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alpha: Streamline __setfpucw
The convert_bit macro allows the compiler to translate the bit positions more efficiently. The assumption of only running at program startup allows eliding the __ieee_get_fp_control call.
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@ -1,5 +1,8 @@
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2012-12-13 Richard Henderson <rth@redhat.com>
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* sysdeps/unix/sysv/linux/alpha/setfpucw.c (__setfpucw): Rewrite
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with the assumption of being used at program startup only.
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* sysdeps/unix/sysv/linux/alpha/nptl/localplt.data: Add optional
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entries for _OtsConvertFloatTX, _OtsCvtQUX, _OtsCvtXQ, _OtsGtrX,
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_OtsLeqX, _OtsNintXQ.
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@ -1,5 +1,5 @@
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/* Set FP exception mask and rounding mode.
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Copyright (C) 1996, 1997, 1998, 2003 Free Software Foundation, Inc.
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Copyright (C) 1996-2012 Free Software Foundation, Inc.
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This file is part of the GNU C Library.
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The GNU C Library is free software; you can redistribute it and/or
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@ -17,63 +17,45 @@
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<http://www.gnu.org/licenses/>. */
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#include <fpu_control.h>
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#include <asm/fpu.h>
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extern void __ieee_set_fp_control (unsigned long);
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libc_hidden_proto(__ieee_set_fp_control)
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extern unsigned long __ieee_get_fp_control (void);
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libc_hidden_proto(__ieee_get_fp_control)
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static inline unsigned long
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rdfpcr (void)
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{
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unsigned long fpcr;
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asm ("excb; mf_fpcr %0" : "=f"(fpcr));
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return fpcr;
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}
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#include <fenv_libc.h>
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static inline void
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wrfpcr (unsigned long fpcr)
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{
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asm volatile ("mt_fpcr %0; excb" : : "f"(fpcr));
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}
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#define convert_bit(M, F, T) \
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((T) < (F) \
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? ((M) / ((F) / (T))) & (T) \
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: ((M) & (F)) * ((T) / (F)))
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void
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__setfpucw (fpu_control_t fpu_control)
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{
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unsigned long fpcr = 0, fpcw = 0;
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unsigned long fpcr, swcr, fc = (int)fpu_control;
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if (!fpu_control)
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fpu_control = _FPU_DEFAULT;
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/* ??? If this was a real external interface we'd want to read the current
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exception state with __ieee_get_fp_control. But this is an internal
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function only called at process startup, so there's no point in trying
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to preserve exceptions that cannot have been raised yet. Indeed, this
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entire function is likely to be one big nop unless the user overrides
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the default __fpu_control variable. */
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/* first, set dynamic rounding mode: */
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/* Convert the rounding mode from fpu_control.h format. */
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const unsigned long conv_rnd
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= ( (FE_TOWARDZERO << (_FPU_RC_ZERO >> 8))
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| (FE_DOWNWARD << (_FPU_RC_DOWN >> 8))
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| (FE_TONEAREST << (_FPU_RC_NEAREST >> 8))
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| (FE_UPWARD << (_FPU_RC_UP >> 8)));
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fpcr = rdfpcr();
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fpcr &= ~FPCR_DYN_MASK;
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switch (fpu_control & 0xc00)
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{
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case _FPU_RC_NEAREST: fpcr |= FPCR_DYN_NORMAL; break;
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case _FPU_RC_DOWN: fpcr |= FPCR_DYN_MINUS; break;
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case _FPU_RC_UP: fpcr |= FPCR_DYN_PLUS; break;
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case _FPU_RC_ZERO: fpcr |= FPCR_DYN_CHOPPED; break;
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}
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wrfpcr(fpcr);
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fpcr = ((conv_rnd >> ((fc >> 8) & 3)) & 3) << FPCR_ROUND_SHIFT;
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/* now tell kernel about traps that we like to hear about: */
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/* Convert the exception mask from fpu_control.h format. */
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swcr = convert_bit (~fc, _FPU_MASK_IM, FE_INVALID >> SWCR_ENABLE_SHIFT);
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swcr |= convert_bit (~fc, _FPU_MASK_DM, FE_UNDERFLOW >> SWCR_ENABLE_SHIFT);
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swcr |= convert_bit (~fc, _FPU_MASK_ZM, FE_DIVBYZERO >> SWCR_ENABLE_SHIFT);
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swcr |= convert_bit (~fc, _FPU_MASK_OM, FE_OVERFLOW >> SWCR_ENABLE_SHIFT);
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swcr |= convert_bit (~fc, _FPU_MASK_PM, FE_INEXACT >> SWCR_ENABLE_SHIFT);
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fpcw = __ieee_get_fp_control();
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fpcw &= ~IEEE_TRAP_ENABLE_MASK;
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if (!(fpu_control & _FPU_MASK_IM)) fpcw |= IEEE_TRAP_ENABLE_INV;
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if (!(fpu_control & _FPU_MASK_DM)) fpcw |= IEEE_TRAP_ENABLE_UNF;
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if (!(fpu_control & _FPU_MASK_ZM)) fpcw |= IEEE_TRAP_ENABLE_DZE;
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if (!(fpu_control & _FPU_MASK_OM)) fpcw |= IEEE_TRAP_ENABLE_OVF;
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if (!(fpu_control & _FPU_MASK_PM)) fpcw |= IEEE_TRAP_ENABLE_INE;
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__fpu_control = fpu_control; /* update global copy */
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__ieee_set_fp_control(fpcw);
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/* Install everything. */
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__fpu_control = fc;
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asm volatile ("mt_fpcr %0" : : "f"(fpcr));
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__ieee_set_fp_control(swcr);
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}
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