| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238 | /* Internal math stuff.  MIPS version.   Copyright (C) 2013-2025 Free Software Foundation, Inc.   The GNU C Library is free software; you can redistribute it and/or   modify it under the terms of the GNU Lesser General Public   License as published by the Free Software Foundation; either   version 2.1 of the License, or (at your option) any later version.   The GNU C Library is distributed in the hope that it will be useful,   but WITHOUT ANY WARRANTY; without even the implied warranty of   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU   Lesser General Public License for more details.   You should have received a copy of the GNU Lesser General Public   License along with the GNU C Library; if not, see   <https://www.gnu.org/licenses/>.  */#ifndef MIPS_FENV_PRIVATE_H#define MIPS_FENV_PRIVATE_H 1/* Inline functions to speed up the math library implementation.  The   default versions of these routines are in generic/fenv_private.h   and call fesetround, feholdexcept, etc.  These routines use inlined   code instead.  */#include <fenv.h>#include "fenv_libc.h"#include <fpu_control.h>#define _FPU_MASK_ALL (_FPU_MASK_V | _FPU_MASK_Z | _FPU_MASK_O \		       |_FPU_MASK_U | _FPU_MASK_I | FE_ALL_EXCEPT)static __always_inline voidlibc_feholdexcept_mips (fenv_t *envp){  fpu_control_t cw;  /* Save the current state.  */  _FPU_GETCW (cw);  envp->__fp_control_register = cw;  /* Clear all exception enable bits and flags.  */  cw &= ~(_FPU_MASK_ALL);  _FPU_SETCW (cw);}#define libc_feholdexcept libc_feholdexcept_mips#define libc_feholdexceptf libc_feholdexcept_mips#define libc_feholdexceptl libc_feholdexcept_mipsstatic __always_inline voidlibc_fesetround_mips (int round){  fpu_control_t cw;  /* Get current state.  */  _FPU_GETCW (cw);  /* Set rounding bits.  */  cw &= ~_FPU_RC_MASK;  cw |= round;  /* Set new state.  */  _FPU_SETCW (cw);}#define libc_fesetround libc_fesetround_mips#define libc_fesetroundf libc_fesetround_mips#define libc_fesetroundl libc_fesetround_mipsstatic __always_inline voidlibc_feholdexcept_setround_mips (fenv_t *envp, int round){  fpu_control_t cw;  /* Save the current state.  */  _FPU_GETCW (cw);  envp->__fp_control_register = cw;  /* Clear all exception enable bits and flags.  */  cw &= ~(_FPU_MASK_ALL);  /* Set rounding bits.  */  cw &= ~_FPU_RC_MASK;  cw |= round;  /* Set new state.  */  _FPU_SETCW (cw);}#define libc_feholdexcept_setround libc_feholdexcept_setround_mips#define libc_feholdexcept_setroundf libc_feholdexcept_setround_mips#define libc_feholdexcept_setroundl libc_feholdexcept_setround_mips#define libc_feholdsetround libc_feholdexcept_setround_mips#define libc_feholdsetroundf libc_feholdexcept_setround_mips#define libc_feholdsetroundl libc_feholdexcept_setround_mipsstatic __always_inline voidlibc_fesetenv_mips (fenv_t *envp){  fpu_control_t cw __attribute__ ((unused));  /* Read current state to flush fpu pipeline.  */  _FPU_GETCW (cw);  _FPU_SETCW (envp->__fp_control_register);}#define libc_fesetenv libc_fesetenv_mips#define libc_fesetenvf libc_fesetenv_mips#define libc_fesetenvl libc_fesetenv_mipsstatic __always_inline intlibc_feupdateenv_test_mips (fenv_t *envp, int excepts){  /* int ret = fetestexcept (excepts); feupdateenv (envp); return ret; */  int cw, temp;  /* Get current control word.  */  _FPU_GETCW (cw);  /* Set flag bits (which are accumulative), and *also* set the     cause bits.  