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[powerpc] fenv_private.h clean up
fenv_private.h includes unused functions, magic macro constants, and some replicated common code fragments. Remove unused functions, replace magic constants with constants from fenv_libc.h, and refactor replicated code. Suggested-by: Paul E. Murphy <murphyp@linux.ibm.com> Reviewed-By: Paul E Murphy <murphyp@linux.ibm.com>
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ChangeLog
29
ChangeLog
@ -1,3 +1,32 @@
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2019-09-27 Paul A. Clarke <pc@us.ibm.com>
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* sysdeps/powerpc/fpu/fenv_libc.h:
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(__TEST_AND_ENTER_NON_STOP): New.
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(__TEST_AND_EXIT_NON_STOP): New.
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* sysdeps/powerpc/fpu/fenv_private.h
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(_FPU_ALL_TRAPS): Delete, replace with FPSCR_ENABLES_MASK.
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(_FPU_MASK_RN): Delete.
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(_FPU_MASK_NOT_RN_NI): Delete.
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(_FPU_MASK_TRAPS_RN): Delete, replace with ~FPSCR_CONTROL_MASK.
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(_FPU_MASK_FRAC_INEX_RET_CC): Delete, replace with ~FPSCR_STATUS_MASK.
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(__libc_feholdbits_ppc): Delete, move code into
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libc_feholdexcept_setround_ppc.
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(libc_feholdexcept_ppc): Delete.
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(libc_fesetround_ppc): Delete.
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(libc_fetestexcept_ppc): Delete.
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(libc_feholdsetround_ppc): Delete.
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(__libc_femergeenv_ppc): Use __TEST_AND_ENTER/EXIT_NON_STOP.
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(libc_feholdsetround_noex_ppc_ctx): Likewise.
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(libc_feupdateenv_test_ppc): Use FPSCR defines.
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* sysdeps/powerpc/fpu/feenablxcpt.c (feenableexcept): Use
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__TEST_AND_ENTER_NON_STOP.
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* sysdeps/powerpc/fpu/fedisblxcpt.c (fedisableexcept): Likewise.
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* sysdeps/powerpc/fpu/feholdexcpt.c (__feholdexcept): Likewise.
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* sysdeps/powerpc/fpu/fesetenv.c (__fesetenv): Likewise.
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* sysdeps/powerpc/fpu/fesetmode.c (fesetmode): Likewise.
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* sysdeps/powerpc/fpu/feupdateenv.c (__feupdateenv): Likewise.
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(_FPU_MASK_ALL): Delete.
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2019-09-27 Joseph Myers <joseph@codesourcery.com>
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* sysdeps/gnu/netinet/tcp.h (TCP_TX_DELAY): New macro.
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@ -43,8 +43,7 @@ fedisableexcept (int excepts)
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if (fe.l != curr.l)
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fesetenv_mode (fe.fenv);
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if (new == 0 && result != 0)
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(void)__fe_mask_env ();
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__TEST_AND_ENTER_NON_STOP (-1ULL, fe.l);
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return result;
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}
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@ -43,8 +43,7 @@ feenableexcept (int excepts)
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if (fe.l != curr.l)
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fesetenv_mode (fe.fenv);
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if (new != 0 && result == 0)
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(void) __fe_nomask_env_priv ();
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__TEST_AND_EXIT_NON_STOP (0ULL, fe.l);
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return result;
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}
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@ -18,7 +18,6 @@
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#include <fenv_libc.h>
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#include <fpu_control.h>
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#define _FPU_MASK_ALL (_FPU_MASK_ZM | _FPU_MASK_OM | _FPU_MASK_UM | _FPU_MASK_XM | _FPU_MASK_IM)
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int
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__feholdexcept (fenv_t *envp)
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@ -35,11 +34,7 @@ __feholdexcept (fenv_t *envp)
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if (new.l == old.l)
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return 0;
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/* If the old env had any enabled exceptions, then mask SIGFPE in the
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MSR FE0/FE1 bits. This may allow the FPU to run faster because it
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always takes the default action and can not generate SIGFPE. */
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if ((old.l & _FPU_MASK_ALL) != 0)
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(void)__fe_mask_env ();
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__TEST_AND_ENTER_NON_STOP (old.l, 0ULL);
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/* Put the new state in effect. */
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fesetenv_register (new.fenv);
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@ -27,6 +27,26 @@ extern const fenv_t *__fe_nomask_env_priv (void);
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extern const fenv_t *__fe_mask_env (void) attribute_hidden;
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/* If the old env had any enabled exceptions and the new env has no enabled
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exceptions, then mask SIGFPE in the MSR FE0/FE1 bits. This may allow the
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FPU to run faster because it always takes the default action and can not
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generate SIGFPE. */
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#define __TEST_AND_ENTER_NON_STOP(old, new) \
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do { \
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if (((old) & FPSCR_ENABLES_MASK) != 0 && ((new) & FPSCR_ENABLES_MASK) == 0) \
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(void) __fe_mask_env (); \
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} while (0)
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/* If the old env has no enabled exceptions and the new env has any enabled
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exceptions, then unmask SIGFPE in the MSR FE0/FE1 bits. This will put the
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hardware into "precise mode" and may cause the FPU to run slower on some
