Use GCC builtins for llrint functions if desired.
authorXiaolin Tang <tangxiaolin@loongson.cn>
Wed, 23 Nov 2022 03:44:58 +0000 (11:44 +0800)
committercaiyinyu <caiyinyu@loongson.cn>
Tue, 29 Nov 2022 08:00:28 +0000 (16:00 +0800)
This patch is using the corresponding GCC builtin for llrintf, llrint,
llrintl and llrintf128 if the USE_FUNCTION_BUILTIN macros are defined to one
in math-use-builtins-function.h.

Co-Authored-By: Xi Ruoyao <xry111@xry111.site>
sysdeps/generic/math-use-builtins-llrint.h [new file with mode: 0644]
sysdeps/generic/math-use-builtins.h
sysdeps/ieee754/dbl-64/s_llrint.c
sysdeps/ieee754/float128/float128_private.h
sysdeps/ieee754/flt-32/s_llrintf.c
sysdeps/ieee754/ldbl-128/s_llrintl.c

diff --git a/sysdeps/generic/math-use-builtins-llrint.h b/sysdeps/generic/math-use-builtins-llrint.h
new file mode 100644 (file)
index 0000000..ced6a32
--- /dev/null
@@ -0,0 +1,4 @@
+#define USE_LLRINT_BUILTIN 0
+#define USE_LLRINTF_BUILTIN 0
+#define USE_LLRINTL_BUILTIN 0
+#define USE_LLRINTF128_BUILTIN 0
index 3acec1d538d602b5936777ca4160d43c5be12ecf..dddeaa4ea888cc571da2daaca9df3820439c637c 100644 (file)
@@ -38,5 +38,6 @@
 #include <math-use-builtins-fmin.h>
 #include <math-use-builtins-fabs.h>
 #include <math-use-builtins-lrint.h>
+#include <math-use-builtins-llrint.h>
 
 #endif /* MATH_USE_BUILTINS_H  */
index dc8d9948dfaf0bc5eddd2b3528d5b6ff20e0e70e..88c8ec362483b692d0e85bc7894426eb58f57c0f 100644 (file)
 #include <math_private.h>
 #include <libm-alias-double.h>
 #include <fix-fp-int-convert-overflow.h>
-
-static const double two52[2] =
-{
-  4.50359962737049600000e+15, /* 0x43300000, 0x00000000 */
- -4.50359962737049600000e+15, /* 0xC3300000, 0x00000000 */
-};
+#include <math-use-builtins.h>
 
 
 long long int
 __llrint (double x)
 {
+#if USE_LLRINT_BUILTIN
+  return __builtin_llrint (x);
+#else
+  /* Use generic implementation.  */
+  static const double two52[2] =
+  {
+    4.50359962737049600000e+15, /* 0x43300000, 0x00000000 */
+   -4.50359962737049600000e+15, /* 0xC3300000, 0x00000000 */
+  };
+
   int32_t j0;
   uint32_t i1, i0;
   long long int result;
@@ -95,6 +100,7 @@ __llrint (double x)
     }
 
   return sx ? -result : result;
+#endif /* ! USE_LLRINT_BUILTIN  */
 }
 
 libm_alias_double (__llrint, llrint)
index a452ced89ae2f8ed349731aaee20872b90c10929..3bb5fffa7441de6f3ea6b349dcdd4aa5614c09d7 100644 (file)
 #define USE_FMAL_BUILTIN USE_FMAF128_BUILTIN
 #undef USE_LRINTL_BUILTIN
 #define USE_LRINTL_BUILTIN USE_LRINTF128_BUILTIN
+#undef USE_LLRINTL_BUILTIN
+#define USE_LLRINTL_BUILTIN USE_LLRINTF128_BUILTIN
 
 /* IEEE function renames.  */
 #define __ieee754_acoshl __ieee754_acoshf128
index 226b8261d3bc9f9aac3bc1465c5c1188f0e103dd..79e3c385d1eb3e942d4378827e04911bfae4029a 100644 (file)
 #include <math_private.h>
 #include <libm-alias-float.h>
 #include <fix-fp-int-convert-overflow.h>
-
-static const float two23[2] =
-{
-  8.3886080000e+06, /* 0x4B000000 */
- -8.3886080000e+06, /* 0xCB000000 */
-};
+#include <math-use-builtins.h>
 
 
 long long int
 __llrintf (float x)
 {
+#if USE_LLRINTF_BUILTIN
+  return __builtin_llrintf (x);
+#else
+  /* Use generic implementation.  */
+  static const float two23[2] =
+  {
+    8.3886080000e+06, /* 0x4B000000 */
+   -8.3886080000e+06, /* 0xCB000000 */
+  };
+
   int32_t j0;
   uint32_t i0;
   float w;
@@ -82,6 +87,7 @@ __llrintf (float x)
     }
 
   return sx ? -result : result;
+#endif /* ! USE_LLRINTF_BUILTIN  */
 }
 
 libm_alias_float (__llrint, llrint)
index 79d3937cc9239b45b5099c011119d29aa22838a4..3a5635d5091892934d713238ad3353daecb20156 100644 (file)
 #include <math_private.h>
 #include <libm-alias-ldouble.h>
 #include <fix-fp-int-convert-overflow.h>
+#include <math-use-builtins.h>
 
-static const _Float128 two112[2] =
-{
-  L(5.19229685853482762853049632922009600E+33), /* 0x406F000000000000, 0 */
- L(-5.19229685853482762853049632922009600E+33)  /* 0xC06F000000000000, 0 */
-};
 
 long long int
 __llrintl (_Float128 x)
 {
+#if USE_LLRINTL_BUILTIN
+  return __builtin_round (x);
+#else
+  /* Use generic implementation.  */
+  static const _Float128 two112[2] =
+  {
+    L(5.19229685853482762853049632922009600E+33), /* 0x406F000000000000, 0 */
+   L(-5.19229685853482762853049632922009600E+33)  /* 0xC06F000000000000, 0 */
+  };
+
   int32_t j0;
   uint64_t i0,i1;
   _Float128 w;
@@ -102,6 +108,7 @@ __llrintl (_Float128 x)
     }
 
   return sx ? -result : result;
+#endif /* ! USE_LLRINTL_BUILTIN  */
 }
 
 libm_alias_ldouble (__llrint, llrint)