glibc/sysdeps/sparc/fpu/fenv_private.h
Daniel Cederman 3bb1350c36 sparc: Use existing macros to avoid code duplication
Macros for using inline assembly to access the fp state register exists
in both fenv_private.h and in fpu_control.h. Let fenv_private.h use the
macros from fpu_control.h

Signed-off-by: Daniel Cederman <cederman@gaisler.com>
Reviewed-by: Adhemerval Zanella  <adhemerval.zanella@linaro.org>
2024-01-18 08:27:43 -03:00

190 lines
5.1 KiB
C

#ifndef SPARC_FENV_PRIVATE_H
#define SPARC_FENV_PRIVATE_H 1
#include <fenv.h>
#include <fpu_control.h>
/* For internal use only: access the fp state register. */
#define __fenv_stfsr(X) _FPU_GETCW (X)
#define __fenv_ldfsr(X) _FPU_SETCW (X)
static __always_inline void
libc_feholdexcept (fenv_t *e)
{
fenv_t etmp;
__fenv_stfsr(etmp);
*(e) = etmp;
etmp = etmp & ~((0x1f << 23) | FE_ALL_EXCEPT);
__fenv_ldfsr(etmp);
}
static __always_inline void
libc_fesetround (int r)
{
fenv_t etmp;
__fenv_stfsr(etmp);
etmp = (etmp & ~__FE_ROUND_MASK) | (r);
__fenv_ldfsr(etmp);
}
static __always_inline void
libc_feholdexcept_setround (fenv_t *e, int r)
{
fenv_t etmp;
__fenv_stfsr(etmp);
*(e) = etmp;
etmp = etmp & ~((0x1f << 23) | FE_ALL_EXCEPT);
etmp = (etmp & ~__FE_ROUND_MASK) | (r);
__fenv_ldfsr(etmp);
}
static __always_inline int
libc_fetestexcept (int e)
{
fenv_t etmp;
__fenv_stfsr(etmp);
return etmp & (e) & FE_ALL_EXCEPT;
}
static __always_inline void
libc_fesetenv (fenv_t *e)
{
__fenv_ldfsr(*e);
}
static __always_inline int
libc_feupdateenv_test (fenv_t *e, int ex)
{
fenv_t etmp;
__fenv_stfsr(etmp);
etmp &= FE_ALL_EXCEPT;
__fenv_ldfsr(*e);
__feraiseexcept (etmp);
return etmp & ex;
}
static __always_inline void
libc_feupdateenv (fenv_t *e)
{
libc_feupdateenv_test (e, 0);
}
static __always_inline void
libc_feholdsetround (fenv_t *e, int r)
{
fenv_t etmp;
__fenv_stfsr(etmp);
*(e) = etmp;
etmp = (etmp & ~__FE_ROUND_MASK) | (r);
__fenv_ldfsr(etmp);
}
static __always_inline void
libc_feresetround (fenv_t *e)
{
fenv_t etmp;
__fenv_stfsr(etmp);
etmp = (etmp & ~__FE_ROUND_MASK) | (*e & __FE_ROUND_MASK);
__fenv_ldfsr(etmp);
}
#define libc_feholdexceptf libc_feholdexcept
#define libc_fesetroundf libc_fesetround
#define libc_feholdexcept_setroundf libc_feholdexcept_setround
#define libc_fetestexceptf libc_fetestexcept
#define libc_fesetenvf libc_fesetenv
#define libc_feupdateenv_testf libc_feupdateenv_test
#define libc_feupdateenvf libc_feupdateenv
#define libc_feholdsetroundf libc_feholdsetround
#define libc_feresetroundf libc_feresetround
#define libc_feholdexcept libc_feholdexcept
#define libc_fesetround libc_fesetround
#define libc_feholdexcept_setround libc_feholdexcept_setround
#define libc_fetestexcept libc_fetestexcept
#define libc_fesetenv libc_fesetenv
#define libc_feupdateenv_test libc_feupdateenv_test
#define libc_feupdateenv libc_feupdateenv
#define libc_feholdsetround libc_feholdsetround
#define libc_feresetround libc_feresetround
#define libc_feholdexceptl libc_feholdexcept
#define libc_fesetroundl libc_fesetround
#define libc_feholdexcept_setroundl libc_feholdexcept_setround
#define libc_fetestexceptl libc_fetestexcept
#define libc_fesetenvl libc_fesetenv
#define libc_feupdateenv_testl libc_feupdateenv_test
#define libc_feupdateenvl libc_feupdateenv
#define libc_feholdsetroundl libc_feholdsetround
#define libc_feresetroundl libc_feresetround
/* We have support for rounding mode context. */
#define HAVE_RM_CTX 1
static __always_inline void
libc_feholdexcept_setround_sparc_ctx (struct rm_ctx *ctx, int round)
{
fenv_t new;
__fenv_stfsr(ctx->env);
new = ctx->env & ~((0x1f << 23) | FE_ALL_EXCEPT);
new = (new & ~__FE_ROUND_MASK) | round;
if (__glibc_unlikely (new != ctx->env))
{
__fenv_ldfsr(new);
ctx->updated_status = true;
}
else
ctx->updated_status = false;
}
static __always_inline void
libc_fesetenv_sparc_ctx (struct rm_ctx *ctx)
{
libc_fesetenv(&ctx->env);
}
static __always_inline void
libc_feupdateenv_sparc_ctx (struct rm_ctx *ctx)
{
if (__glibc_unlikely (ctx->updated_status))
libc_feupdateenv_test (&ctx->env, 0);
}
static __always_inline void
libc_feholdsetround_sparc_ctx (struct rm_ctx *ctx, int round)
{
fenv_t new;
__fenv_stfsr(ctx->env);
new = (ctx->env & ~__FE_ROUND_MASK) | round;
if (__glibc_unlikely (new != ctx->env))
{
__fenv_ldfsr(new);
ctx->updated_status = true;
}
else
ctx->updated_status = false;
}
#define libc_feholdexcept_setround_ctx libc_feholdexcept_setround_sparc_ctx
#define libc_feholdexcept_setroundf_ctx libc_feholdexcept_setround_sparc_ctx
#define libc_feholdexcept_setroundl_ctx libc_feholdexcept_setround_sparc_ctx
#define libc_fesetenv_ctx libc_fesetenv_sparc_ctx
#define libc_fesetenvf_ctx libc_fesetenv_sparc_ctx
#define libc_fesetenvl_ctx libc_fesetenv_sparc_ctx
#define libc_feupdateenv_ctx libc_feupdateenv_sparc_ctx
#define libc_feupdateenvf_ctx libc_feupdateenv_sparc_ctx
#define libc_feupdateenvl_ctx libc_feupdateenv_sparc_ctx
#define libc_feresetround_ctx libc_feupdateenv_sparc_ctx
#define libc_feresetroundf_ctx libc_feupdateenv_sparc_ctx
#define libc_feresetroundl_ctx libc_feupdateenv_sparc_ctx
#define libc_feholdsetround_ctx libc_feholdsetround_sparc_ctx
#define libc_feholdsetroundf_ctx libc_feholdsetround_sparc_ctx
#define libc_feholdsetroundl_ctx libc_feholdsetround_sparc_ctx
#include_next <fenv_private.h>
#endif /* SPARC_FENV_PRIVATE_H */