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092dfde68f
After the changes to use the copy attribute, building glibc for ia64 fails, even with older compilers, because sysdeps/ia64/fpu/sfp-machine.h has a definition of _strong_alias that now differs from the one in libc-symbols.h. That definition is a relic of this file coming from libgcc, as are some other such macro definitions in this file; in the glibc context, there is no need for those macros, and this patch removes them to fix the build. Tested with build-many-glibcs.py for ia64-linux-gnu. * sysdeps/ia64/fpu/sfp-machine.h (__LITTLE_ENDIAN): Remove. (__BIG_ENDIAN): Likewise. (__BYTE_ORDER): Likewise. (strong_alias): Likewise. (_strong_alias): Likewise.
91 lines
2.5 KiB
C
91 lines
2.5 KiB
C
#define _FP_W_TYPE_SIZE 64
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#define _FP_W_TYPE unsigned long
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#define _FP_WS_TYPE signed long
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#define _FP_I_TYPE long
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typedef int TItype __attribute__ ((mode (TI)));
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typedef unsigned int UTItype __attribute__ ((mode (TI)));
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#define TI_BITS (__CHAR_BIT__ * (int)sizeof(TItype))
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/* The type of the result of a floating point comparison. This must
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match `__libgcc_cmp_return__' in GCC for the target. */
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typedef int __gcc_CMPtype __attribute__ ((mode (__libgcc_cmp_return__)));
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#define CMPtype __gcc_CMPtype
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#define _FP_MUL_MEAT_Q(R,X,Y) \
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_FP_MUL_MEAT_2_wide(_FP_WFRACBITS_Q,R,X,Y,umul_ppmm)
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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
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#define _FP_NANFRAC_D _FP_QNANBIT_D
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#define _FP_NANFRAC_E _FP_QNANBIT_E, 0
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#define _FP_NANFRAC_Q _FP_QNANBIT_Q, 0
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#define _FP_KEEPNANFRACP 1
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#define _FP_QNANNEGATEDP 0
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#define _FP_NANSIGN_S 1
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#define _FP_NANSIGN_D 1
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#define _FP_NANSIGN_E 1
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#define _FP_NANSIGN_Q 1
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/* Here is something Intel misdesigned: the specs don't define
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the case where we have two NaNs with same mantissas, but
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different sign. Different operations pick up different NaNs. */
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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_GT_##wc(X, Y) \
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|| (_FP_FRAC_EQ_##wc(X,Y) && (OP == '+' || OP == '*'))) \
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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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else \
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{ \
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R##_s = Y##_s; \
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_FP_FRAC_COPY_##wc(R,Y); \
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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_EX_INVALID 0x01
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#define FP_EX_DENORM 0x02
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#define FP_EX_DIVZERO 0x04
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#define FP_EX_OVERFLOW 0x08
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#define FP_EX_UNDERFLOW 0x10
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#define FP_EX_INEXACT 0x20
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#define FP_EX_ALL \
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(FP_EX_INVALID | FP_EX_DENORM | FP_EX_DIVZERO | FP_EX_OVERFLOW \
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| FP_EX_UNDERFLOW | FP_EX_INEXACT)
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#define _FP_TININESS_AFTER_ROUNDING 1
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void __sfp_handle_exceptions (int);
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#define FP_HANDLE_EXCEPTIONS \
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do { \
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if (__builtin_expect (_fex, 0)) \
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__sfp_handle_exceptions (_fex); \
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} while (0);
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#define FP_TRAPPING_EXCEPTIONS (~_fcw & FP_EX_ALL)
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#define FP_RND_NEAREST 0
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#define FP_RND_ZERO 0xc00L
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#define FP_RND_PINF 0x800L
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#define FP_RND_MINF 0x400L
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#define FP_RND_MASK 0xc00L
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#define _FP_DECL_EX \
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unsigned long int _fcw __attribute__ ((unused)) = FP_RND_NEAREST
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#define FP_INIT_ROUNDMODE \
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do { \
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__asm__ __volatile__ ("mov.m %0 = ar.fpsr" : "=r" (_fcw)); \
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} while (0)
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#define FP_ROUNDMODE (_fcw & FP_RND_MASK)
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