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hardware. */
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#define __TEST_AND_EXIT_NON_STOP(old, new) \
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do { \
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if (((old) & FPSCR_ENABLES_MASK) == 0 && ((new) & FPSCR_ENABLES_MASK) != 0) \
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(void) __fe_nomask_env_priv (); \
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} while (0)
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/* The sticky bits in the FPSCR indicating exceptions have occurred. */
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#define FPSCR_STICKY_BITS ((FE_ALL_EXCEPT | FE_ALL_INVALID) & ~FE_INVALID)
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@ -23,73 +23,20 @@
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#include <fenv_libc.h>
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#include <fpu_control.h>
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/* Mask for the exception enable bits. */
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#define _FPU_ALL_TRAPS (_FPU_MASK_ZM | _FPU_MASK_OM | _FPU_MASK_UM \
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| _FPU_MASK_XM | _FPU_MASK_IM)
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/* Mask the rounding mode bits. */
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#define _FPU_MASK_RN 0xfffffffffffffffcLL
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/* Mask everything but the rounding modes and non-IEEE arithmetic flags. */
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#define _FPU_MASK_NOT_RN_NI 0xffffffff00000807LL
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/* Mask restore rounding mode and exception enabled. */
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#define _FPU_MASK_TRAPS_RN 0xffffffffffffff00LL
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/* Mask FP result flags, preserve fraction rounded/inexact bits. */
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#define _FPU_MASK_FRAC_INEX_RET_CC 0xfffffffffff80fffLL
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static __always_inline void
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__libc_feholdbits_ppc (fenv_t *envp, unsigned long long mask,
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unsigned long long bits)
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libc_feholdexcept_setround_ppc (fenv_t *envp, int r)
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{
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fenv_union_t old, new;
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old.fenv = *envp = fegetenv_register ();
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new.l = (old.l & mask) | bits;
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/* If the old env had any enabled exceptions, then mask SIGFPE in the
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MSR FE0/FE1 bits. This may allow the FPU to run faster because it
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always takes the default action and can not generate SIGFPE. */
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if ((old.l & _FPU_ALL_TRAPS) != 0)
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(void) __fe_mask_env ();
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__TEST_AND_ENTER_NON_STOP (old.l, 0ULL);
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/* Clear everything and set the rounding mode. */
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new.l = r;
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fesetenv_register (new.fenv);
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}
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static __always_inline void
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libc_feholdexcept_ppc (fenv_t *envp)
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{
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__libc_feholdbits_ppc (envp, _FPU_MASK_NOT_RN_NI, 0LL);
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}
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static __always_inline void
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libc_feholdexcept_setround_ppc (fenv_t *envp, int r)
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{
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__libc_feholdbits_ppc (envp, _FPU_MASK_NOT_RN_NI & _FPU_MASK_RN, r);
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}
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static __always_inline void
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libc_fesetround_ppc (int r)
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{
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__fesetround_inline (r);
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}
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static __always_inline int
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libc_fetestexcept_ppc (int e)
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{
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fenv_union_t u;
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u.fenv = fegetenv_register ();
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return u.l & e;
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}
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static __always_inline void
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libc_feholdsetround_ppc (fenv_t *e, int r)
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{
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__libc_feholdbits_ppc (e, _FPU_MASK_TRAPS_RN, r);
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}
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static __always_inline unsigned long long
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__libc_femergeenv_ppc (const fenv_t *envp, unsigned long long old_mask,
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unsigned long long new_mask)
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@ -102,19 +49,8 @@ __libc_femergeenv_ppc (const fenv_t *envp, unsigned long long old_mask,
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/* Merge bits while masking unwanted bits from new and old env. */
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new.l = (old.l & old_mask) | (new.l & new_mask);
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/* If the old env has no enabled exceptions and the new env has any enabled
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exceptions, then unmask SIGFPE in the MSR FE0/FE1 bits. This will put the
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hardware into "precise mode" and may cause the FPU to run slower on some
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hardware. */
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if ((old.l & _FPU_ALL_TRAPS) == 0 && (new.l & _FPU_ALL_TRAPS) != 0)
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(void) __fe_nomask_env_priv ();
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/* If the old env had any enabled exceptions and the new env has no enabled
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exceptions, then mask SIGFPE in the MSR FE0/FE1 bits. This may allow the
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FPU to run faster because it always takes the default action and can not
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generate SIGFPE. */
