(a) || !VERIFY_SHORT(b))
{
fprintf (stderr, "DIV32_16: inputs are not int/short: %d %d in %s: line %d\n", (int)a, (int)b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = a/b; if (!VERIFY_SHORT(res))
{
fprintf (stderr, "DIV32_16: output is not short: %d / %d = %d in %s: line %d\n", (int)a,(int)b,(int)res, file, line); if (res>32767)
res = 32767; if (res<-32768)
res = -32768; #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=35; return res;
}
#define DIV32(a, b) DIV32_(a, b, __FILE__, __LINE__) static OPUS_INLINE int DIV32_(opus_int64 a, opus_int64 b, char *file, int line)
{
opus_int64 res; if (b==0)
{
fprintf(stderr, "DIV32: divide by zero: %d/%d in %s: line %d\n", (int)a, (int)b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif return0;
}
if (!VERIFY_INT(a) || !VERIFY_INT(b))
{
fprintf (stderr, "DIV32: inputs are not int/short: %d %d in %s: line %d\n", (int)a, (int)b, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
res = a/b; if (!VERIFY_INT(res))
{
fprintf (stderr, "DIV32: output is not int: %d in %s: line %d\n", (int)res, file, line); #ifdef FIXED_DEBUG_ASSERT
celt_assert(0); #endif
}
celt_mips+=70; return res;
}
static OPUS_INLINE opus_val16 SIG2WORD16_generic(celt_sig x)
{
x = PSHR32(x, SIG_SHIFT);
x = MAX32(x, -32768);
x = MIN32(x, 32767); return EXTRACT16(x);
} #define SIG2WORD16(x) (SIG2WORD16_generic(x))
#undef PRINT_MIPS #define PRINT_MIPS(file) do {fprintf (file, "total complexity = %llu MIPS\n", (unsignedlonglong)celt_mips);} while (0);
#endif
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