The setting of the cause bits is what actually causes     the hardware to generate the exception, if the corresponding enable     bit is set as well.  */  temp = cw & FE_ALL_EXCEPT;  temp |= envp->__fp_control_register | (temp << CAUSE_SHIFT);  /* Set new state.  */  _FPU_SETCW (temp);  return cw & excepts & FE_ALL_EXCEPT;}#define libc_feupdateenv_test libc_feupdateenv_test_mips#define libc_feupdateenv_testf libc_feupdateenv_test_mips#define libc_feupdateenv_testl libc_feupdateenv_test_mipsstatic __always_inline voidlibc_feupdateenv_mips (fenv_t *envp){  libc_feupdateenv_test_mips (envp, 0);}#define libc_feupdateenv libc_feupdateenv_mips#define libc_feupdateenvf libc_feupdateenv_mips#define libc_feupdateenvl libc_feupdateenv_mips#define libc_feresetround libc_feupdateenv_mips#define libc_feresetroundf libc_feupdateenv_mips#define libc_feresetroundl libc_feupdateenv_mipsstatic __always_inline intlibc_fetestexcept_mips (int excepts){  int cw;  /* Get current control word.  */  _FPU_GETCW (cw);  return cw & excepts & FE_ALL_EXCEPT;}#define libc_fetestexcept libc_fetestexcept_mips#define libc_fetestexceptf libc_fetestexcept_mips#define libc_fetestexceptl libc_fetestexcept_mips/*  Enable support for rounding mode context.  */#define HAVE_RM_CTX 1static __always_inline voidlibc_feholdexcept_setround_mips_ctx (struct rm_ctx *ctx, int round){  fpu_control_t old, new;  /* Save the current state.  */  _FPU_GETCW (old);  ctx->env.__fp_control_register = old;  /* Clear all exception enable bits and flags.  */  new = old & ~(_FPU_MASK_ALL);  /* Set rounding bits.  */  new = (new & ~_FPU_RC_MASK) | round;  if (__glibc_unlikely (new != old))    {      _FPU_SETCW (new);      ctx->updated_status = true;    }  else    ctx->updated_status = false;}#define libc_feholdexcept_setround_ctx   libc_feholdexcept_setround_mips_ctx#define libc_feholdexcept_setroundf_ctx  libc_feholdexcept_setround_mips_ctx#define libc_feholdexcept_setroundl_ctx  libc_feholdexcept_setround_mips_ctxstatic __always_inline voidlibc_fesetenv_mips_ctx (struct rm_ctx *ctx){  libc_fesetenv_mips (&ctx->env);}#define libc_fesetenv_ctx                libc_fesetenv_mips_ctx#define libc_fesetenvf_ctx               libc_fesetenv_mips_ctx#define libc_fesetenvl_ctx               libc_fesetenv_mips_ctxstatic __always_inline voidlibc_feupdateenv_mips_ctx (struct rm_ctx *ctx){  if (__glibc_unlikely (ctx->updated_status))    libc_feupdateenv_test_mips (&ctx->env, 0);}#define libc_feupdateenv_ctx             libc_feupdateenv_mips_ctx#define libc_feupdateenvf_ctx            libc_feupdateenv_mips_ctx#define libc_feupdateenvl_ctx            libc_feupdateenv_mips_ctx#define libc_feresetround_ctx            libc_feupdateenv_mips_ctx#define libc_feresetroundf_ctx           libc_feupdateenv_mips_ctx#define libc_feresetroundl_ctx           libc_feupdateenv_mips_ctxstatic __always_inline voidlibc_feholdsetround_mips_ctx (struct rm_ctx *ctx, int round){  fpu_control_t old, new;  /* Save the current state.  */  _FPU_GETCW (old);  ctx->env.__fp_control_register = old;  /* Set rounding bits.  */  new = (old & ~_FPU_RC_MASK) | round;  if (__glibc_unlikely (new != old))    {      _FPU_SETCW (new);      ctx->updated_status = true;    }  else    ctx->updated_status = false;}#define libc_feholdsetround_ctx          libc_feholdsetround_mips_ctx#define libc_feholdsetroundf_ctx         libc_feholdsetround_mips_ctx#define libc_feholdsetroundl_ctx         libc_feholdsetround_mips_ctx#endif
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