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if ((old.l & _FPU_ALL_TRAPS) != 0 && (new.l & _FPU_ALL_TRAPS) == 0)
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(void) __fe_mask_env ();
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__TEST_AND_EXIT_NON_STOP (old.l, new.l);
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__TEST_AND_ENTER_NON_STOP (old.l, new.l);
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/* Atomically enable and raise (if appropriate) exceptions set in `new'. */
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fesetenv_register (new.fenv);
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@ -139,8 +75,8 @@ libc_feresetround_ppc (fenv_t *envp)
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static __always_inline int
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libc_feupdateenv_test_ppc (fenv_t *envp, int ex)
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{
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return __libc_femergeenv_ppc (envp, _FPU_MASK_TRAPS_RN,
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_FPU_MASK_FRAC_INEX_RET_CC) & ex;
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return __libc_femergeenv_ppc (envp, ~FPSCR_CONTROL_MASK,
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~FPSCR_STATUS_MASK) & ex;
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}
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static __always_inline void
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@ -193,8 +129,7 @@ libc_feholdsetround_noex_ppc_ctx (struct rm_ctx *ctx, int r)
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ctx->env = old.fenv;
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if (__glibc_unlikely (new.l != old.l))
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{
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if ((old.l & _FPU_ALL_TRAPS) != 0)
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(void) __fe_mask_env ();
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__TEST_AND_ENTER_NON_STOP (old.l, 0ULL);
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fesetenv_register (new.fenv);
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ctx->updated_status = true;
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}
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new.fenv = *envp;
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old.fenv = fegetenv_status ();
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/* If the old env has no enabled exceptions and the new env has any enabled
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exceptions, then unmask SIGFPE in the MSR FE0/FE1 bits. This will put the
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hardware into "precise mode" and may cause the FPU to run slower on some
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hardware. */
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if ((old.l & FPSCR_ENABLES_MASK) == 0 && (new.l & FPSCR_ENABLES_MASK) != 0)
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(void) __fe_nomask_env_priv ();
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/* If the old env had any enabled exceptions and the new env has no enabled
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exceptions, then mask SIGFPE in the MSR FE0/FE1 bits. This may allow the
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FPU to run faster because it always takes the default action and can not
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generate SIGFPE. */
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if ((old.l & FPSCR_ENABLES_MASK) != 0 && (new.l & FPSCR_ENABLES_MASK) == 0)
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(void)__fe_mask_env ();
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__TEST_AND_EXIT_NON_STOP (old.l, new.l);
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__TEST_AND_ENTER_NON_STOP (old.l, new.l);
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fesetenv_register (new.fenv);
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@ -33,11 +33,8 @@ fesetmode (const femode_t *modep)
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if (old.l == new.l)
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return 0;
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if ((old.l & FPSCR_ENABLES_MASK) == 0 && (new.l & FPSCR_ENABLES_MASK) != 0)
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(void) __fe_nomask_env_priv ();
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if ((old.l & FPSCR_ENABLES_MASK) != 0 && (new.l & FPSCR_ENABLES_MASK) == 0)
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(void) __fe_mask_env ();
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__TEST_AND_EXIT_NON_STOP (old.l, new.l);
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__TEST_AND_ENTER_NON_STOP (old.l, new.l);
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fesetenv_mode (new.fenv);
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return 0;
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@ -20,8 +20,6 @@
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#include <fenv_libc.h>
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#include <fpu_control.h>
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#define _FPU_MASK_ALL (_FPU_MASK_ZM | _FPU_MASK_OM | _FPU_MASK_UM | _FPU_MASK_XM | _FPU_MASK_IM)
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int
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__feupdateenv (const fenv_t *envp)
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{
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@ -36,19 +34,8 @@ __feupdateenv (const fenv_t *envp)
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unchanged. */
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new.l = (old.l & 0xffffffff1fffff00LL) | (new.l & 0x1ff80fff);
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/* If the old env has no enabled exceptions and the new env has any enabled
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exceptions, then unmask SIGFPE in the MSR FE0/FE1 bits. This will put
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the hardware into "precise mode" and may cause the FPU to run slower on
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some hardware. */
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if ((old.l & _FPU_MASK_ALL) == 0 && (new.l & _FPU_MASK_ALL) != 0)
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(void) __fe_nomask_env_priv ();
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/* If the old env had any enabled exceptions and the new env has no enabled
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exceptions, then mask SIGFPE in the MSR FE0/FE1 bits. This may allow the
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FPU to run faster because it always takes the default action and can not
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generate SIGFPE. */
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if ((old.l & _FPU_MASK_ALL) != 0 && (new.l & _FPU_MASK_ALL) == 0)
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(void)__fe_mask_env ();
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__TEST_AND_EXIT_NON_STOP (old.l, new.l);
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__TEST_AND_ENTER_NON_STOP (old.l, new.l);
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/* Atomically enable and raise (if appropriate) exceptions set in `new'. */
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fesetenv_register (new.fenv);
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