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Blame sysdeps/aarch64/sfp-machine.h

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#include <fenv.h>
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#include <fpu_control.h>
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#define _FP_W_TYPE_SIZE		64
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#define _FP_W_TYPE		unsigned long long
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#define _FP_WS_TYPE		signed long long
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#define _FP_I_TYPE		long long
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#define _FP_MUL_MEAT_S(R,X,Y)					\
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  _FP_MUL_MEAT_1_imm(_FP_WFRACBITS_S,R,X,Y)
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#define _FP_MUL_MEAT_D(R,X,Y)					\
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  _FP_MUL_MEAT_1_wide(_FP_WFRACBITS_D,R,X,Y,umul_ppmm)
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#define _FP_MUL_MEAT_Q(R,X,Y)					\
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  _FP_MUL_MEAT_2_wide_3mul(_FP_WFRACBITS_Q,R,X,Y,umul_ppmm)
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#define _FP_DIV_MEAT_S(R,X,Y)	_FP_DIV_MEAT_1_imm(S,R,X,Y,_FP_DIV_HELP_imm)
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#define _FP_DIV_MEAT_D(R,X,Y)	_FP_DIV_MEAT_1_udiv_norm(D,R,X,Y)
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#define _FP_DIV_MEAT_Q(R,X,Y)	_FP_DIV_MEAT_2_udiv(Q,R,X,Y)
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#define _FP_NANFRAC_S		((_FP_QNANBIT_S << 1) - 1)
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#define _FP_NANFRAC_D		((_FP_QNANBIT_D << 1) - 1)
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#define _FP_NANFRAC_Q		((_FP_QNANBIT_Q << 1) - 1), -1
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#define _FP_NANSIGN_S		0
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#define _FP_NANSIGN_D		0
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#define _FP_NANSIGN_Q		0
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#define _FP_KEEPNANFRACP 1
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#define _FP_QNANNEGATEDP 0
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/* From my experiments it seems X is chosen unless one of the
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   NaNs is sNaN,  in which case the result is NANSIGN/NANFRAC.  */
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#define _FP_CHOOSENAN(fs, wc, R, X, Y, OP)			\
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  do {								\
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    if ((_FP_FRAC_HIGH_RAW_##fs(X) |				\
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	 _FP_FRAC_HIGH_RAW_##fs(Y)) & _FP_QNANBIT_##fs)		\
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      {								\
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	R##_s = _FP_NANSIGN_##fs;				\
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        _FP_FRAC_SET_##wc(R,_FP_NANFRAC_##fs);			\
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      }								\
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    else							\
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      {								\
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	R##_s = X##_s;						\
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        _FP_FRAC_COPY_##wc(R,X);				\
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      }								\
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    R##_c = FP_CLS_NAN;						\
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  } while (0)
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#define _FP_DECL_EX		fpu_control_t _fcw
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#define FP_ROUNDMODE		(_fcw & _FPU_FPCR_RM_MASK)
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#define FP_RND_NEAREST		FE_TONEAREST
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#define FP_RND_ZERO		FE_TOWARDZERO
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#define FP_RND_PINF		FE_UPWARD
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#define FP_RND_MINF		FE_DOWNWARD
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#define FP_EX_INVALID		FE_INVALID
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#define FP_EX_OVERFLOW		FE_OVERFLOW
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#define FP_EX_UNDERFLOW		FE_UNDERFLOW
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#define FP_EX_DIVZERO		FE_DIVBYZERO
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#define FP_EX_INEXACT		FE_INEXACT
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#define _FP_TININESS_AFTER_ROUNDING 0
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#define FP_INIT_ROUNDMODE			\
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do {						\
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  _FPU_GETCW (_fcw);				\
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} while (0)
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#define FP_HANDLE_EXCEPTIONS						\
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  do {									\
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    const float fp_max = __FLT_MAX__;					\
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    const float fp_min = __FLT_MIN__;					\
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    const float fp_1e32 = 1.0e32f;					\
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    const float fp_zero = 0.0;						\
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    const float fp_one = 1.0;						\
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    unsigned fpsr;							\
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    if (_fex & FP_EX_INVALID)						\
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      {									\
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        __asm__ __volatile__ ("fdiv\ts0, %s0, %s0"			\
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			      :						\
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			      : "w" (fp_zero)				\
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			      : "s0");					\
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	__asm__ __volatile__ ("mrs\t%0, fpsr" : "=r" (fpsr));		\
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      }									\
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    if (_fex & FP_EX_DIVZERO)						\
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      {									\
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	__asm__ __volatile__ ("fdiv\ts0, %s0, %s1"			\
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			      :						\
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			      : "w" (fp_one), "w" (fp_zero)		\
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			      : "s0");					\
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	__asm__ __volatile__ ("mrs\t%0, fpsr" : "=r" (fpsr));		\
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      }									\
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    if (_fex & FP_EX_OVERFLOW)						\
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      {									\
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        __asm__ __volatile__ ("fadd\ts0, %s0, %s1"			\
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			      :						\
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			      : "w" (fp_max), "w" (fp_1e32)		\
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			      : "s0");					\
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        __asm__ __volatile__ ("mrs\t%0, fpsr" : "=r" (fpsr));		\
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      }									\
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    if (_fex & FP_EX_UNDERFLOW)						\
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      {									\
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	__asm__ __volatile__ ("fmul\ts0, %s0, %s0"			\
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			      :						\
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			      : "w" (fp_min)				\
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			      : "s0");					\
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	__asm__ __volatile__ ("mrs\t%0, fpsr" : "=r" (fpsr));		\
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      }									\
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    if (_fex & FP_EX_INEXACT)						\
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      {									\
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	__asm__ __volatile__ ("fsub\ts0, %s0, %s1"			\
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			      :						\
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			      : "w" (fp_max), "w" (fp_one)		\
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			      : "s0");					\
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	__asm__ __volatile__ ("mrs\t%0, fpsr" : "=r" (fpsr));		\
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      }									\
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  } while (0)
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#define FP_TRAPPING_EXCEPTIONS ((_fcw >> FE_EXCEPT_SHIFT) & FE_ALL_EXCEPT)